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{{Infobox scientist
{{Infobox scientist
| name =Arthur William Galston
| name = Arthur William Galston
| native_name =
| native_name =
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| birth_date ={{Birth date|1920|4|21}}
| birth_date = {{Birth date|1920|4|21}}
| birth_place =[[New York, NY]]
| birth_place = [[New York, NY]]
| death_date ={{Death date and age|2008|6|15|1920|4|21}}
| death_date = {{Death date and age|2008|6|15|1920|4|21}}
| death_place = [[Hamden, Connecticut]]
| death_place = [[Hamden, Connecticut]]
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| citizenship =
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| fields =
| fields =
| workplaces = {{ublist|[[California Institute of Technology]]|[[Yale University]]|[[Hebrew University]]}}
| workplaces = {{ublist|[[California Institute of Technology]]|[[Yale University]]|[[Hebrew University]]}}
| patrons =
| patrons =
| alma_mater ={{ublist|[[Cornell University]]|[[University of Illinois]]}}
| alma_mater = {{ublist|[[Cornell University]]|[[University of Illinois]]}}
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| doctoral_advisor =
| doctoral_advisor =
| academic_advisors = Harry Fuller
| academic_advisors = Harry Fuller
| doctoral_students =
| doctoral_students =
| notable_students =
| notable_students =
| known_for ={{ublist|research that led to [[Agent Orange]] and ethical objections to its use|early data suggesting flavin components of plant photoreceptors, phototropin and cryptochrome}}
| known_for = {{ublist|research that led to [[Agent Orange]] and ethical objections to its use|early data suggesting flavin components of plant [[Photoreceptor protein|photoreceptors]], [[phototropin]] and [[cryptochrome]]}}
| author_abbrev_bot =
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| awards = William Clyde DeVane Medal, 1994; Alumni Achievement Award, 2004
| influences ={{ublist|Loren C. Petry|Herb Carter}}
| influenced =
| signature = <!--(filename only)-->
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| awards = William Clyde DeVane Medal, 1994; Alumni Achievement Award, 2004
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| spouse = Dale Judith Kuntz (m. June 27, 1941)
| footnotes =
| children = {{Plainlist|
| spouse =Dale Judith Kuntz (m. June 27, 1941)
| children ={{Plainlist|
*[[William Galston|William Arthur Galston]]
*[[William Galston|William Arthur Galston]]
*Beth Dale Galston}}
*Beth Dale Galston}}
}}
}}


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==Early life and education==
==Early life and education==
Galston was the youngest child of Hyman and Freda Galston.<ref name="Debus">{{cite book|editor-last1=Debus|editor-first1=Allen G.|title=World Who's Who in Science: A Biographical Dictionary of Notable Scientists from Antiquity to the Present|date=1968|publisher=Marquis-Who's Who, Inc.|location=Chicago|isbn=978-0837910017|page=[https://archive.org/details/worldwhoswhoinsc0000unse/page/628 628]|edition=1st|url=https://archive.org/details/worldwhoswhoinsc0000unse/page/628}}</ref> He grew up in a [[Jewish]] family in Brooklyn, impoverished during the [[Great Depression]].<ref name="Cohen"/> Inspired by doctors like microbiologist [[Paul de Kruif]]<ref name="Accidental"/> but unable to afford [[medical school]], Galston enrolled at [[Cornell University College of Agriculture and Life Sciences|Cornell's Agricultural College]] which was free for citizens of [[New York State]].<ref name="Cohen"/> He played [[saxophone]] in [[jazz]] and [[Swing music|swing]] bands to earn living expenses.<ref name="ASPB"/><ref name="Economist"/>
Galston was the youngest child of Hyman and Freda Galston.<ref name="Debus">{{cite book|editor-last1=Debus|editor-first1=Allen G.|title=World Who's Who in Science: A Biographical Dictionary of Notable Scientists from Antiquity to the Present|date=1968|publisher=Marquis-Who's Who, Inc.|location=Chicago|isbn=978-0837910017|page=[https://archive.org/details/worldwhoswhoinsc0000unse/page/628 628]|edition=1st|url=https://archive.org/details/worldwhoswhoinsc0000unse/page/628}}</ref> He grew up in a [[Jewish]] family in the Brooklyn borough of New York City, impoverished during the [[Great Depression]].<ref name="Cohen"/> Inspired by doctors like microbiologist [[Paul de Kruif]]<ref name="Accidental"/> but unable to afford [[medical school]], Galston enrolled at [[Cornell University College of Agriculture and Life Sciences|Cornell's Agricultural College]] which was free for citizens of [[New York State]].<ref name="Cohen"/> He played [[saxophone]] in [[jazz]] and [[Swing music|swing]] bands to earn living expenses.<ref name="ASPB"/><ref name="Economist"/>


Galston's original intention was to attend [[Cornell Veterinary School]] after his freshman year.<ref name="Accidental"/>
Galston's original intention was to attend [[Cornell Veterinary School]] after his freshman year.<ref name="Accidental"/>
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|archive-url=https://web.archive.org/web/20090125154522/http://research.yale.edu/ysm/article.jsp?articleID=48
|archive-url=https://web.archive.org/web/20090125154522/http://research.yale.edu/ysm/article.jsp?articleID=48
|archive-date=2009-01-25
|archive-date=2009-01-25
}}</ref> He discovered both that 2,3,5-[[triiodobenzoic acid]] (TIBA) would speed up the flowering of soybeans. He also noted that in higher concentrations it would defoliate the soybeans<ref name="Schneider2003" /> by causing them to release [[ethylene]].<ref name="Economist">{{cite news|title=Arthur Galston, botanist, died on June 15th, aged 88|url=http://www.economist.com/node/11613789|access-date=19 April 2017|work=The Economist|date=June 26, 2008}}</ref>
}}</ref> He discovered that 2,3,5-[[triiodobenzoic acid]] (TIBA) would speed up the flowering of soybeans. He also noted that in higher concentrations it would defoliate the soybeans<ref name="Schneider2003" /> by causing them to release [[ethylene]].<ref name="Economist">{{cite news|title=Arthur Galston, botanist, died on June 15th, aged 88|url=http://www.economist.com/node/11613789|access-date=19 April 2017|newspaper=The Economist|date=June 26, 2008}}</ref>


