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miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice

Rice grain filling rate contributes largely to grain productivity and accumulation of nutrients. MicroRNAs (miRNAs) are key regulators of development and physiology in plants and become a novel key target for engineering grain size and crop yield. However, there is little studies, so far, showing th...

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Autores principales: Zhao, Ya‐Fan, Peng, Ting, Sun, Hong‐Zheng, Teotia, Sachin, Wen, Hui‐Li, Du, Yan‐Xiu, Zhang, Jing, Li, Jun‐Zhou, Tang, Gui‐Liang, Xue, Hong‐Wei, Zhao, Quan‐Zhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419572/
https://www.ncbi.nlm.nih.gov/pubmed/30183128
http://dx.doi.org/10.1111/pbi.13009
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author Zhao, Ya‐Fan
Peng, Ting
Sun, Hong‐Zheng
Teotia, Sachin
Wen, Hui‐Li
Du, Yan‐Xiu
Zhang, Jing
Li, Jun‐Zhou
Tang, Gui‐Liang
Xue, Hong‐Wei
Zhao, Quan‐Zhi
author_facet Zhao, Ya‐Fan
Peng, Ting
Sun, Hong‐Zheng
Teotia, Sachin
Wen, Hui‐Li
Du, Yan‐Xiu
Zhang, Jing
Li, Jun‐Zhou
Tang, Gui‐Liang
Xue, Hong‐Wei
Zhao, Quan‐Zhi
author_sort Zhao, Ya‐Fan
collection PubMed
description Rice grain filling rate contributes largely to grain productivity and accumulation of nutrients. MicroRNAs (miRNAs) are key regulators of development and physiology in plants and become a novel key target for engineering grain size and crop yield. However, there is little studies, so far, showing the miRNA regulation of grain filling and rice yield, in consequence. Here, we show that suppressed expression of rice miR1432 (STTM1432) significantly improves grain weight by enhancing grain filling rate and leads to an increase in overall grain yield up to 17.14% in a field trial. Molecular analysis identified rice Acyl‐CoA thioesterase (OsACOT), which is conserved with ACOT13 in other species, as a major target of miR1432 by cleavage. Moreover, overexpression of miR1432‐resistant form of OsACOT (OXmACOT) resembled the STTM1432 plants, that is, a large margin of an increase in grain weight up to 46.69% through improving the grain filling rate. Further study indicated that OsACOT was involved in biosynthesis of medium‐chain fatty acids. In addition, RNA‐seq based transcriptomic analyses of transgenic plants with altered expression of miR1432 demonstrated that downstream genes of miR1432‐regulated network are involved in fatty acid metabolism and phytohormones biosynthesis and also overlap with the enrichment analysis of co‐expressed genes of OsACOT, which is consistent with the increased levels of auxin and abscisic acid in STTM1432 and OXmACOT plants. Overall, miR1432‐OsACOT module plays an important role in grain filling in rice, illustrating its capacity for engineering yield improvement in crops.
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spelling pubmed-64195722019-03-18 miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice Zhao, Ya‐Fan Peng, Ting Sun, Hong‐Zheng Teotia, Sachin Wen, Hui‐Li Du, Yan‐Xiu Zhang, Jing Li, Jun‐Zhou Tang, Gui‐Liang Xue, Hong‐Wei Zhao, Quan‐Zhi Plant Biotechnol J Research Articles Rice grain filling rate contributes largely to grain productivity and accumulation of nutrients. MicroRNAs (miRNAs) are key regulators of development and physiology in plants and become a novel key target for engineering grain size and crop yield. However, there is little studies, so far, showing the miRNA regulation of grain filling and rice yield, in consequence. Here, we show that suppressed expression of rice miR1432 (STTM1432) significantly improves grain weight by enhancing grain filling rate and leads to an increase in overall grain yield up to 17.14% in a field trial. Molecular analysis identified rice Acyl‐CoA thioesterase (OsACOT), which is conserved with ACOT13 in other species, as a major target of miR1432 by cleavage. Moreover, overexpression of miR1432‐resistant form of OsACOT (OXmACOT) resembled the STTM1432 plants, that is, a large margin of an increase in grain weight up to 46.69% through improving the grain filling rate. Further study indicated that OsACOT was involved in biosynthesis of medium‐chain fatty acids. In addition, RNA‐seq based transcriptomic analyses of transgenic plants with altered expression of miR1432 demonstrated that downstream genes of miR1432‐regulated network are involved in fatty acid metabolism and phytohormones biosynthesis and also overlap with the enrichment analysis of co‐expressed genes of OsACOT, which is consistent with the increased levels of auxin and abscisic acid in STTM1432 and OXmACOT plants. Overall, miR1432‐OsACOT module plays an important role in grain filling in rice, illustrating its capacity for engineering yield improvement in crops. John Wiley and Sons Inc. 2018-10-08 2019-04 /pmc/articles/PMC6419572/ /pubmed/30183128 http://dx.doi.org/10.1111/pbi.13009 Text en © 2018 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/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zhao, Ya‐Fan
Peng, Ting
Sun, Hong‐Zheng
Teotia, Sachin
Wen, Hui‐Li
Du, Yan‐Xiu
Zhang, Jing
Li, Jun‐Zhou
Tang, Gui‐Liang
Xue, Hong‐Wei
Zhao, Quan‐Zhi
miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title_full miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title_fullStr miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title_full_unstemmed miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title_short miR1432‐OsACOT (Acyl‐CoA thioesterase) module determines grain yield via enhancing grain filling rate in rice
title_sort mir1432‐osacot (acyl‐coa thioesterase) module determines grain yield via enhancing grain filling rate in rice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419572/
https://www.ncbi.nlm.nih.gov/pubmed/30183128
http://dx.doi.org/10.1111/pbi.13009
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