Cargando…

Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses

Previously, it was reported that miR396s interact with growth-regulating factors (GRFs) to modulate plant growth, development, and stress resistance. In soybean, 11 gma-miR396 precursors (Pre-miR396a–k) were found, and 24 GmGRFs were predicted as targets of seven mature gma-miR396s (gma-miR396a/b/c/...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Weican, Zhou, Yonggang, Li, Xiaowei, Wang, Xingchao, Dong, Yuanyuan, Wang, Nan, Liu, Xiuming, Chen, Huan, Yao, Na, Cui, Xiyan, Jameel, Aysha, Wang, Fawei, Li, Haiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5483475/
https://www.ncbi.nlm.nih.gov/pubmed/28694817
http://dx.doi.org/10.3389/fpls.2017.01112
_version_ 1783245767016710144
author Liu, Weican
Zhou, Yonggang
Li, Xiaowei
Wang, Xingchao
Dong, Yuanyuan
Wang, Nan
Liu, Xiuming
Chen, Huan
Yao, Na
Cui, Xiyan
Jameel, Aysha
Wang, Fawei
Li, Haiyan
author_facet Liu, Weican
Zhou, Yonggang
Li, Xiaowei
Wang, Xingchao
Dong, Yuanyuan
Wang, Nan
Liu, Xiuming
Chen, Huan
Yao, Na
Cui, Xiyan
Jameel, Aysha
Wang, Fawei
Li, Haiyan
author_sort Liu, Weican
collection PubMed
description Previously, it was reported that miR396s interact with growth-regulating factors (GRFs) to modulate plant growth, development, and stress resistance. In soybean, 11 gma-miR396 precursors (Pre-miR396a–k) were found, and 24 GmGRFs were predicted as targets of seven mature gma-miR396s (gma-miR396a/b/c/e/h/i/k). To explore the roles of the miR396–GRF module in low water availability response of soybean, we analyzed the expression of Pre-miR396a–k, and found that Pre-miR396a/i/bdgk/e/h were up-regulated in leaves and down-regulated in roots; on the contrary, GmGRF5/6/7/8/15/17/21 were down-regulated in leaves and GmGRF1/2/17/18/19/20/21/22/23/24 were up-regulated in roots of low water potential stressed soybean. Any one of gma-miR396a/b/c/e/h/i/k was able to interact with 20 GmGRFs (GmGRF1/2/6–11/13–24), confirming that this module represents a multi-to-multi network interaction. We generated Arabidopsis plants over-expressing each of the 11 gma-miR396 precursors (Pre-miR396a–k), and seven of them (miR396a/b/c/e/h/i/k-OE transgenic Arabidopsis) showed altered development. The low water availability of miR396a/b/c/e/h/i/k-OE was enhanced in leaves but reduced in seeds and roots. Contrary to previous reports, miR396a/b/c/i-OE seedlings showed lower survival rate than WT when recovering after rewatering under soil drying. In general, we believe our findings are valuable to understand the role of gma-miR396 family in coordinating development and low water availability responses, and can provide potential strategies and directions for soybean breeding programs to improve seed yield and plant drought tolerance.
format Online
Article
Text
id pubmed-5483475
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-54834752017-07-10 Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses Liu, Weican Zhou, Yonggang Li, Xiaowei Wang, Xingchao Dong, Yuanyuan Wang, Nan Liu, Xiuming Chen, Huan Yao, Na Cui, Xiyan Jameel, Aysha Wang, Fawei Li, Haiyan Front Plant Sci Plant Science Previously, it was reported that miR396s interact with growth-regulating factors (GRFs) to modulate plant growth, development, and stress resistance. In soybean, 11 gma-miR396 precursors (Pre-miR396a–k) were found, and 24 GmGRFs were predicted as targets of seven mature gma-miR396s (gma-miR396a/b/c/e/h/i/k). To explore the roles of the miR396–GRF module in low water availability response of soybean, we analyzed the expression of Pre-miR396a–k, and found that Pre-miR396a/i/bdgk/e/h were up-regulated in leaves and down-regulated in roots; on the contrary, GmGRF5/6/7/8/15/17/21 were down-regulated in leaves and GmGRF1/2/17/18/19/20/21/22/23/24 were up-regulated in roots of low water potential stressed soybean. Any one of gma-miR396a/b/c/e/h/i/k was able to interact with 20 GmGRFs (GmGRF1/2/6–11/13–24), confirming that this module represents a multi-to-multi network interaction. We generated Arabidopsis plants over-expressing each of the 11 gma-miR396 precursors (Pre-miR396a–k), and seven of them (miR396a/b/c/e/h/i/k-OE transgenic Arabidopsis) showed altered development. The low water availability of miR396a/b/c/e/h/i/k-OE was enhanced in leaves but reduced in seeds and roots. Contrary to previous reports, miR396a/b/c/i-OE seedlings showed lower survival rate than WT when recovering after rewatering under soil drying. In general, we believe our findings are valuable to understand the role of gma-miR396 family in coordinating development and low water availability responses, and can provide potential strategies and directions for soybean breeding programs to improve seed yield and plant drought tolerance. Frontiers Media S.A. 2017-06-26 /pmc/articles/PMC5483475/ /pubmed/28694817 http://dx.doi.org/10.3389/fpls.2017.01112 Text en Copyright © 2017 Liu, Zhou, Li, Wang, Dong, Wang, Liu, Chen, Yao, Cui, Jameel, Wang and Li. 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) or licensor 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
Liu, Weican
Zhou, Yonggang
Li, Xiaowei
Wang, Xingchao
Dong, Yuanyuan
Wang, Nan
Liu, Xiuming
Chen, Huan
Yao, Na
Cui, Xiyan
Jameel, Aysha
Wang, Fawei
Li, Haiyan
Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title_full Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title_fullStr Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title_full_unstemmed Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title_short Tissue-Specific Regulation of Gma-miR396 Family on Coordinating Development and Low Water Availability Responses
title_sort tissue-specific regulation of gma-mir396 family on coordinating development and low water availability responses
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5483475/
https://www.ncbi.nlm.nih.gov/pubmed/28694817
http://dx.doi.org/10.3389/fpls.2017.01112
work_keys_str_mv AT liuweican tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT zhouyonggang tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT lixiaowei tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT wangxingchao tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT dongyuanyuan tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT wangnan tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT liuxiuming tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT chenhuan tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT yaona tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT cuixiyan tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT jameelaysha tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT wangfawei tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses
AT lihaiyan tissuespecificregulationofgmamir396familyoncoordinatingdevelopmentandlowwateravailabilityresponses