==Wartime service==
==Wartime service==
During [[World War II]], the [[Imperial Japanese Army]] captured most of the world's rubber plantations in [[British Malaya]], causing a natural rubber shortage for the Allied armies.
During [[World War II]], the [[Imperial Japanese Army]] captured most of the world's rubber plantations in [[British Malaya]], causing a natural rubber shortage for the Allied armies.
Natural rubber came from the rubber tree, [[Hevea brasiliensis]], a native of South America that was commercially grown in Southeast Asia. The United States government established a research program to develop synthetic rubber, and also encouraged research into botanical alternatives. [[Parthenium argentatum|Guayule]], whose sap could be used to produce [[latex]], was considered a possible substitute for rubber.<ref name="Finlay">{{cite journal|last1=Finlay|first1=Mark R.|title=Behind the Barbed Wire of Manzanar: Guayule and the Search for Natural Rubber|journal=Chemical Heritage Magazine|date=2011|volume=Fall 2011/Winter 2012|url=https://www.sciencehistory.org/distillations/magazine/behind-the-barbed-wire-of-manzanar-guayule-and-the-search-for-natural-rubber|access-date=24 March 2018}}</ref> Galston was recommended to [[James F. Bonner]] by [[H. E. Carter]], and spent a year working with Bonner at [[Caltech]] in [[Pasadena, California]] to develop rubber tires from [[Parthenium argentatum|guayule]].<ref name="Cohen"/> By the end of 1944, the U.S. had achieved success with synthetic, petroleum-based rubber, and interest in guayule research lessened.<ref name="Finlay"/>
Natural rubber came from the rubber tree, [[Hevea brasiliensis]], a native of South America that was commercially grown in Southeast Asia. The United States government established a research program to develop synthetic rubber, and also encouraged research into botanical alternatives. [[Parthenium argentatum|Guayule]], whose sap could be used to produce [[latex]], was considered a possible substitute for rubber.<ref name="Finlay">{{cite journal|last1=Finlay|first1=Mark R.|title=Behind the Barbed Wire of Manzanar: Guayule and the Search for Natural Rubber|journal=Chemical Heritage Magazine|date=2011|volume=Fall 2011/Winter 2012|url=https://www.sciencehistory.org/distillations/magazine/behind-the-barbed-wire-of-manzanar-guayule-and-the-search-for-natural-rubber|access-date=24 March 2018}}</ref> Galston was recommended to [[James F. Bonner]] by [[H. E. Carter]], and spent a year working with Bonner at [[Caltech]] in [[Pasadena, California]], to develop rubber tires from [[Parthenium argentatum|guayule]].<ref name="Cohen"/> By the end of 1944, the U.S. had achieved success with synthetic, petroleum-based rubber, and interest in guayule research lessened.<ref name="Finlay"/>


In July 1944, Galston was [[Conscription in the United States|drafted]] into the [[United States Navy|U.S. Navy]] as an [[enlisted man]]. He ultimately served as Natural Resources officer in [[United States Military Government of the Ryukyu Islands|Naval Military Government on Okinawa]] until his discharge in 1946.<ref name="Accidental">{{cite journal
In July 1944, Galston was [[Conscription in the United States|drafted]] into the [[United States Navy|U.S. Navy]] as an [[enlisted man]]. He ultimately served as Natural Resources officer in [[United States Military Government of the Ryukyu Islands|Naval Military Government on Okinawa]] until his discharge in 1946.<ref name="Accidental">{{cite journal
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==Plant biology==
==Plant biology==
After a year as an instructor at [[Yale University]] in 1946-1947, Galston returned to the [[California Institute of Technology]] to work with James Bonner as a senior research fellow. While at Caltech, Galston made an important discovery. He identified [[riboflavin]] as a photoreceptor involved in the bending of plants toward light. This overturned a commonly held belief that [[carotene]] was the photoreceptor involved in [[phototropism]].<ref name="Whippo"/><ref name="Memoriam"/>
After a year as an instructor at [[Yale University]] in 1946–1947, Galston returned to the [[California Institute of Technology]] to work with James Bonner as a senior research fellow. While at Caltech, Galston made an important discovery. He identified [[riboflavin]] as a photoreceptor involved in the bending of plants toward light. This overturned a commonly held belief that [[carotene]] was the photoreceptor involved in [[phototropism]].<ref name="Whippo"/><ref name="Memoriam"/>


In 1950 Galston accepted a [[Guggenheim Fellowship]] to spend a year working with [[Hugo Theorell]] at the [[Karolinska Institute]] in [[Stockholm]], [[Sweden]]. Upon his return to Caltech in 1951, Galston became tenured as an associate professor. His supporters included Bonner and [[Frits Warmolt Went]], both of whom were senior plant biology researchers at Caltech. He co-taught classes in biology with [[George Beadle]], who was then chairman of the biology department.<ref name="Cohen"/>
In 1950 Galston accepted a [[Guggenheim Fellowship]] to spend a year working with [[Hugo Theorell]] at the [[Karolinska Institute]] in [[Stockholm]], [[Sweden]]. Upon his return to Caltech in 1951, Galston became tenured as an associate professor. His supporters included Bonner and [[Frits Warmolt Went]], both of whom were senior plant biology researchers at Caltech. He co-taught classes in biology with [[George Beadle]], who was then chairman of the biology department.<ref name="Cohen"/>
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In 1955, Galston was offered a full professorship at [[Yale University]] by Oswald Tippo, chair of the botany department. In addition to a significant increase in salary and position, it was an opportunity for leadership in an expanding department. Yale, in [[New Haven, Connecticut]], was also closer to family members in New York City and work opportunities for Galston's wife, Dale Judith Kuntz. Galston accepted the offer, and taught at Yale from 1955 onwards.<ref name="Cohen"/>
In 1955, Galston was offered a full professorship at [[Yale University]] by Oswald Tippo, chair of the botany department. In addition to a significant increase in salary and position, it was an opportunity for leadership in an expanding department. Yale, in [[New Haven, Connecticut]], was also closer to family members in New York City and work opportunities for Galston's wife, Dale Judith Kuntz. Galston accepted the offer, and taught at Yale from 1955 onwards.<ref name="Cohen"/>


