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محتوای ارائه شده توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State. تمام محتوای پادکست شامل قسمت‌ها، گرافیک‌ها و توضیحات پادکست مستقیماً توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State یا شریک پلتفرم پادکست آن‌ها آپلود و ارائه می‌شوند. اگر فکر می‌کنید شخصی بدون اجازه شما از اثر دارای حق نسخه‌برداری شما استفاده می‌کند، می‌توانید روندی که در اینجا شرح داده شده است را دنبال کنید.https://fa.player.fm/legal
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#6 – Nicholas Jordan - Gene Editing for Agricultural Diversification?

 
اشتراک گذاری
 

Manage episode 321622121 series 2982476
محتوای ارائه شده توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State. تمام محتوای پادکست شامل قسمت‌ها، گرافیک‌ها و توضیحات پادکست مستقیماً توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State یا شریک پلتفرم پادکست آن‌ها آپلود و ارائه می‌شوند. اگر فکر می‌کنید شخصی بدون اجازه شما از اثر دارای حق نسخه‌برداری شما استفاده می‌کند، می‌توانید روندی که در اینجا شرح داده شده است را دنبال کنید.https://fa.player.fm/legal

Genetic Engineering and Society Center

GES Colloquium - Tuesdays 12-1PM (via Zoom) NC State University | http://go.ncsu.edu/ges-colloquium GES Mediasite - See videos, full abstracts, speaker bios, and slides https://go.ncsu.edu/ges-mediasite Twitter - https://twitter.com/GESCenterNCSU

Gene editing for agricultural diversification: Insights from a cooperative governance project

Nicholas R. Jordan, PhD, Professor of Agronomy and Plant Genetics, University of Minnesota

Website | @UMN_AgroPlant

Abstract Agricultural diversification is widely seen as a critical element of future agricultural development development. One important concept of diversification is continuous-living-cover (CLC) agriculture, which integrates multiple crops to create diversified agroecosystems in which soils are covered by living plants across time and space continuously. Compared to agroecosystems that provide more limited cover of soil, CLC agriculture can greatly improve production of many ecosystem services from agroecosystems. To go to scale, CLC agriculture requires crops that not only provide continuous living cover but are viable in economic and social terms.

At present, lack of such crops is strongly limiting the scaling of CLC agriculture. Gene editing (GE) might provide a powerful tool for developing the crops needed to expand CLC agriculture to scale. To assess this possibility, a multi-sector deliberative group deliberated the merits of GE—relative to alternative plant-breeding methods—as means for improving crops for CLC agriculture. The group included many of the sectors whose support is necessary to scaling agricultural innovations, including actors involved in markets, finance, policy, and R&D. Views of participants were expressed in interviews and deliberative workshops.

Many in the group were enthusiastic about prospects for applications of GE to develop crops for CLC agriculture, relative to alternative plant-breeding options. However, the group noted many issues, risks, and contingencies, all of which are likely to require responsive and adaptive management. Conversely, if these issues, risks, and contingencies cannot be managed, it appears unlikely that a strong multi-sector base of support can be sustained for such applications, limiting their scaling. Emerging methods for responsible innovation and scaling have potential to manage these issues, risks, and contingencies; we propose that outcomes from GE crops for CLC agriculture are likely to be much improved if these emerging methods are used to govern such projects.

Related Publication:

Speaker Bio

Dr. Nick Jordan is a Professor of Agronomy & Plant Genetics, at the University of Minnesota, St. Paul. His research, teaching, and engagement work seeks pathways to diversification in the agriculture of the US Midwest. He co-directs the Forever Green Partnership, which is developing and commercializing a portfolio of new and repurposed crops for diversification of Midwest agriculture.

GES Center - Integrating scientific knowledge & diverse public values in shaping the futures of biotechnology.

Find out more at https://ges-center-lectures-ncsu.pinecast.co

  continue reading

110 قسمت

Artwork
iconاشتراک گذاری
 
Manage episode 321622121 series 2982476
محتوای ارائه شده توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State. تمام محتوای پادکست شامل قسمت‌ها، گرافیک‌ها و توضیحات پادکست مستقیماً توسط Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State یا شریک پلتفرم پادکست آن‌ها آپلود و ارائه می‌شوند. اگر فکر می‌کنید شخصی بدون اجازه شما از اثر دارای حق نسخه‌برداری شما استفاده می‌کند، می‌توانید روندی که در اینجا شرح داده شده است را دنبال کنید.https://fa.player.fm/legal

Genetic Engineering and Society Center

GES Colloquium - Tuesdays 12-1PM (via Zoom) NC State University | http://go.ncsu.edu/ges-colloquium GES Mediasite - See videos, full abstracts, speaker bios, and slides https://go.ncsu.edu/ges-mediasite Twitter - https://twitter.com/GESCenterNCSU

Gene editing for agricultural diversification: Insights from a cooperative governance project

Nicholas R. Jordan, PhD, Professor of Agronomy and Plant Genetics, University of Minnesota

Website | @UMN_AgroPlant

Abstract Agricultural diversification is widely seen as a critical element of future agricultural development development. One important concept of diversification is continuous-living-cover (CLC) agriculture, which integrates multiple crops to create diversified agroecosystems in which soils are covered by living plants across time and space continuously. Compared to agroecosystems that provide more limited cover of soil, CLC agriculture can greatly improve production of many ecosystem services from agroecosystems. To go to scale, CLC agriculture requires crops that not only provide continuous living cover but are viable in economic and social terms.

At present, lack of such crops is strongly limiting the scaling of CLC agriculture. Gene editing (GE) might provide a powerful tool for developing the crops needed to expand CLC agriculture to scale. To assess this possibility, a multi-sector deliberative group deliberated the merits of GE—relative to alternative plant-breeding methods—as means for improving crops for CLC agriculture. The group included many of the sectors whose support is necessary to scaling agricultural innovations, including actors involved in markets, finance, policy, and R&D. Views of participants were expressed in interviews and deliberative workshops.

Many in the group were enthusiastic about prospects for applications of GE to develop crops for CLC agriculture, relative to alternative plant-breeding options. However, the group noted many issues, risks, and contingencies, all of which are likely to require responsive and adaptive management. Conversely, if these issues, risks, and contingencies cannot be managed, it appears unlikely that a strong multi-sector base of support can be sustained for such applications, limiting their scaling. Emerging methods for responsible innovation and scaling have potential to manage these issues, risks, and contingencies; we propose that outcomes from GE crops for CLC agriculture are likely to be much improved if these emerging methods are used to govern such projects.

Related Publication:

Speaker Bio

Dr. Nick Jordan is a Professor of Agronomy & Plant Genetics, at the University of Minnesota, St. Paul. His research, teaching, and engagement work seeks pathways to diversification in the agriculture of the US Midwest. He co-directs the Forever Green Partnership, which is developing and commercializing a portfolio of new and repurposed crops for diversification of Midwest agriculture.

GES Center - Integrating scientific knowledge & diverse public values in shaping the futures of biotechnology.

Find out more at https://ges-center-lectures-ncsu.pinecast.co

  continue reading

110 قسمت

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