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miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance

Fitness cost is a common phenomenon in rice blast disease-resistance breeding. MiR396 is a highly conserved microRNA (miRNA) family targeting Growth Regulating Factor (OsGRF) genes. Mutation at the target site of miR396 in certain OsGRF gene or blocking miR396 expression leads to increased grain yie...

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Autores principales: Chandran, Viswanathan, Wang, He, Gao, Feng, Cao, Xiao-Long, Chen, Yun-Ping, Li, Guo-Bang, Zhu, Yong, Yang, Xue-Mei, Zhang, Ling-Li, Zhao, Zhi-Xue, Zhao, Jing-Hao, Wang, Ying-Ge, Li, Shuangcheng, Fan, Jing, Li, Yan, Zhao, Ji-Qun, Li, Shao-Qing, Wang, Wen-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339958/
https://www.ncbi.nlm.nih.gov/pubmed/30693011
http://dx.doi.org/10.3389/fpls.2018.01999
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author Chandran, Viswanathan
Wang, He
Gao, Feng
Cao, Xiao-Long
Chen, Yun-Ping
Li, Guo-Bang
Zhu, Yong
Yang, Xue-Mei
Zhang, Ling-Li
Zhao, Zhi-Xue
Zhao, Jing-Hao
Wang, Ying-Ge
Li, Shuangcheng
Fan, Jing
Li, Yan
Zhao, Ji-Qun
Li, Shao-Qing
Wang, Wen-Ming
author_facet Chandran, Viswanathan
Wang, He
Gao, Feng
Cao, Xiao-Long
Chen, Yun-Ping
Li, Guo-Bang
Zhu, Yong
Yang, Xue-Mei
Zhang, Ling-Li
Zhao, Zhi-Xue
Zhao, Jing-Hao
Wang, Ying-Ge
Li, Shuangcheng
Fan, Jing
Li, Yan
Zhao, Ji-Qun
Li, Shao-Qing
Wang, Wen-Ming
author_sort Chandran, Viswanathan
collection PubMed
description Fitness cost is a common phenomenon in rice blast disease-resistance breeding. MiR396 is a highly conserved microRNA (miRNA) family targeting Growth Regulating Factor (OsGRF) genes. Mutation at the target site of miR396 in certain OsGRF gene or blocking miR396 expression leads to increased grain yield. Here we demonstrated that fitness cost can be trade-off in miR396-OsGRFs module via balancing growth and immunity against the blast fungus. The accumulation of miR396 isoforms was significantly increased in a susceptible accession, but fluctuated in a resistant accession upon infection of Magnaporthe oryzae. The transgenic lines over-expressing different miR396 isoforms were highly susceptible to M. oryzae. In contrast, overexpressing target mimicry of miR396 to block its function led to enhanced resistance to M. oryzae in addition to improved yield traits. Moreover, transgenic plants overexpressing OsGRF6, OsGRF7, OsGRF8, and OsGRF9 exhibited enhanced resistance to M. oryzae, but showed different alteration of growth. While overexpression of OsGRF7 led to defects in growth, overexpression of OsGRF6, OsGRF8, and OsGRF9 resulted in better or no significant change of yield traits. Collectively, our results indicate that miR396 negatively regulates rice blast disease- resistance via suppressing multiple OsGRFs, which in turn differentially control growth and yield. Therefore, miR396-OsGRFs could be a potential module to demolish fitness cost in rice blast disease-resistance breeding.
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spelling pubmed-63399582019-01-28 miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance Chandran, Viswanathan Wang, He Gao, Feng Cao, Xiao-Long Chen, Yun-Ping Li, Guo-Bang Zhu, Yong Yang, Xue-Mei Zhang, Ling-Li Zhao, Zhi-Xue Zhao, Jing-Hao Wang, Ying-Ge Li, Shuangcheng Fan, Jing Li, Yan Zhao, Ji-Qun Li, Shao-Qing Wang, Wen-Ming Front Plant Sci Plant Science Fitness cost is a common phenomenon in rice blast disease-resistance breeding. MiR396 is a highly conserved microRNA (miRNA) family targeting Growth Regulating Factor (OsGRF) genes. Mutation at the target site of miR396 in certain OsGRF gene or blocking miR396 expression leads to increased grain yield. Here we demonstrated that fitness cost can be trade-off in miR396-OsGRFs module via balancing growth and immunity against the blast fungus. The accumulation of miR396 isoforms was significantly increased in a susceptible accession, but fluctuated in a resistant accession upon infection of Magnaporthe oryzae. The transgenic lines over-expressing different miR396 isoforms were highly susceptible to M. oryzae. In contrast, overexpressing target mimicry of miR396 to block its function led to enhanced resistance to M. oryzae in addition to improved yield traits. Moreover, transgenic plants overexpressing OsGRF6, OsGRF7, OsGRF8, and OsGRF9 exhibited enhanced resistance to M. oryzae, but showed different alteration of growth. While overexpression of OsGRF7 led to defects in growth, overexpression of OsGRF6, OsGRF8, and OsGRF9 resulted in better or no significant change of yield traits. Collectively, our results indicate that miR396 negatively regulates rice blast disease- resistance via suppressing multiple OsGRFs, which in turn differentially control growth and yield. Therefore, miR396-OsGRFs could be a potential module to demolish fitness cost in rice blast disease-resistance breeding. Frontiers Media S.A. 2019-01-14 /pmc/articles/PMC6339958/ /pubmed/30693011 http://dx.doi.org/10.3389/fpls.2018.01999 Text en Copyright © 2019 Chandran, Wang, Gao, Cao, Chen, Li, Zhu, Yang, Zhang, Zhao, Zhao, Wang, Li, Fan, Li, Zhao, Li and Wang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Chandran, Viswanathan
Wang, He
Gao, Feng
Cao, Xiao-Long
Chen, Yun-Ping
Li, Guo-Bang
Zhu, Yong
Yang, Xue-Mei
Zhang, Ling-Li
Zhao, Zhi-Xue
Zhao, Jing-Hao
Wang, Ying-Ge
Li, Shuangcheng
Fan, Jing
Li, Yan
Zhao, Ji-Qun
Li, Shao-Qing
Wang, Wen-Ming
miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title_full miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title_fullStr miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title_full_unstemmed miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title_short miR396-OsGRFs Module Balances Growth and Rice Blast Disease-Resistance
title_sort mir396-osgrfs module balances growth and rice blast disease-resistance
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339958/
https://www.ncbi.nlm.nih.gov/pubmed/30693011
http://dx.doi.org/10.3389/fpls.2018.01999
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