At Yale, Galston continued to do research in the areas of [[auxin]] physiology,<ref name="Britz">{{cite journal|last1=Britz|first1=Steven J.|last2=Galston|first2=Arthur W.|title=Physiology of Movements in the Stems of Seedling Pisum sativum L. cv Alaska 1 III. Phototropism in Relation to Gravitropism, Nutation, and Growth|journal=Plant Physiology|date=1983|volume=71|issue=2|pages=313–318|pmc=1066031|doi=10.1104/pp.71.2.313|pmid=16662824}}</ref> [[photobiology]],<ref>{{cite journal|last1=Galston|first1=A. W.|title=Plant Photobiology in the Last Half-Century|journal=Plant Physiology |date=1 October 1974|volume=54|issue=4|pages=427–436|doi=10.1104/pp.54.4.427|pmid=16658905|pmc=367430}}</ref> [[plant hormone]]s,<ref>{{cite journal|last1=Galston|first1=A. W.|last2=Davies|first2=P. J.|title=Hormonal Regulation in Higher Plants|journal=Science|date=21 March 1969|volume=163|issue=3873|pages=1288–1297|doi=10.1126/science.163.3873.1288|pmid=4886673|bibcode=1969Sci...163.1288G}}</ref> [[protoplasts]] and [[polyamines]].<ref>{{cite book|editor-last1=Galston|editor-first1=Arthur W.|editor-last2=Smith|editor-first2=Terence A.|title=Polyamines in plants|date=1985|publisher=M. Nijhoff/W. Junk|location=Dordrecht, Netherlands|isbn=9789024732456}}</ref><ref name=Yale2004/> Using microspectrophotometric measurements, he was the first researcher to report that phytochromes were located in plant nuclei, a result that would be confirmed using molecular techniques over 30 years later.<ref name="ASPB">{{cite journal|title=Obituaries: Arthur W. Galston|journal=ASPB News|date=2008|volume=35|issue=5|page=41|url=https://aspb.org/newsletter/archive/2008/septoct08.pdf}}</ref><ref name="Microspectrophotometric">{{cite journal|last1=Galston|first1=Arthur W.|title=Microspectrophotometric Evidence for Phytochrome in Plant Nuclei|journal=Proceedings of the National Academy of Sciences of the United States of America|date=October 15, 1968|volume=61|issue=2|pages=454–460|jstor=59097|doi=10.1073/pnas.61.2.454|pmid=16591702|pmc=225180|bibcode=1968PNAS...61..454G}}</ref>
At Yale, Galston continued to do research in the areas of [[auxin]] physiology,<ref name="Britz">{{cite journal|last1=Britz|first1=Steven J.|last2=Galston|first2=Arthur W.|title=Physiology of Movements in the Stems of Seedling Pisum sativum L. cv Alaska 1 III. Phototropism in Relation to Gravitropism, Nutation, and Growth|journal=Plant Physiology|date=1983|volume=71|issue=2|pages=313–318|pmc=1066031|doi=10.1104/pp.71.2.313|pmid=16662824}}</ref> [[photobiology]],<ref>{{cite journal|last1=Galston|first1=A. W.|title=Plant Photobiology in the Last Half-Century|journal=Plant Physiology |date=1 October 1974|volume=54|issue=4|pages=427–436|doi=10.1104/pp.54.4.427|pmid=16658905|pmc=367430}}</ref> [[plant hormone]]s,<ref>{{cite journal|last1=Galston|first1=A. W.|last2=Davies|first2=P. J.|title=Hormonal Regulation in Higher Plants|journal=Science|date=21 March 1969|volume=163|issue=3873|pages=1288–1297|doi=10.1126/science.163.3873.1288|pmid=4886673|bibcode=1969Sci...163.1288G}}</ref> [[protoplasts]] and [[polyamines]].<ref>{{cite book|editor-last1=Galston|editor-first1=Arthur W.|editor-last2=Smith|editor-first2=Terence A.|title=Polyamines in plants|date=1985|publisher=M. Nijhoff/W. Junk|location=Dordrecht, Netherlands|isbn=9789024732456}}</ref><ref name=Yale2004/> Using microspectrophotometric measurements, he was the first researcher to report that phytochromes were located in plant nuclei, a result that would be confirmed using molecular techniques over 30 years later.<ref name="ASPB">{{cite journal|title=Obituaries: Arthur W. Galston|journal=ASPB News|date=2008|volume=35|issue=5|page=41|url=https://aspb.org/newsletter/archive/2008/septoct08.pdf}}</ref><ref name="Microspectrophotometric">{{cite journal|last1=Galston|first1=Arthur W.|title=Microspectrophotometric Evidence for Phytochrome in Plant Nuclei|journal=Proceedings of the National Academy of Sciences of the United States of America|date=October 15, 1968|volume=61|issue=2|pages=454–460|jstor=59097|doi=10.1073/pnas.61.2.454|pmid=16591702|pmc=225180|bibcode=1968PNAS...61..454G|doi-access=free}}</ref>


At Yale, increasing amounts of Galston's time were spent in administrative roles. He served as chair of the Departments of Botany and Biology, the university-wide Course of Study Committee, and the Committee on Teaching and Learning. He was also director of the Biological Sciences Division. Following mandatory retirement from the biology department in 1990, he became the Eaton Professor Emeritus in the Department of Molecular, Cellular and Developmental Biology as well as professor emeritus in the School of Forestry & Environmental Studies. He continued to lecture and write after his retirement, in his second career as a bioethicist.<ref name="Memoriam">{{cite news|title=In Memoriam: Arthur Galston, Plant Biologist, Fought Use of Agent Orange|url=http://news.yale.edu/2008/07/18/memoriam-arthur-galston-plant-biologist-fought-use-agent-orange|access-date=19 April 2017|work=Yale News|date=July 18, 2008}}</ref>
At Yale, increasing amounts of Galston's time were spent in administrative roles. He served as chair of the Departments of Botany and Biology, the university-wide Course of Study Committee, and the Committee on Teaching and Learning. He was also director of the Biological Sciences Division. Following mandatory retirement from the biology department in 1990, he became the Eaton Professor Emeritus in the Department of Molecular, Cellular and Developmental Biology as well as professor emeritus in the School of Forestry & Environmental Studies. He continued to lecture and write after his retirement, in his second career as a bioethicist.<ref name="Memoriam">{{cite news|title=In Memoriam: Arthur Galston, Plant Biologist, Fought Use of Agent Orange|url=http://news.yale.edu/2008/07/18/memoriam-arthur-galston-plant-biologist-fought-use-agent-orange|access-date=19 April 2017|work=Yale News|date=July 18, 2008}}</ref>
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==Bioethics==
==Bioethics==
[[File:2,3,5-Triiodobenzoic acid.svg|150px|thumbnail|2,3,5-Triiodobenzoic acid]]
[[File:2,3,5-Triiodobenzoic acid.svg|150px|thumbnail|2,3,5-Triiodobenzoic acid]]
In 1951, [[biological warfare]] scientists at [[Fort Detrick]], [[Maryland]] began investigating defoliants based upon Galston's Ph.D. discoveries with TIBA. They eventually produced the toxic defoliant Agent Orange used by the [[British Air Force]] during the [[Malayan Emergency]] and the [[U.S. Air Force]] during the [[Vietnam War]].<ref name="Schneider2003" />
In 1951, [[biological warfare]] scientists at [[Fort Detrick]], [[Maryland]], began investigating defoliants based upon Galston's Ph.D. discoveries with TIBA. They eventually produced the toxic defoliant Agent Orange used by the [[British Air Force]] during the [[Malayan Emergency]] and the [[U.S. Air Force]] during the [[Vietnam War]].<ref name="Schneider2003" />


Galston was deeply affected by this development of his research. In 1972, he described his viewpoint:<ref name="Responsibility">{{cite journal|last1=Galston|first1=Arthur W.|title=Science and Social Responsibility: A Case History|journal=Annals of the New York Academy of Sciences|date=1972|volume=196|issue=4 The social Re|pages=223–35|url=http://beck2.med.harvard.edu/week13/Galston.pdf|access-date=19 April 2017|doi=10.1111/j.1749-6632.1972.tb21231.x|pmid=4504113|bibcode=1972NYASA.196..223G}}</ref>
Galston was deeply affected by this development of his research. In 1972, he described his viewpoint:<ref name="Responsibility">{{cite journal|last1=Galston|first1=Arthur W.|title=Science and Social Responsibility: A Case History|journal=Annals of the New York Academy of Sciences|date=1972|volume=196|issue=4 The social Re|pages=223–35|url=http://beck2.med.harvard.edu/week13/Galston.pdf|access-date=19 April 2017|doi=10.1111/j.1749-6632.1972.tb21231.x|pmid=4504113|bibcode=1972NYASA.196..223G|s2cid=9704902}}</ref>


{{quote|I used to think that one could avoid involvement in the antisocial consequences of science simply by not working on any project that might be turned to evil or destructive ends. I have learned that things are not all that simple, and that almost any scientific finding can be perverted or twisted under appropriate societal pressures. In my view, the only recourse for a scientist concerned about the social consequences of his work is to remain involved with it to the end. His responsibility to society does not cease with publication of a definitive scientific paper. Rather, if his discovery is translated into some impact on the world outside the laboratory, he will, in most instances, want to follow through to see that it is used for constructive rather than anti-human purposes.... Science is now too potent in transforming our world to permit random fallout of the social consequences of scientific discoveries. Some scrutiny and regulation are required, and I believe that scientists must play an important role in any bodies devised to carry out such tasks.<ref name="Responsibility"/>}}
{{blockquote|I used to think that one could avoid involvement in the antisocial consequences of science simply by not working on any project that might be turned to evil or destructive ends. I have learned that things are not all that simple, and that almost any scientific finding can be perverted or twisted under appropriate societal pressures. In my view, the only recourse for a scientist concerned about the social consequences of his work is to remain involved with it to the end. His responsibility to society does not cease with publication of a definitive scientific paper. Rather, if his discovery is translated into some impact on the world outside the laboratory, he will, in most instances, want to follow through to see that it is used for constructive rather than anti-human purposes.... Science is now too potent in transforming our world to permit random fallout of the social consequences of scientific discoveries. Some scrutiny and regulation are required, and I believe that scientists must play an important role in any bodies devised to carry out such tasks.<ref name="Responsibility"/>}}


