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Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield

Grain/seed yield and plant stress tolerance are two major traits that determine the yield potential of many crops. In cereals, grain size is one of the key factors affecting grain yield. Here, we identify and characterize a newly discovered gene Rice Big Grain 1 (RBG1) that regulates grain and organ...

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Autores principales: Lo, Shuen‐Fang, Cheng, Ming‐Lung, Hsing, Yue‐ie Caroline, Chen, Yi‐Shih, Lee, Kuo‐Wei, Hong, Ya‐Fang, Hsiao, Yu, Hsiao, An‐Shan, Chen, Pei‐Jing, Wong, Lai‐In, Chen, Nan‐Chen, Reuzeau, Christophe, Ho, Tuan‐Hua David, Yu, Su‐May
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7415788/
https://www.ncbi.nlm.nih.gov/pubmed/32034845
http://dx.doi.org/10.1111/pbi.13357
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author Lo, Shuen‐Fang
Cheng, Ming‐Lung
Hsing, Yue‐ie Caroline
Chen, Yi‐Shih
Lee, Kuo‐Wei
Hong, Ya‐Fang
Hsiao, Yu
Hsiao, An‐Shan
Chen, Pei‐Jing
Wong, Lai‐In
Chen, Nan‐Chen
Reuzeau, Christophe
Ho, Tuan‐Hua David
Yu, Su‐May
author_facet Lo, Shuen‐Fang
Cheng, Ming‐Lung
Hsing, Yue‐ie Caroline
Chen, Yi‐Shih
Lee, Kuo‐Wei
Hong, Ya‐Fang
Hsiao, Yu
Hsiao, An‐Shan
Chen, Pei‐Jing
Wong, Lai‐In
Chen, Nan‐Chen
Reuzeau, Christophe
Ho, Tuan‐Hua David
Yu, Su‐May
author_sort Lo, Shuen‐Fang
collection PubMed
description Grain/seed yield and plant stress tolerance are two major traits that determine the yield potential of many crops. In cereals, grain size is one of the key factors affecting grain yield. Here, we identify and characterize a newly discovered gene Rice Big Grain 1 (RBG1) that regulates grain and organ development, as well as abiotic stress tolerance. Ectopic expression of RBG1 leads to significant increases in the size of not only grains but also other major organs such as roots, shoots and panicles. Increased grain size is primarily due to elevated cell numbers rather than cell enlargement. RBG1 is preferentially expressed in meristematic and proliferating tissues. Ectopic expression of RBG1 promotes cell division, and RBG1 co‐localizes with microtubules known to be involved in cell division, which may account for the increase in organ size. Ectopic expression of RBG1 also increases auxin accumulation and sensitivity, which facilitates root development, particularly crown roots. Moreover, overexpression of RBG1 up‐regulated a large number of heat‐shock proteins, leading to enhanced tolerance to heat, osmotic and salt stresses, as well as rapid recovery from water‐deficit stress. Ectopic expression of RBG1 regulated by a specific constitutive promoter, GOS2, enhanced harvest index and grain yield in rice. Taken together, we have discovered that RBG1 regulates two distinct and important traits in rice, namely grain yield and stress tolerance, via its effects on cell division, auxin and stress protein induction.
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spelling pubmed-74157882020-08-11 Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield Lo, Shuen‐Fang Cheng, Ming‐Lung Hsing, Yue‐ie Caroline Chen, Yi‐Shih Lee, Kuo‐Wei Hong, Ya‐Fang Hsiao, Yu Hsiao, An‐Shan Chen, Pei‐Jing Wong, Lai‐In Chen, Nan‐Chen Reuzeau, Christophe Ho, Tuan‐Hua David Yu, Su‐May Plant Biotechnol J Research Articles Grain/seed yield and plant stress tolerance are two major traits that determine the yield potential of many crops. In cereals, grain size is one of the key factors affecting grain yield. Here, we identify and characterize a newly discovered gene Rice Big Grain 1 (RBG1) that regulates grain and organ development, as well as abiotic stress tolerance. Ectopic expression of RBG1 leads to significant increases in the size of not only grains but also other major organs such as roots, shoots and panicles. Increased grain size is primarily due to elevated cell numbers rather than cell enlargement. RBG1 is preferentially expressed in meristematic and proliferating tissues. Ectopic expression of RBG1 promotes cell division, and RBG1 co‐localizes with microtubules known to be involved in cell division, which may account for the increase in organ size. Ectopic expression of RBG1 also increases auxin accumulation and sensitivity, which facilitates root development, particularly crown roots. Moreover, overexpression of RBG1 up‐regulated a large number of heat‐shock proteins, leading to enhanced tolerance to heat, osmotic and salt stresses, as well as rapid recovery from water‐deficit stress. Ectopic expression of RBG1 regulated by a specific constitutive promoter, GOS2, enhanced harvest index and grain yield in rice. Taken together, we have discovered that RBG1 regulates two distinct and important traits in rice, namely grain yield and stress tolerance, via its effects on cell division, auxin and stress protein induction. John Wiley and Sons Inc. 2020-02-19 2020-09 /pmc/articles/PMC7415788/ /pubmed/32034845 http://dx.doi.org/10.1111/pbi.13357 Text en © 2020 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Lo, Shuen‐Fang
Cheng, Ming‐Lung
Hsing, Yue‐ie Caroline
Chen, Yi‐Shih
Lee, Kuo‐Wei
Hong, Ya‐Fang
Hsiao, Yu
Hsiao, An‐Shan
Chen, Pei‐Jing
Wong, Lai‐In
Chen, Nan‐Chen
Reuzeau, Christophe
Ho, Tuan‐Hua David
Yu, Su‐May
Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title_full Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title_fullStr Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title_full_unstemmed Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title_short Rice Big Grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
title_sort rice big grain 1 promotes cell division to enhance organ development, stress tolerance and grain yield
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7415788/
https://www.ncbi.nlm.nih.gov/pubmed/32034845
http://dx.doi.org/10.1111/pbi.13357
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