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The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges

The long atmospheric residence time of CO(2) creates an urgent need to add atmospheric carbon drawdown to CO(2) regulatory strategies. Synthetic and systems biology (SSB), which enables manipulation of cellular phenotypes, offers a powerful approach to amplifying and adding new possibilities to curr...

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Autores principales: DeLisi, Charles, Patrinos, Aristides, MacCracken, Michael, Drell, Dan, Annas, George, Arkin, Adam, Church, George, Cook-Deegan, Robert, Jacoby, Henry, Lidstrom, Mary, Melillo, Jerry, Milo, Ron, Paustian, Keith, Reilly, John, Roberts, Richard J., Segrè, Daniel, Solomon, Susan, Woolf, Dominic, Wullschleger, Stan D., Yang, Xiaohan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521736/
https://www.ncbi.nlm.nih.gov/pubmed/37849905
http://dx.doi.org/10.34133/2020/1016207
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author DeLisi, Charles
Patrinos, Aristides
MacCracken, Michael
Drell, Dan
Annas, George
Arkin, Adam
Church, George
Cook-Deegan, Robert
Jacoby, Henry
Lidstrom, Mary
Melillo, Jerry
Milo, Ron
Paustian, Keith
Reilly, John
Roberts, Richard J.
Segrè, Daniel
Solomon, Susan
Woolf, Dominic
Wullschleger, Stan D.
Yang, Xiaohan
author_facet DeLisi, Charles
Patrinos, Aristides
MacCracken, Michael
Drell, Dan
Annas, George
Arkin, Adam
Church, George
Cook-Deegan, Robert
Jacoby, Henry
Lidstrom, Mary
Melillo, Jerry
Milo, Ron
Paustian, Keith
Reilly, John
Roberts, Richard J.
Segrè, Daniel
Solomon, Susan
Woolf, Dominic
Wullschleger, Stan D.
Yang, Xiaohan
author_sort DeLisi, Charles
collection PubMed
description The long atmospheric residence time of CO(2) creates an urgent need to add atmospheric carbon drawdown to CO(2) regulatory strategies. Synthetic and systems biology (SSB), which enables manipulation of cellular phenotypes, offers a powerful approach to amplifying and adding new possibilities to current land management practices aimed at reducing atmospheric carbon. The participants (in attendance: Christina Agapakis, George Annas, Adam Arkin, George Church, Robert Cook-Deegan, Charles DeLisi, Dan Drell, Sheldon Glashow, Steve Hamburg, Henry Jacoby, Henry Kelly, Mark Kon, Todd Kuiken, Mary Lidstrom, Mike MacCracken, June Medford, Jerry Melillo, Ron Milo, Pilar Ossorio, Ari Patrinos, Keith Paustian, Kristala Jones Prather, Kent Redford, David Resnik, John Reilly, Richard J. Roberts, Daniel Segre, Susan Solomon, Elizabeth Strychalski, Chris Voigt, Dominic Woolf, Stan Wullschleger, and Xiaohan Yang) identified a range of possibilities by which SSB might help reduce greenhouse gas concentrations and which might also contribute to environmental sustainability and adaptation. These include, among other possibilities, engineering plants to convert CO(2) produced by respiration into a stable carbonate, designing plants with an increased root-to-shoot ratio, and creating plants with the ability to self-fertilize. A number of serious ecological and societal challenges must, however, be confronted and resolved before any such application can be fully assessed, realized, and deployed.
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spelling pubmed-105217362023-10-17 The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges DeLisi, Charles Patrinos, Aristides MacCracken, Michael Drell, Dan Annas, George Arkin, Adam Church, George Cook-Deegan, Robert Jacoby, Henry Lidstrom, Mary Melillo, Jerry Milo, Ron Paustian, Keith Reilly, John Roberts, Richard J. Segrè, Daniel Solomon, Susan Woolf, Dominic Wullschleger, Stan D. Yang, Xiaohan Biodes Res Opinion The long atmospheric residence time of CO(2) creates an urgent need to add atmospheric carbon drawdown to CO(2) regulatory strategies. Synthetic and systems biology (SSB), which enables manipulation of cellular phenotypes, offers a powerful approach to amplifying and adding new possibilities to current land management practices aimed at reducing atmospheric carbon. The participants (in attendance: Christina Agapakis, George Annas, Adam Arkin, George Church, Robert Cook-Deegan, Charles DeLisi, Dan Drell, Sheldon Glashow, Steve Hamburg, Henry Jacoby, Henry Kelly, Mark Kon, Todd Kuiken, Mary Lidstrom, Mike MacCracken, June Medford, Jerry Melillo, Ron Milo, Pilar Ossorio, Ari Patrinos, Keith Paustian, Kristala Jones Prather, Kent Redford, David Resnik, John Reilly, Richard J. Roberts, Daniel Segre, Susan Solomon, Elizabeth Strychalski, Chris Voigt, Dominic Woolf, Stan Wullschleger, and Xiaohan Yang) identified a range of possibilities by which SSB might help reduce greenhouse gas concentrations and which might also contribute to environmental sustainability and adaptation. These include, among other possibilities, engineering plants to convert CO(2) produced by respiration into a stable carbonate, designing plants with an increased root-to-shoot ratio, and creating plants with the ability to self-fertilize. A number of serious ecological and societal challenges must, however, be confronted and resolved before any such application can be fully assessed, realized, and deployed. AAAS 2020-07-28 /pmc/articles/PMC10521736/ /pubmed/37849905 http://dx.doi.org/10.34133/2020/1016207 Text en Copyright © 2020 Charles DeLisi et al. https://creativecommons.org/licenses/by/4.0/Exclusive Licensee Nanjing Agricultural University. Distributed under a Creative Commons Attribution License (CC BY 4.0). (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Opinion
DeLisi, Charles
Patrinos, Aristides
MacCracken, Michael
Drell, Dan
Annas, George
Arkin, Adam
Church, George
Cook-Deegan, Robert
Jacoby, Henry
Lidstrom, Mary
Melillo, Jerry
Milo, Ron
Paustian, Keith
Reilly, John
Roberts, Richard J.
Segrè, Daniel
Solomon, Susan
Woolf, Dominic
Wullschleger, Stan D.
Yang, Xiaohan
The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title_full The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title_fullStr The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title_full_unstemmed The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title_short The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges
title_sort role of synthetic biology in atmospheric greenhouse gas reduction: prospects and challenges
topic Opinion
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521736/
https://www.ncbi.nlm.nih.gov/pubmed/37849905
http://dx.doi.org/10.34133/2020/1016207
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