While the United States government argued that [[herbicides]] like Agent Orange did not qualify as [[chemical weapon]]s, Galston asserted that their use was a violation of the United Nations Resolution of December 5, 1966 against the wartime use of “asphyxiating, poisonous or other gases” and “analogous liquids, materials or devices”.<ref name="Responsibility"/> He was clear about the devastating impact of their use on the environment, and warned of the likelihood that they were harmful to animals and humans as well as plants. Galston visited [[Vietnam]] and China, viewing the environmental damage in Vietnam first-hand.<ref name="Responsibility"/>
While the United States government argued that [[herbicides]] like Agent Orange did not qualify as [[chemical weapon]]s, Galston asserted that their use was a violation of the United Nations Resolution of December 5, 1966, against the wartime use of “asphyxiating, poisonous or other gases” and “analogous liquids, materials or devices”.<ref name="Responsibility"/> He was clear about the devastating impact of their use on the environment, and warned of the likelihood that they were harmful to animals and humans as well as plants. Galston visited [[Vietnam]] and China, viewing the environmental damage in Vietnam first-hand.<ref name="Responsibility"/>


{{quote|The complex mangrove community lining the estuaries is virtually completely killed by a single spray with agent Orange and regeneration takes several decades, at least... The complete killing of the mangroves is certain to have a major effect on the ecology of the estuarine zone... The ecological and social effects of our massive use of herbicides have not been properly evaluated, and it is doubtful that they ever will be.<ref name="Responsibility"/>}}
{{blockquote|The complex mangrove community lining the estuaries is virtually completely killed by a single spray with agent Orange and regeneration takes several decades, at least... The complete killing of the mangroves is certain to have a major effect on the ecology of the estuarine zone... The ecological and social effects of our massive use of herbicides have not been properly evaluated, and it is doubtful that they ever will be.<ref name="Responsibility"/>}}


Beginning in 1965, Galston lobbied both his scientific colleagues and the government to stop using Agent Orange.<ref name="Economist"/>
Beginning in 1965, Galston lobbied both his scientific colleagues and the government to stop using Agent Orange.<ref name="Economist"/>
Galston and U.S. [[genetics|geneticist]] [[Matthew Meselson|Matthew S. Meselson]] appealed to the [[United States Department of Defense|U. S. Department of Defense]] to investigate the human [[toxicology]] of Agent Orange.<ref name="Pearce2008">{{cite news|last=Pearce|first=Jeremy|title=Arthur Galston, Agent Orange Researcher, Is Dead at 88|date=2008-06-23|work=New York Times|access-date=2008-07-12|url=https://www.nytimes.com/2008/06/23/us/23galston.html?src=tp&_r=1&}}</ref> The research conducted by the Department of Defense led to the discovery that Agent Orange caused [[birth defect]]s in [[laboratory rat]]s.<ref name="Pearce2008" /> In 1971 this information led to [[U.S. President]] [[Richard M. Nixon]] banning the use of the substance.<ref name="Pearce2008" /> Later research showed that Agent Orange contained high levels of [[teratogenic]] [[Dioxins and dioxin-like compounds|dioxins]].<ref name="Responsibility"/>
Galston and U.S. [[geneticist]] [[Matthew Meselson|Matthew S. Meselson]] appealed to the [[United States Department of Defense|U. S. Department of Defense]] to investigate the human [[toxicology]] of Agent Orange.<ref name="Pearce2008">{{cite news|last=Pearce|first=Jeremy|title=Arthur Galston, Agent Orange Researcher, Is Dead at 88|date=2008-06-23|work=New York Times|access-date=2008-07-12|url=https://www.nytimes.com/2008/06/23/us/23galston.html?src=tp&_r=1&}}</ref> The research conducted by the Department of Defense led to the discovery that Agent Orange caused [[birth defect]]s in [[laboratory rat]]s.<ref name="Pearce2008" /> In 1971 this information led to [[U.S. President]] [[Richard M. Nixon]] banning the use of the substance.<ref name="Pearce2008" /> Later research showed that Agent Orange contained high levels of [[teratogenic]] [[Dioxins and dioxin-like compounds|dioxins]].<ref name="Responsibility"/>


With [[Ethan Signer]] of MIT, Galston was one of the first two American scientists invited to visit the [[People's Republic of China]]. In 1971, he met [[Chou En-lai]], then Prime Minister, as well as [[King Norodom Sihanouk]] of [[Cambodia]], who then resided in [[Shanghai]].<ref name="Accidental"/> The visit was reported in ''[[The New York Times]]''.<ref name="Sullivan">{{cite news|last1=Sullivan|first1=Walter|title=2 U.S. Scientists Will Visit China|url=https://www.nytimes.com/1971/05/11/archives/2-u-s-scientists-will-visit-china-biologists-critical-of-war-said.html|access-date=20 April 2017|work=The New York Times|date=May 11, 1971}}</ref><ref name="Return">{{cite news|last1=Sullivan|first1=Walter|title=Two Returning Americans Cite Big Change in Chinese Science|url=https://mobile.nytimes.com/1971/05/26/archives/two-returning-americans-cite-big-change-in-chinese-science.html|access-date=20 April 2017|work=The New York Times|date=May 26, 1971}}</ref><ref name="Schmalzer">{{cite journal|last1=Schmalzer|first1=Sigrid|title=Speaking about China, Learning from China: Amateur China Experts in 1970s America|journal=The Journal of American-East Asian Relations|date=2009|volume=16|issue=4|pages=313–352|jstor=23613165|doi=10.1163/187656109792655526}}</ref> Galston's experiences on visits to China led him to write ''Daily life in people's China'' (1973).
With [[Ethan Signer]] of MIT, Galston was one of the first two American scientists invited to visit the [[People's Republic of China]]. In 1971, he met [[Zhou Enlai]], then Prime Minister, as well as [[King Norodom Sihanouk]] of [[Cambodia]], who then resided in [[Shanghai]].<ref name="Accidental"/> The visit was reported in ''[[The New York Times]]''.<ref name="Sullivan">{{cite news|last1=Sullivan|first1=Walter|title=2 U.S. Scientists Will Visit China|url=https://www.nytimes.com/1971/05/11/archives/2-u-s-scientists-will-visit-china-biologists-critical-of-war-said.html|access-date=20 April 2017|work=The New York Times|date=May 11, 1971}}</ref><ref name="Return">{{cite news|last1=Sullivan|first1=Walter|title=Two Returning Americans Cite Big Change in Chinese Science|url=https://mobile.nytimes.com/1971/05/26/archives/two-returning-americans-cite-big-change-in-chinese-science.html|access-date=20 April 2017|work=The New York Times|date=May 26, 1971}}</ref><ref name="Schmalzer">{{cite journal|last1=Schmalzer|first1=Sigrid|title=Speaking about China, Learning from China: Amateur China Experts in 1970s America|journal=The Journal of American-East Asian Relations|date=2009|volume=16|issue=4|pages=313–352|jstor=23613165|doi=10.1163/187656109792655526}}</ref> Galston's experiences on visits to China led him to write ''Daily life in people's China'' (1973).


