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Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses

Aquaporins (AQPs) facilitate the transport of water and small molecules across intrinsic membranes and play a critical role in abiotic stresses. In this study, 111, 54, and 56 candidate AQP genes were identified in Gossypium hirsutum (AD(1)), Gossypium arboreum (A(2)), and Gossypium raimondii (D(5))...

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Autores principales: Guo, Anhui, Hao, Jianfeng, Su, Ying, Li, Bin, Zhao, Nan, Zhu, Meng, Huang, Yi, Tian, Baoming, Shi, Gongyao, Hua, Jinping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8873789/
https://www.ncbi.nlm.nih.gov/pubmed/35222450
http://dx.doi.org/10.3389/fpls.2021.780486
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author Guo, Anhui
Hao, Jianfeng
Su, Ying
Li, Bin
Zhao, Nan
Zhu, Meng
Huang, Yi
Tian, Baoming
Shi, Gongyao
Hua, Jinping
author_facet Guo, Anhui
Hao, Jianfeng
Su, Ying
Li, Bin
Zhao, Nan
Zhu, Meng
Huang, Yi
Tian, Baoming
Shi, Gongyao
Hua, Jinping
author_sort Guo, Anhui
collection PubMed
description Aquaporins (AQPs) facilitate the transport of water and small molecules across intrinsic membranes and play a critical role in abiotic stresses. In this study, 111, 54, and 56 candidate AQP genes were identified in Gossypium hirsutum (AD(1)), Gossypium arboreum (A(2)), and Gossypium raimondii (D(5)), respectively, and were further classified into five subfamilies, namely, plasma intrinsic protein (PIP), tonoplast intrinsic protein (TIP), nodulin 26-like intrinsic protein (NIP), small basic intrinsic protein (SIP), and uncategorized X intrinsic protein (XIP). Transcriptome analysis and quantitative real-time PCR (qRT-PCR) revealed some high-expression GhPIPs and GhTIPs (PIP and TIP genes in G. hirsutum, respectively) in drought and salt stresses. GhPIP2;7-silenced plants decreased in the chlorophyll content, superoxide dismutase (SOD) activity, and peroxidase (POD) activity comparing the mock control (empty-vector) under 400 mM NaCl treatment, which indicated a positive regulatory role of GhPIP2;7 in salt tolerance of cotton. The GhTIP2;1-silenced cotton plants were more sensitive to osmotic stress. GhTIP2;1-overexpressed plants exhibited less accumulation of H(2)O(2) and malondialdehyde but higher proline content under osmotic stress. In summary, our study elucidates the positive regulatory roles of two GhAQPs (GhPIP2;7 and GhTIP2;1) in salt and osmotic stress responses, respectively, and provides a new gene resource for future research.
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spelling pubmed-88737892022-02-26 Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses Guo, Anhui Hao, Jianfeng Su, Ying Li, Bin Zhao, Nan Zhu, Meng Huang, Yi Tian, Baoming Shi, Gongyao Hua, Jinping Front Plant Sci Plant Science Aquaporins (AQPs) facilitate the transport of water and small molecules across intrinsic membranes and play a critical role in abiotic stresses. In this study, 111, 54, and 56 candidate AQP genes were identified in Gossypium hirsutum (AD(1)), Gossypium arboreum (A(2)), and Gossypium raimondii (D(5)), respectively, and were further classified into five subfamilies, namely, plasma intrinsic protein (PIP), tonoplast intrinsic protein (TIP), nodulin 26-like intrinsic protein (NIP), small basic intrinsic protein (SIP), and uncategorized X intrinsic protein (XIP). Transcriptome analysis and quantitative real-time PCR (qRT-PCR) revealed some high-expression GhPIPs and GhTIPs (PIP and TIP genes in G. hirsutum, respectively) in drought and salt stresses. GhPIP2;7-silenced plants decreased in the chlorophyll content, superoxide dismutase (SOD) activity, and peroxidase (POD) activity comparing the mock control (empty-vector) under 400 mM NaCl treatment, which indicated a positive regulatory role of GhPIP2;7 in salt tolerance of cotton. The GhTIP2;1-silenced cotton plants were more sensitive to osmotic stress. GhTIP2;1-overexpressed plants exhibited less accumulation of H(2)O(2) and malondialdehyde but higher proline content under osmotic stress. In summary, our study elucidates the positive regulatory roles of two GhAQPs (GhPIP2;7 and GhTIP2;1) in salt and osmotic stress responses, respectively, and provides a new gene resource for future research. Frontiers Media S.A. 2022-02-11 /pmc/articles/PMC8873789/ /pubmed/35222450 http://dx.doi.org/10.3389/fpls.2021.780486 Text en Copyright © 2022 Guo, Hao, Su, Li, Zhao, Zhu, Huang, Tian, Shi and Hua. https://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) and the copyright owner(s) 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
Guo, Anhui
Hao, Jianfeng
Su, Ying
Li, Bin
Zhao, Nan
Zhu, Meng
Huang, Yi
Tian, Baoming
Shi, Gongyao
Hua, Jinping
Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title_full Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title_fullStr Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title_full_unstemmed Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title_short Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses
title_sort two aquaporin genes, ghpip2;7 and ghtip2;1, positively regulate the tolerance of upland cotton to salt and osmotic stresses
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8873789/
https://www.ncbi.nlm.nih.gov/pubmed/35222450
http://dx.doi.org/10.3389/fpls.2021.780486
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