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Engineered Cleistogamy in Camelina sativa for bioconfinement

Camelina sativa is a self-pollinating and facultative outcrossing oilseed crop. Genetic engineering has been used to improve camelina yield potential for altered fatty acid composition, modified protein profiles, improved seed and oil yield, and enhanced drought resistance. The deployment of transge...

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Autores principales: Huang, Debao, Gao, Liwei, McAdams, Jeremy, Zhao, Fangzhou, Lu, Hongyan, Wu, Yonghui, Martin, Jeremy, Sherif, Sherif M, Subramanian, Jayasankar, Duan, Hui, Liu, Wusheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926159/
https://www.ncbi.nlm.nih.gov/pubmed/36793756
http://dx.doi.org/10.1093/hr/uhac280
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author Huang, Debao
Gao, Liwei
McAdams, Jeremy
Zhao, Fangzhou
Lu, Hongyan
Wu, Yonghui
Martin, Jeremy
Sherif, Sherif M
Subramanian, Jayasankar
Duan, Hui
Liu, Wusheng
author_facet Huang, Debao
Gao, Liwei
McAdams, Jeremy
Zhao, Fangzhou
Lu, Hongyan
Wu, Yonghui
Martin, Jeremy
Sherif, Sherif M
Subramanian, Jayasankar
Duan, Hui
Liu, Wusheng
author_sort Huang, Debao
collection PubMed
description Camelina sativa is a self-pollinating and facultative outcrossing oilseed crop. Genetic engineering has been used to improve camelina yield potential for altered fatty acid composition, modified protein profiles, improved seed and oil yield, and enhanced drought resistance. The deployment of transgenic camelina in the field posits high risks related to the introgression of transgenes into non-transgenic camelina and wild relatives. Thus, effective bioconfinement strategies need to be developed to prevent pollen-mediated gene flow (PMGF) from transgenic camelina. In the present study, we overexpressed the cleistogamy (i.e. floral petal non-openness)-inducing PpJAZ1 gene from peach in transgenic camelina. Transgenic camelina overexpressing PpJAZ1 showed three levels of cleistogamy, affected pollen germination rates after anthesis but not during anthesis, and caused a minor silicle abortion only on the main branches. We also conducted field trials to examine the effects of the overexpressed PpJAZ1 on PMGF in the field, and found that the overexpressed PpJAZ1 dramatically inhibited PMGF from transgenic camelina to non-transgenic camelina under the field conditions. Thus, the engineered cleistogamy using the overexpressed PpJAZ1 is a highly effective bioconfinement strategy to limit PMGF from transgenic camelina, and could be used for bioconfinement in other dicot species.
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spelling pubmed-99261592023-02-14 Engineered Cleistogamy in Camelina sativa for bioconfinement Huang, Debao Gao, Liwei McAdams, Jeremy Zhao, Fangzhou Lu, Hongyan Wu, Yonghui Martin, Jeremy Sherif, Sherif M Subramanian, Jayasankar Duan, Hui Liu, Wusheng Hortic Res Article Camelina sativa is a self-pollinating and facultative outcrossing oilseed crop. Genetic engineering has been used to improve camelina yield potential for altered fatty acid composition, modified protein profiles, improved seed and oil yield, and enhanced drought resistance. The deployment of transgenic camelina in the field posits high risks related to the introgression of transgenes into non-transgenic camelina and wild relatives. Thus, effective bioconfinement strategies need to be developed to prevent pollen-mediated gene flow (PMGF) from transgenic camelina. In the present study, we overexpressed the cleistogamy (i.e. floral petal non-openness)-inducing PpJAZ1 gene from peach in transgenic camelina. Transgenic camelina overexpressing PpJAZ1 showed three levels of cleistogamy, affected pollen germination rates after anthesis but not during anthesis, and caused a minor silicle abortion only on the main branches. We also conducted field trials to examine the effects of the overexpressed PpJAZ1 on PMGF in the field, and found that the overexpressed PpJAZ1 dramatically inhibited PMGF from transgenic camelina to non-transgenic camelina under the field conditions. Thus, the engineered cleistogamy using the overexpressed PpJAZ1 is a highly effective bioconfinement strategy to limit PMGF from transgenic camelina, and could be used for bioconfinement in other dicot species. Oxford University Press 2022-12-22 /pmc/articles/PMC9926159/ /pubmed/36793756 http://dx.doi.org/10.1093/hr/uhac280 Text en © The Author(s) 2023. Published by OxfordUniversity Press on behalf of Nanjing AgriculturalUniversity. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Huang, Debao
Gao, Liwei
McAdams, Jeremy
Zhao, Fangzhou
Lu, Hongyan
Wu, Yonghui
Martin, Jeremy
Sherif, Sherif M
Subramanian, Jayasankar
Duan, Hui
Liu, Wusheng
Engineered Cleistogamy in Camelina sativa for bioconfinement
title Engineered Cleistogamy in Camelina sativa for bioconfinement
title_full Engineered Cleistogamy in Camelina sativa for bioconfinement
title_fullStr Engineered Cleistogamy in Camelina sativa for bioconfinement
title_full_unstemmed Engineered Cleistogamy in Camelina sativa for bioconfinement
title_short Engineered Cleistogamy in Camelina sativa for bioconfinement
title_sort engineered cleistogamy in camelina sativa for bioconfinement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926159/
https://www.ncbi.nlm.nih.gov/pubmed/36793756
http://dx.doi.org/10.1093/hr/uhac280
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