Galston taught bioethics to Yale undergraduates from 1977 to 2004.<ref name="Peterson">{{cite web|last1=Peterson|first1=Doug|title=Matters of Light|url=http://www.las.illinois.edu/alumni/magazine/articles/2004/galston/|website=University of Illinois|date=October 2004|access-date=18 April 2017}}</ref> In 2003-2004 his introductory bioethics course attracted 460 students, making it one of the most popular courses in [[Yale College]].<ref name="Economist"/> After his retirement as a biologist in 1990, he became affiliated with Yale's Institution for Social & Policy Studies, where he helped to found the Interdisciplinary Center for Bioethics.<ref name="Center">{{cite web|title=In Memoriam Art Galston Jay Katz Charles McKhann Sherwin Nuland Howard Spiro Florence Wald|url=http://bioethics.yale.edu/memoriam|website=Yale Interdisciplinary Center for Bioethics|access-date=19 April 2017}}</ref>
Galston taught bioethics to Yale undergraduates from 1977 to 2004.<ref name="Peterson">{{cite web|last1=Peterson|first1=Doug|title=Matters of Light|url=http://www.las.illinois.edu/alumni/magazine/articles/2004/galston/|website=University of Illinois|date=October 2004|access-date=18 April 2017}}</ref> In 2003-2004 his introductory bioethics course attracted 460 students, making it one of the most popular courses in [[Yale College]].<ref name="Economist"/> After his retirement as a biologist in 1990, he became affiliated with Yale's Institution for Social & Policy Studies, where he helped to found the Interdisciplinary Center for Bioethics.<ref name="Center">{{cite web|title=In Memoriam Art Galston Jay Katz Charles McKhann Sherwin Nuland Howard Spiro Florence Wald|url=http://bioethics.yale.edu/memoriam|website=Yale Interdisciplinary Center for Bioethics|access-date=19 April 2017}}</ref>
Line 121: Line 119:


==Family==
==Family==
In 1942, Galston married Dale Judith Kuntz, whom he had met at [[Cornell University]]. Their son [[William Arthur Galston]] became a political scientist. He was an [[Presidential advisor|advisor]] to U.S. President [[Bill Clinton]] and is a senior [[fellow]] at the [[Brookings Institution]].<ref>Chou, Cecelia. [https://embryo.asu.edu/pages/arthur-william-galston-1920-2008 Arthur William Galston (1920–2008)] The Embryo Project Encyclopedia. published 2017-04-27.</ref>
In 1942, Galston married Dale Judith Kuntz, whom he had met at [[Cornell University]]. Their son [[William Arthur Galston]] became a political scientist. He was an [[Presidential advisor|advisor]] to U.S. President [[Bill Clinton]] and is a senior [[fellow]] at the [[Brookings Institution]].<ref>Chou, Cecelia. [https://embryo.asu.edu/pages/arthur-william-galston-1920-2008 Arthur William Galston (1920–2008)] The Embryo Project Encyclopedia. published 2017-04-27.</ref> Their daughter, Beth Galston, is an environmental sculptor who often uses plants as source material. [http://act.mit.edu/cavs/person/KuSTdtevcHYwcJtGmAEFrX] [https://bethgalston.com]


==Awards and honors==
==Awards and honors==
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*[[Fulbright fellow]] in Australia, 1960-61<ref>{{cite web|date=1960|title=Department of State Office of Educational Exchange American Lecturers and Research Scholars Receiving United States Government Awards Under the Fulbright and Smith-Mundt Acts – 1960-61 Academic Year|url=http://libraries.uark.edu/specialcollections/fulbrightdirectories/1960%20-%201961.pdf|website=Bureau of Educational and Cultural Affairs|page=40|access-date=20 April 2017}}</ref>
*[[Fulbright fellow]] in Australia, 1960-61<ref>{{cite web|date=1960|title=Department of State Office of Educational Exchange American Lecturers and Research Scholars Receiving United States Government Awards Under the Fulbright and Smith-Mundt Acts – 1960-61 Academic Year|url=http://libraries.uark.edu/specialcollections/fulbrightdirectories/1960%20-%201961.pdf|website=Bureau of Educational and Cultural Affairs|page=40|access-date=20 April 2017}}</ref>
*[[National Science Foundation]] fellow in England, 1967-68<ref name="Memoriam"/>
*[[National Science Foundation]] fellow in England, 1967-68<ref name="Memoriam"/>
*merit award from [[Botanical Society of America]], 1969<ref name="Shearer">{{cite book|last1=Shearer|first1=Benjamin F.|title=Home front heroes : a biographical dictionary of Americans during wartime|date=2007|publisher=Greenwood Press|location=Westport, Conn.|isbn=9780313334221|pages=326–327|url=https://books.google.com/?id=qgmoC1zwBCUC&pg=PA327|access-date=19 April 2017}}</ref>
*merit award from [[Botanical Society of America]], 1969<ref name="Shearer">{{cite book|last1=Shearer|first1=Benjamin F.|title=Home front heroes : a biographical dictionary of Americans during wartime|date=2007|publisher=Greenwood Press|location=Westport, Conn.|isbn=9780313334221|pages=326–327|url=https://books.google.com/books?id=qgmoC1zwBCUC&pg=PA327|access-date=19 April 2017}}</ref>
*[[Phi Beta Kappa]] national visiting scholar, 1972-73<ref>{{cite web|title=Phi Beta Kappa Visiting Scholars 1956-57- 2016-2017 (61 years)|url=https://www.pbk.org/WEB/pbkdocs/Visiting_Scholar/vscumulative_list.pdf|website=Phi Beta Kappa|access-date=20 April 2017|archive-url=https://web.archive.org/web/20170420143722/https://www.pbk.org/WEB/pbkdocs/Visiting_Scholar/vscumulative_list.pdf|archive-date=20 April 2017|url-status=dead}}</ref>
*[[Phi Beta Kappa]] national visiting scholar, 1972-73<ref>{{cite web|title=Phi Beta Kappa Visiting Scholars 1956-57- 2016-2017 (61 years)|url=https://www.pbk.org/WEB/pbkdocs/Visiting_Scholar/vscumulative_list.pdf|website=Phi Beta Kappa|access-date=20 April 2017|archive-url=https://web.archive.org/web/20170420143722/https://www.pbk.org/WEB/pbkdocs/Visiting_Scholar/vscumulative_list.pdf|archive-date=20 April 2017|url-status=dead}}</ref>
*award from [[New York Academy of Sciences]], 1979<ref name="Shearer"/>
*award from [[New York Academy of Sciences]], 1979<ref name="Shearer"/>
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|access-date=2014-02-10 |url=http://www.life.illinois.edu/plantbio/scrapbookhome.htm
|access-date=2014-02-10 |url=http://www.life.illinois.edu/plantbio/scrapbookhome.htm
|quote=We mourn the passing of one of our Department’s MOST DISTINGUISHED ALUMNI, Arthur W. Galston, at the age of 88, following a long career of scientific achievement and profound humanitarian contributions.}}</ref>
|quote=We mourn the passing of one of our Department’s MOST DISTINGUISHED ALUMNI, Arthur W. Galston, at the age of 88, following a long career of scientific achievement and profound humanitarian contributions.}}</ref>
*Recognized as a Pioneer Member of the [[American Society of Plant Biologists]].<ref>{{cite web | url=https://aspb.org/membership/aspb-pioneer-members/ | title=ASPB Pioneer Members }}</ref>


