Cargando…

The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression

Salt stress dramatically impedes plant growth and development as well as crop yield. The apple production regions are reduced every year, because of the secondary salt damage by improper fertilization and irrigation. To expand the cultivation area of apple (Malus domestica) and select salt‐resistant...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Yue, Xue, Hao, Zhang, Feng, Jiang, Qiu, Yang, Shuang, Yue, Pengtao, Wang, Feng, Zhang, Yuanyan, Li, Linguang, He, Ping, Zhang, Zhihong
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/PMC7868983/
https://www.ncbi.nlm.nih.gov/pubmed/32885918
http://dx.doi.org/10.1111/pbi.13464
_version_ 1783648549384224768
author Ma, Yue
Xue, Hao
Zhang, Feng
Jiang, Qiu
Yang, Shuang
Yue, Pengtao
Wang, Feng
Zhang, Yuanyan
Li, Linguang
He, Ping
Zhang, Zhihong
author_facet Ma, Yue
Xue, Hao
Zhang, Feng
Jiang, Qiu
Yang, Shuang
Yue, Pengtao
Wang, Feng
Zhang, Yuanyan
Li, Linguang
He, Ping
Zhang, Zhihong
author_sort Ma, Yue
collection PubMed
description Salt stress dramatically impedes plant growth and development as well as crop yield. The apple production regions are reduced every year, because of the secondary salt damage by improper fertilization and irrigation. To expand the cultivation area of apple (Malus domestica) and select salt‐resistant varieties, the mechanism of salt tolerance in apple is necessary to be clarified. The miR156/SPL regulatory module plays key roles in embryogenesis, morphogenesis, life cycle stage transformation, flower formation and other processes. However, its roles in the mechanisms of salt tolerance are unknown. In order to elucidate the mechanism of 156/SPL regulating salt stress in apple, we performed RLM‐5’ RACE and stable genetic transformation technology to verify that both mdm‐MIR156a and MdSPL13 responded to salt stress in apple and that the latter was the target of the former. MIR156a overexpression weakened salt resistance in apple whereas MdSPL13 overexpression strengthened it. A total of 6094 differentially expressed genes relative to nontransgenic apple plants were found by RNA‐Seq analysis of MdSPL13OE. Further verification indicated that MdSPL13 targeted the MdWRKY100 gene promoter. Moreover, MdWRKY100 overexpression enhanced salt tolerance in apple. Our results revealed that the miR156/SPL module regulates salt tolerance by up‐regulating MdWRKY100 in apple. This study is the first to elucidate the mechanism underlying the miRNA network response to salt stress in apple and provides theoretical and empirical bases and genetic resources for the molecular breeding of salt tolerance in apple.
format Online
Article
Text
id pubmed-7868983
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-78689832021-02-17 The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression Ma, Yue Xue, Hao Zhang, Feng Jiang, Qiu Yang, Shuang Yue, Pengtao Wang, Feng Zhang, Yuanyan Li, Linguang He, Ping Zhang, Zhihong Plant Biotechnol J Research Articles Salt stress dramatically impedes plant growth and development as well as crop yield. The apple production regions are reduced every year, because of the secondary salt damage by improper fertilization and irrigation. To expand the cultivation area of apple (Malus domestica) and select salt‐resistant varieties, the mechanism of salt tolerance in apple is necessary to be clarified. The miR156/SPL regulatory module plays key roles in embryogenesis, morphogenesis, life cycle stage transformation, flower formation and other processes. However, its roles in the mechanisms of salt tolerance are unknown. In order to elucidate the mechanism of 156/SPL regulating salt stress in apple, we performed RLM‐5’ RACE and stable genetic transformation technology to verify that both mdm‐MIR156a and MdSPL13 responded to salt stress in apple and that the latter was the target of the former. MIR156a overexpression weakened salt resistance in apple whereas MdSPL13 overexpression strengthened it. A total of 6094 differentially expressed genes relative to nontransgenic apple plants were found by RNA‐Seq analysis of MdSPL13OE. Further verification indicated that MdSPL13 targeted the MdWRKY100 gene promoter. Moreover, MdWRKY100 overexpression enhanced salt tolerance in apple. Our results revealed that the miR156/SPL module regulates salt tolerance by up‐regulating MdWRKY100 in apple. This study is the first to elucidate the mechanism underlying the miRNA network response to salt stress in apple and provides theoretical and empirical bases and genetic resources for the molecular breeding of salt tolerance in apple. John Wiley and Sons Inc. 2020-09-04 2021-02 /pmc/articles/PMC7868983/ /pubmed/32885918 http://dx.doi.org/10.1111/pbi.13464 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/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Ma, Yue
Xue, Hao
Zhang, Feng
Jiang, Qiu
Yang, Shuang
Yue, Pengtao
Wang, Feng
Zhang, Yuanyan
Li, Linguang
He, Ping
Zhang, Zhihong
The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title_full The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title_fullStr The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title_full_unstemmed The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title_short The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
title_sort mir156/spl module regulates apple salt stress tolerance by activating mdwrky100 expression
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7868983/
https://www.ncbi.nlm.nih.gov/pubmed/32885918
http://dx.doi.org/10.1111/pbi.13464
work_keys_str_mv AT mayue themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT xuehao themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangfeng themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT jiangqiu themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT yangshuang themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT yuepengtao themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT wangfeng themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangyuanyan themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT lilinguang themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT heping themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangzhihong themir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT mayue mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT xuehao mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangfeng mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT jiangqiu mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT yangshuang mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT yuepengtao mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT wangfeng mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangyuanyan mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT lilinguang mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT heping mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression
AT zhangzhihong mir156splmoduleregulatesapplesaltstresstolerancebyactivatingmdwrky100expression