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The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis

Drought is the major abiotic stress that limits apple productivity and quality. To date, many important and divergent regulatory functions of miR156/SBP genes in plant growth and development have been well understood. However, little is known about the role of apple miR156 in response to abiotic str...

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Autores principales: Chen, Guo, Wang, Yaping, Liu, Xueli, Duan, Siyue, Jiang, Shenghui, Zhu, Jun, Zhang, Yugang, Hou, Hongmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094179/
https://www.ncbi.nlm.nih.gov/pubmed/37047020
http://dx.doi.org/10.3390/ijms24076049
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author Chen, Guo
Wang, Yaping
Liu, Xueli
Duan, Siyue
Jiang, Shenghui
Zhu, Jun
Zhang, Yugang
Hou, Hongmin
author_facet Chen, Guo
Wang, Yaping
Liu, Xueli
Duan, Siyue
Jiang, Shenghui
Zhu, Jun
Zhang, Yugang
Hou, Hongmin
author_sort Chen, Guo
collection PubMed
description Drought is the major abiotic stress that limits apple productivity and quality. To date, many important and divergent regulatory functions of miR156/SBP genes in plant growth and development have been well understood. However, little is known about the role of apple miR156 in response to abiotic stress. To better understand the functions of MdmiR156 in abiotic stress tolerance, we constructed the overexpression (OE) and short tandem target mimic (STTM) vector of MdmiR156n and performed its functional analysis through the characterization of transgenic apple calli and Arabidopsis thaliana plants. In this study, MdmiR156n overexpression significantly increased the length of primary roots and the number of lateral roots in transgenic Arabidopsis plants under drought stress. In addition, MdmiR156n transgenic Arabidopsis and apple calli had a lower electrolyte leakage rate and less cell membrane damage than WT and STTM156 after drought stress. Further studies showed that MdmiR156n overexpression promoted the accumulation of flavonoids and scavenging of reactive oxygen species (ROS) under drought conditions in transgenic apple calli and A. thaliana plants. Taken together, overexpression MdmiR156n enhances drought tolerance by regulating flavonoid synthesis and ROS signaling cascades in apple calli and A. thaliana.
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spelling pubmed-100941792023-04-13 The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis Chen, Guo Wang, Yaping Liu, Xueli Duan, Siyue Jiang, Shenghui Zhu, Jun Zhang, Yugang Hou, Hongmin Int J Mol Sci Article Drought is the major abiotic stress that limits apple productivity and quality. To date, many important and divergent regulatory functions of miR156/SBP genes in plant growth and development have been well understood. However, little is known about the role of apple miR156 in response to abiotic stress. To better understand the functions of MdmiR156 in abiotic stress tolerance, we constructed the overexpression (OE) and short tandem target mimic (STTM) vector of MdmiR156n and performed its functional analysis through the characterization of transgenic apple calli and Arabidopsis thaliana plants. In this study, MdmiR156n overexpression significantly increased the length of primary roots and the number of lateral roots in transgenic Arabidopsis plants under drought stress. In addition, MdmiR156n transgenic Arabidopsis and apple calli had a lower electrolyte leakage rate and less cell membrane damage than WT and STTM156 after drought stress. Further studies showed that MdmiR156n overexpression promoted the accumulation of flavonoids and scavenging of reactive oxygen species (ROS) under drought conditions in transgenic apple calli and A. thaliana plants. Taken together, overexpression MdmiR156n enhances drought tolerance by regulating flavonoid synthesis and ROS signaling cascades in apple calli and A. thaliana. MDPI 2023-03-23 /pmc/articles/PMC10094179/ /pubmed/37047020 http://dx.doi.org/10.3390/ijms24076049 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Guo
Wang, Yaping
Liu, Xueli
Duan, Siyue
Jiang, Shenghui
Zhu, Jun
Zhang, Yugang
Hou, Hongmin
The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title_full The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title_fullStr The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title_full_unstemmed The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title_short The MdmiR156n Regulates Drought Tolerance and Flavonoid Synthesis in Apple Calli and Arabidopsis
title_sort mdmir156n regulates drought tolerance and flavonoid synthesis in apple calli and arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094179/
https://www.ncbi.nlm.nih.gov/pubmed/37047020
http://dx.doi.org/10.3390/ijms24076049
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