==Books==
==Books==
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{{reflist}}
{{reflist}}


== External Links ==
== External links ==
* Arthur Galston Papers (MS 1712). Manuscripts and Archives, Yale University Library.[http://hdl.handle.net/10079/fa/mssa.ms.1712]
* Arthur Galston Papers (MS 1712). Manuscripts and Archives, Yale University Library.[http://hdl.handle.net/10079/fa/mssa.ms.1712]


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[[Category:American botanists]]
[[Category:American botanists]]
[[Category:Plant physiologists]]
[[Category:Plant physiologists]]
[[Category:Bioethics]]
[[Category:California Institute of Technology faculty]]
[[Category:California Institute of Technology faculty]]
[[Category:Yale University faculty]]
[[Category:Yale University faculty]]
[[Category:Hebrew University of Jerusalem faculty]]
[[Category:Academic staff of the Hebrew University of Jerusalem]]
[[Category:Cornell University College of Agriculture and Life Sciences alumni]]
[[Category:Cornell University College of Agriculture and Life Sciences alumni]]
[[Category:University of Illinois alumni]]
[[Category:University of Illinois alumni]]
[[Category:Fulbright Scholars]]
[[Category:Fellows of the American Academy of Arts and Sciences]]
[[Category:Fellows of the American Academy of Arts and Sciences]]
[[Category:United States Navy sailors]]
[[Category:United States Navy sailors]]
[[Category:American naval personnel of World War II]]
[[Category:United States Navy personnel of World War II]]
[[Category:American military personnel who served in the Pacific theatre of World War II]]
[[Category:1920 births]]
[[Category:1920 births]]
[[Category:2008 deaths]]
[[Category:2008 deaths]]
[[Category:Jewish American scientists]]
[[Category:Jewish American scientists]]
[[Category:People from Brooklyn]]
[[Category:Scientists from Brooklyn]]
[[Category:Scientists from New York (state)]]
[[Category:Scientists from New York (state)]]
[[Category:20th-century American Jews]]
[[Category:21st-century American Jews]]
[[Category:American expatriates in Japan]]
[[Category:Fulbright alumni]]

Latest revision as of 22:49, 29 January 2024

Arthur William Galston
Born(1920-04-21)April 21, 1920
DiedJune 15, 2008(2008-06-15) (aged 88)
Alma mater
Known for
SpouseDale Judith Kuntz (m. June 27, 1941)
Children
AwardsWilliam Clyde DeVane Medal, 1994; Alumni Achievement Award, 2004
Scientific career
Institutions
Academic advisorsHarry Fuller

Arthur W. Galston (April 21, 1920 – June 15, 2008) was an American plant physiologist and bioethicist. As a plant biologist, Galston studied plant hormones and the effects of light on plant development, particularly phototropism. He identified riboflavin and other flavins as the photoreceptors for phototropism, the bending of plants toward light, challenging the prevailing view that carotenoids were responsible.[1]

As a graduate student in 1943, Galston studied the use of 2,3,5-triiodobenzoic acid (TIBA) to encourage the flowering of soybeans, and noted that high levels had a defoliant effect. The British and U.S. military later developed TIBA into Agent Orange which was employed extensively in Malaya and Vietnam. Galston became a bioethicist, and spoke out against such uses of science. As chairman of Yale's botany department, Galston's ethical objections led President Nixon to end the use of Agent Orange.

Early life and education[edit]

Galston was the youngest child of Hyman and Freda Galston.[2] He grew up in a Jewish family in the Brooklyn borough of New York City, impoverished during the Great Depression.[3] Inspired by doctors like microbiologist Paul de Kruif[4] but unable to afford medical school, Galston enrolled at Cornell's Agricultural College which was free for citizens of New York State.[3] He played saxophone in jazz and swing bands to earn living expenses.[5][6]

Galston's original intention was to attend Cornell Veterinary School after his freshman year.[4] However, under the influence of botany professor Loren C. Petry he came to love botany,[3] turned down an acceptance to Cornell Veterinary School, and earned a B.S. in botany from Cornell instead in 1940.[4]

The University of Illinois offered Galston a teaching assistantship for graduate work, so he went to Champaign-Urbana to study botany and biochemistry. He worked with plant physiologist Harry J. Fuller and botanist Oswald Tippo. Fuller, although nominally his advisor, was sent to South America on war-related research and was unavailable much of the time.[4] Galston completed his M.Sc. in 1942 and his Ph.D. in 1943.[2] It was a wartime requirement that the doctorate be completed in three years.[4]

Galston's Ph.D. dissertation was titled Physiology of flowering, with especial reference to floral initiation in soybeans (1943).[7] His research focused on finding a chemical means to make soybeans flower and fruit earlier, so that they could mature before the end of the growing season.[8] He discovered that 2,3,5-triiodobenzoic acid (TIBA) would speed up the flowering of soybeans. He also noted that in higher concentrations it would defoliate the soybeans[8] by causing them to release ethylene.[6]

Wartime service[edit]

During World War II, the Imperial Japanese Army captured most of the world's rubber plantations in British Malaya, causing a natural rubber shortage for the Allied armies. Natural rubber came from the rubber tree, Hevea brasiliensis, a native of South America that was commercially grown in Southeast Asia. The United States government established a research program to develop synthetic rubber, and also encouraged research into botanical alternatives. Guayule, whose sap could be used to produce latex, was considered a possible substitute for rubber.[9] Galston was recommended to James F. Bonner by H. E. Carter, and spent a year working with Bonner at Caltech in Pasadena, California, to develop rubber tires from guayule.[3] By the end of 1944, the U.S. had achieved success with synthetic, petroleum-based rubber, and interest in guayule research lessened.[9]

In July 1944, Galston was drafted into the U.S. Navy as an enlisted man. He ultimately served as Natural Resources officer in Naval Military Government on Okinawa until his discharge in 1946.[4]

Plant biology[edit]

After a year as an instructor at Yale University in 1946–1947, Galston returned to the California Institute of Technology to work with James Bonner as a senior research fellow. While at Caltech, Galston made an important discovery. He identified riboflavin as a photoreceptor involved in the bending of plants toward light. This overturned a commonly held belief that carotene was the photoreceptor involved in phototropism.[1][10]

In 1950 Galston accepted a Guggenheim Fellowship to spend a year working with Hugo Theorell at the Karolinska Institute in Stockholm, Sweden. Upon his return to Caltech in 1951, Galston became tenured as an associate professor. His supporters included Bonner and Frits Warmolt Went, both of whom were senior plant biology researchers at Caltech. He co-taught classes in biology with George Beadle, who was then chairman of the biology department.[3]

In 1955, Galston was offered a full professorship at Yale University by Oswald Tippo, chair of the botany department. In addition to a significant increase in salary and position, it was an opportunity for leadership in an expanding department. Yale, in New Haven, Connecticut, was also closer to family members in New York City and work opportunities for Galston's wife, Dale Judith Kuntz. Galston accepted the offer, and taught at Yale from 1955 onwards.[3]

