Cargando…

The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems

Cytokinins and gibberellins (GAs) play antagonistic roles in regulating reproductive meristem activity. Cytokinins have positive effects on meristem activity and maintenance. During inflorescence meristem development, cytokinin biosynthesis is activated via a KNOX-mediated pathway. Increased cytokin...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Yuan, Wang, Yun, Mi, Xue-Fei, Shan, Jun-Xiang, Li, Xin-Min, Xu, Jian-Long, Lin, Hong-Xuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5072697/
https://www.ncbi.nlm.nih.gov/pubmed/27764111
http://dx.doi.org/10.1371/journal.pgen.1006386
_version_ 1782461444211605504
author Wu, Yuan
Wang, Yun
Mi, Xue-Fei
Shan, Jun-Xiang
Li, Xin-Min
Xu, Jian-Long
Lin, Hong-Xuan
author_facet Wu, Yuan
Wang, Yun
Mi, Xue-Fei
Shan, Jun-Xiang
Li, Xin-Min
Xu, Jian-Long
Lin, Hong-Xuan
author_sort Wu, Yuan
collection PubMed
description Cytokinins and gibberellins (GAs) play antagonistic roles in regulating reproductive meristem activity. Cytokinins have positive effects on meristem activity and maintenance. During inflorescence meristem development, cytokinin biosynthesis is activated via a KNOX-mediated pathway. Increased cytokinin activity leads to higher grain number, whereas GAs negatively affect meristem activity. The GA biosynthesis genes GA20oxs are negatively regulated by KNOX proteins. KNOX proteins function as modulators, balancing cytokinin and GA activity in the meristem. However, little is known about the crosstalk among cytokinin and GA regulators together with KNOX proteins and how KNOX-mediated dynamic balancing of hormonal activity functions. Through map-based cloning of QTLs, we cloned a GA biosynthesis gene, Grain Number per Panicle1 (GNP1), which encodes rice GA20ox1. The grain number and yield of NIL-GNP1(TQ) were significantly higher than those of isogenic control (Lemont). Sequence variations in its promoter region increased the levels of GNP1 transcripts, which were enriched in the apical regions of inflorescence meristems in NIL-GNP1(TQ). We propose that cytokinin activity increased due to a KNOX-mediated transcriptional feedback loop resulting from the higher GNP1 transcript levels, in turn leading to increased expression of the GA catabolism genes GA2oxs and reduced GA(1) and GA(3) accumulation. This rebalancing process increased cytokinin activity, thereby increasing grain number and grain yield in rice. These findings uncover important, novel roles of GAs in rice florescence meristem development and provide new insights into the crosstalk between cytokinin and GA underlying development process.
format Online
Article
Text
id pubmed-5072697
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-50726972016-10-27 The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems Wu, Yuan Wang, Yun Mi, Xue-Fei Shan, Jun-Xiang Li, Xin-Min Xu, Jian-Long Lin, Hong-Xuan PLoS Genet Research Article Cytokinins and gibberellins (GAs) play antagonistic roles in regulating reproductive meristem activity. Cytokinins have positive effects on meristem activity and maintenance. During inflorescence meristem development, cytokinin biosynthesis is activated via a KNOX-mediated pathway. Increased cytokinin activity leads to higher grain number, whereas GAs negatively affect meristem activity. The GA biosynthesis genes GA20oxs are negatively regulated by KNOX proteins. KNOX proteins function as modulators, balancing cytokinin and GA activity in the meristem. However, little is known about the crosstalk among cytokinin and GA regulators together with KNOX proteins and how KNOX-mediated dynamic balancing of hormonal activity functions. Through map-based cloning of QTLs, we cloned a GA biosynthesis gene, Grain Number per Panicle1 (GNP1), which encodes rice GA20ox1. The grain number and yield of NIL-GNP1(TQ) were significantly higher than those of isogenic control (Lemont). Sequence variations in its promoter region increased the levels of GNP1 transcripts, which were enriched in the apical regions of inflorescence meristems in NIL-GNP1(TQ). We propose that cytokinin activity increased due to a KNOX-mediated transcriptional feedback loop resulting from the higher GNP1 transcript levels, in turn leading to increased expression of the GA catabolism genes GA2oxs and reduced GA(1) and GA(3) accumulation. This rebalancing process increased cytokinin activity, thereby increasing grain number and grain yield in rice. These findings uncover important, novel roles of GAs in rice florescence meristem development and provide new insights into the crosstalk between cytokinin and GA underlying development process. Public Library of Science 2016-10-20 /pmc/articles/PMC5072697/ /pubmed/27764111 http://dx.doi.org/10.1371/journal.pgen.1006386 Text en © 2016 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wu, Yuan
Wang, Yun
Mi, Xue-Fei
Shan, Jun-Xiang
Li, Xin-Min
Xu, Jian-Long
Lin, Hong-Xuan
The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title_full The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title_fullStr The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title_full_unstemmed The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title_short The QTL GNP1 Encodes GA20ox1, Which Increases Grain Number and Yield by Increasing Cytokinin Activity in Rice Panicle Meristems
title_sort qtl gnp1 encodes ga20ox1, which increases grain number and yield by increasing cytokinin activity in rice panicle meristems
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5072697/
https://www.ncbi.nlm.nih.gov/pubmed/27764111
http://dx.doi.org/10.1371/journal.pgen.1006386
work_keys_str_mv AT wuyuan theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT wangyun theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT mixuefei theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT shanjunxiang theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT lixinmin theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT xujianlong theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT linhongxuan theqtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT wuyuan qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT wangyun qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT mixuefei qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT shanjunxiang qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT lixinmin qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT xujianlong qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems
AT linhongxuan qtlgnp1encodesga20ox1whichincreasesgrainnumberandyieldbyincreasingcytokininactivityinricepaniclemeristems