At Yale, Galston continued to do research in the areas of auxin physiology,[11] photobiology,[12] plant hormones,[13] protoplasts and polyamines.[14][15] Using microspectrophotometric measurements, he was the first researcher to report that phytochromes were located in plant nuclei, a result that would be confirmed using molecular techniques over 30 years later.[5][16]

At Yale, increasing amounts of Galston's time were spent in administrative roles. He served as chair of the Departments of Botany and Biology, the university-wide Course of Study Committee, and the Committee on Teaching and Learning. He was also director of the Biological Sciences Division. Following mandatory retirement from the biology department in 1990, he became the Eaton Professor Emeritus in the Department of Molecular, Cellular and Developmental Biology as well as professor emeritus in the School of Forestry & Environmental Studies. He continued to lecture and write after his retirement, in his second career as a bioethicist.[10] He was president of the Botanical Society of America and of the American Society of Plant Physiologists (1962-1963).[5][10]

Galston supervised 24 Ph.D. and 67 postdoctoral students from around the world.[10] He authored more than 320 papers and several books on plant physiology, as well as co-editing two books on bioethics.[17][10]

Bioethics[edit]

2,3,5-Triiodobenzoic acid

In 1951, biological warfare scientists at Fort Detrick, Maryland, began investigating defoliants based upon Galston's Ph.D. discoveries with TIBA. They eventually produced the toxic defoliant Agent Orange used by the British Air Force during the Malayan Emergency and the U.S. Air Force during the Vietnam War.[8]

Galston was deeply affected by this development of his research. In 1972, he described his viewpoint:[18]

I used to think that one could avoid involvement in the antisocial consequences of science simply by not working on any project that might be turned to evil or destructive ends. I have learned that things are not all that simple, and that almost any scientific finding can be perverted or twisted under appropriate societal pressures. In my view, the only recourse for a scientist concerned about the social consequences of his work is to remain involved with it to the end. His responsibility to society does not cease with publication of a definitive scientific paper. Rather, if his discovery is translated into some impact on the world outside the laboratory, he will, in most instances, want to follow through to see that it is used for constructive rather than anti-human purposes.... Science is now too potent in transforming our world to permit random fallout of the social consequences of scientific discoveries. Some scrutiny and regulation are required, and I believe that scientists must play an important role in any bodies devised to carry out such tasks.[18]

While the United States government argued that herbicides like Agent Orange did not qualify as chemical weapons, Galston asserted that their use was a violation of the United Nations Resolution of December 5, 1966, against the wartime use of “asphyxiating, poisonous or other gases” and “analogous liquids, materials or devices”.[18] He was clear about the devastating impact of their use on the environment, and warned of the likelihood that they were harmful to animals and humans as well as plants. Galston visited Vietnam and China, viewing the environmental damage in Vietnam first-hand.[18]

The complex mangrove community lining the estuaries is virtually completely killed by a single spray with agent Orange and regeneration takes several decades, at least... The complete killing of the mangroves is certain to have a major effect on the ecology of the estuarine zone... The ecological and social effects of our massive use of herbicides have not been properly evaluated, and it is doubtful that they ever will be.[18]

Beginning in 1965, Galston lobbied both his scientific colleagues and the government to stop using Agent Orange.[6] Galston and U.S. geneticist Matthew S. Meselson appealed to the U. S. Department of Defense to investigate the human toxicology of Agent Orange.[19] The research conducted by the Department of Defense led to the discovery that Agent Orange caused birth defects in laboratory rats.[19] In 1971 this information led to U.S. President Richard M. Nixon banning the use of the substance.[19] Later research showed that Agent Orange contained high levels of teratogenic dioxins.[18]

With Ethan Signer of MIT, Galston was one of the first two American scientists invited to visit the People's Republic of China. In 1971, he met Zhou Enlai, then Prime Minister, as well as King Norodom Sihanouk of Cambodia, who then resided in Shanghai.[4] The visit was reported in The New York Times.[20][21][22] Galston's experiences on visits to China led him to write Daily life in people's China (1973).

Galston taught bioethics to Yale undergraduates from 1977 to 2004.[17] In 2003-2004 his introductory bioethics course attracted 460 students, making it one of the most popular courses in Yale College.[6] After his retirement as a biologist in 1990, he became affiliated with Yale's Institution for Social & Policy Studies, where he helped to found the Interdisciplinary Center for Bioethics.[23]

Galston also co-founded the National Senior Conservation Corps (Grey is Green), a non-profit organization dedicated to helping older Americans to create positive environmental change and lead more sustainable lives.[24]

In 1966, Galston successfully nominated Duke Ellington to receive an honorary doctorate from Yale. The Duke received the honor in 1967, but Galston was unable to attend, and did not meet him until 1972.[25]

Arthur Galston died of congestive heart failure[5] on June 15, 2008, in Hamden, Connecticut.[26][27]

Family[edit]

In 1942, Galston married Dale Judith Kuntz, whom he had met at Cornell University. Their son William Arthur Galston became a political scientist. He was an advisor to U.S. President Bill Clinton and is a senior fellow at the Brookings Institution.[28] Their daughter, Beth Galston, is an environmental sculptor who often uses plants as source material. [1] [2]

Awards and honors[edit]

Books[edit]

  • Galston, Arthur W.; Bonner, James C. (1952). Principles of Plant Physiology. San Francisco and London: W. H. Freeman & Co. Ltd., reprinted 1959.
  • Galston, Arthur W.; Davies, Peter J.; Satter, Ruth L. (1961). The life of the green plant. Englewood Cliffs, N.J.: Prentice-Hall., reprinted 1964, 1968 (as The green plant), 1980, 1990, 1994, 1998.
  • Galston, Arthur W.; Davies, Peter J. (1970). Control mechanisms in plant development. Englewood Cliffs N.J: Prentice-Hall. ISBN 9780131718012.
  • Galston, Arthur W.; Savage, Jean S. (1973). Daily life in people's China. New York: Crowell. ISBN 9780690231403.; reprinted as Galston, Arthur W. (1981). Green wisdom. New York: Basic Books. ISBN 978-0465027125.
  • Galston, Arthur W.; Smith, Terence A., eds. (1985). Polyamines in plants. Dordrecht, Netherlands: M. Nijhoff/W. Junk. ISBN 9789024732456.
  • Galston, Arthur W. (1994). Life processes of plants. New York: Scientific American Library. ISBN 978-0716750444.
  • Galston, Arthur W.; Shurr, Emily G., eds. (2001). New Dimensions in Bioethics Science, Ethics and the Formulation of Public Policy. Boston, MA: Springer US. ISBN 978-1-4615-1591-3.
  • Galston, Arthur W. (2005). Expanding Horizons in Bioethics. New York: Springer. ISBN 978-1402030611.

References[edit]

  1. ^ a b Whippo, C. W. (1 May 2006). "Phototropism: Bending towards Enlightenment". The Plant Cell Online. 18 (5): 1110–1119. doi:10.1105/tpc.105.039669. PMC 1456868. PMID 16670442.
  2. ^ a b Debus, Allen G., ed. (1968). World Who's Who in Science: A Biographical Dictionary of Notable Scientists from Antiquity to the Present (1st ed.). Chicago: Marquis-Who's Who, Inc. p. 628. ISBN 978-0837910017.
  3. ^ a b c d e f Galston, Arthur W. (October 8, 2002). "Oral History Project" (PDF) (interview). Interviewed by Shirley K. Cohen. Pasadena, California: California Institute of Technology Archives. Retrieved 2014-02-10.
  4. ^ a b c d e f g Galston, Arthur (March 2002). "An Accidental Plant Biologist". Plant Physiology. 128 (3): 786–787. doi:10.1104/pp.900024. PMC 1540213. PMID 11891234.
  5. ^ a b c d "Obituaries: Arthur W. Galston" (PDF). ASPB News. 35 (5): 41. 2008.
  6. ^ a b c d "Arthur Galston, botanist, died on June 15th, aged 88". The Economist. June 26, 2008. Retrieved 19 April 2017.
  7. ^ Galston, Arthur William (1943). The physiology of flowering, with especial reference to floral initiation in soybeans Thesis (Ph.D.). University of Illinois at Urbana-Champaign.
  8. ^ a b c Schneider, Brandon (Winter 2003). "Agent Orange: A deadly member of the rainbow". Yale Scientific. 77 (2). Archived from the original on 2009-01-25. Retrieved 2008-07-12.
  9. ^ a b Finlay, Mark R. (2011). "Behind the Barbed Wire of Manzanar: Guayule and the Search for Natural Rubber". Chemical Heritage Magazine. Fall 2011/Winter 2012. Retrieved 24 March 2018.
  10. ^ a b c d e f g h i "In Memoriam: Arthur Galston, Plant Biologist, Fought Use of Agent Orange". Yale News. July 18, 2008. Retrieved 19 April 2017.
  11. ^ Britz, Steven J.; Galston, Arthur W. (1983). "Physiology of Movements in the Stems of Seedling Pisum sativum L. cv Alaska 1 III. Phototropism in Relation to Gravitropism, Nutation, and Growth". Plant Physiology. 71 (2): 313–318. doi:10.1104/pp.71.2.313. PMC 1066031. PMID 16662824.
  12. ^ Galston, A. W. (1 October 1974). "Plant Photobiology in the Last Half-Century". Plant Physiology. 54 (4): 427–436. doi:10.1104/pp.54.4.427. PMC 367430. PMID 16658905.
  13. ^ Galston, A. W.; Davies, P. J. (21 March 1969). "Hormonal Regulation in Higher Plants". Science. 163 (3873): 1288–1297. Bibcode:1969Sci...163.1288G. doi:10.1126/science.163.3873.1288. PMID 4886673.
  14. ^ Galston, Arthur W.; Smith, Terence A., eds. (1985). Polyamines in plants. Dordrecht, Netherlands: M. Nijhoff/W. Junk. ISBN 9789024732456.
  15. ^ a b "Arthur Galston to Receive Distinguished Alumni Award from University of Illinois". Yale News. October 20, 2004. Retrieved 19 April 2017.
  16. ^ Galston, Arthur W. (October 15, 1968). "Microspectrophotometric Evidence for Phytochrome in Plant Nuclei". Proceedings of the National Academy of Sciences of the United States of America. 61 (2): 454–460. Bibcode:1968PNAS...61..454G. doi:10.1073/pnas.61.2.454. JSTOR 59097. PMC 225180. PMID 16591702.
  17. ^ a b Peterson, Doug (October 2004). "Matters of Light". University of Illinois. Retrieved 18 April 2017.
  18. ^ a b c d e f Galston, Arthur W. (1972). "Science and Social Responsibility: A Case History" (PDF). Annals of the New York Academy of Sciences. 196 (4 The social Re): 223–35. Bibcode:1972NYASA.196..223G. doi:10.1111/j.1749-6632.1972.tb21231.x. PMID 4504113. S2CID 9704902. Retrieved 19 April 2017.
  19. ^ a b c Pearce, Jeremy (2008-06-23). "Arthur Galston, Agent Orange Researcher, Is Dead at 88". New York Times. Retrieved 2008-07-12.
  20. ^ Sullivan, Walter (May 11, 1971). "2 U.S. Scientists Will Visit China". The New York Times. Retrieved 20 April 2017.
  21. ^ Sullivan, Walter (May 26, 1971). "Two Returning Americans Cite Big Change in Chinese Science". The New York Times. Retrieved 20 April 2017.
  22. ^ Schmalzer, Sigrid (2009). "Speaking about China, Learning from China: Amateur China Experts in 1970s America". The Journal of American-East Asian Relations. 16 (4): 313–352. doi:10.1163/187656109792655526. JSTOR 23613165.
  23. ^ "In Memoriam Art Galston Jay Katz Charles McKhann Sherwin Nuland Howard Spiro Florence Wald". Yale Interdisciplinary Center for Bioethics. Retrieved 19 April 2017.
  24. ^ "The History of NSCC" (PDF). Gray Is Green. 4. Archived from the original (PDF) on 20 April 2017. Retrieved 19 April 2017.
  25. ^ Galston, Arthur W. (October 2002). "The Duke & I: A professor explains how jazz legend Duke Ellington became a doctor in 1967". Yale Alumni Magazine. Retrieved 19 April 2017.
  26. ^ "Arthur W. Galston". Contemporary Authors Online (fee, via Fairfax County Public Library). Biography in Context. Detroit: Gale. 2008. Gale Document Number: GALE|H1000035059. Retrieved 2014-02-10.
  27. ^ "Arthur W. Galston". American Men & Women of Science: A Biographical Directory of Today's Leaders in Physical, Biological, and Related Sciences (fee, via Fairfax County Public Library). Biography in Context. Detroit: Gale. 2008. Gale Document Number: GALE|K3099038777. Retrieved 2014-02-10. (subscription required)
  28. ^ Chou, Cecelia. Arthur William Galston (1920–2008) The Embryo Project Encyclopedia. published 2017-04-27.
  29. ^ "Arthur W. Galston". John Simon Guggenheim Memorial Foundation. Retrieved 19 April 2017.
  30. ^ "Department of State Office of Educational Exchange American Lecturers and Research Scholars Receiving United States Government Awards Under the Fulbright and Smith-Mundt Acts – 1960-61 Academic Year" (PDF). Bureau of Educational and Cultural Affairs. 1960. p. 40. Retrieved 20 April 2017.
  31. ^ a b Shearer, Benjamin F. (2007). Home front heroes : a biographical dictionary of Americans during wartime. Westport, Conn.: Greenwood Press. pp. 326–327. ISBN 9780313334221. Retrieved 19 April 2017.
  32. ^ "Phi Beta Kappa Visiting Scholars 1956-57- 2016-2017 (61 years)" (PDF). Phi Beta Kappa. Archived from the original (PDF) on 20 April 2017. Retrieved 20 April 2017.
  33. ^ Members of the American Academy of Arts & Sciences: 1780-2012 (PDF). Cambridge, MA: American Academy of Arts & Sciences. p. 184. Retrieved 2014-02-10. Galston, Arthur William (1920-2008)
    Election: 1979, Fellow
    Affiliation at Election: Yale University
    Residence at Election: New Haven, CT
    Career description: Plant physiologist; Educator
  34. ^ "DeVane Medalists". Yale Phi Beta Kappa. Retrieved 20 April 2017.
  35. ^ "Illinois Plant Biology: Scrapbook". 2008. Retrieved 2014-02-10. We mourn the passing of one of our Department's MOST DISTINGUISHED ALUMNI, Arthur W. Galston, at the age of 88, following a long career of scientific achievement and profound humanitarian contributions.
  36. ^ "ASPB Pioneer Members".

External links[edit]

  • Arthur Galston Papers (MS 1712). Manuscripts and Archives, Yale University Library.[3]