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Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress

Sodium chloride (NaCl) induced expression of a jacalin-related mannose-binding lectin (JRL) gene in leaves, roots, and callus cultures of Populus euphratica (salt-resistant poplar). To explore the mechanism of the PeJRL in salinity tolerance, the full length of PeJRL was cloned from P. euphratica an...

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Autores principales: Zhang, Huilong, Deng, Chen, Yao, Jun, Zhang, Yan-Li, Zhang, Yi-Nan, Deng, Shurong, Zhao, Nan, Sa, Gang, Zhou, Xiaoyang, Lu, Cunfu, Lin, Shanzhi, Zhao, Rui, Chen, Shaoliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412788/
https://www.ncbi.nlm.nih.gov/pubmed/30769802
http://dx.doi.org/10.3390/ijms20040815
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author Zhang, Huilong
Deng, Chen
Yao, Jun
Zhang, Yan-Li
Zhang, Yi-Nan
Deng, Shurong
Zhao, Nan
Sa, Gang
Zhou, Xiaoyang
Lu, Cunfu
Lin, Shanzhi
Zhao, Rui
Chen, Shaoliang
author_facet Zhang, Huilong
Deng, Chen
Yao, Jun
Zhang, Yan-Li
Zhang, Yi-Nan
Deng, Shurong
Zhao, Nan
Sa, Gang
Zhou, Xiaoyang
Lu, Cunfu
Lin, Shanzhi
Zhao, Rui
Chen, Shaoliang
author_sort Zhang, Huilong
collection PubMed
description Sodium chloride (NaCl) induced expression of a jacalin-related mannose-binding lectin (JRL) gene in leaves, roots, and callus cultures of Populus euphratica (salt-resistant poplar). To explore the mechanism of the PeJRL in salinity tolerance, the full length of PeJRL was cloned from P. euphratica and was transformed into Arabidopsis. PeJRL was localized to the cytoplasm in mesophyll cells. Overexpression of PeJRL in Arabidopsis significantly improved the salt tolerance of transgenic plants, in terms of seed germination, root growth, and electrolyte leakage during seedling establishment. Under NaCl stress, transgenic plants retained K(+) and limited the accumulation of Na(+). PeJRL-transgenic lines increased Na(+) extrusion, which was associated with the upward regulation of SOS1, AHA1, and AHA2 genes encoding plasma membrane Na(+)/proton (H(+)) antiporter and H(+)-pumps. The activated H(+)-ATPases in PeJRL-overexpressed plants restricted the channel-mediated loss of K(+) that was activated by NaCl-induced depolarization. Under salt stress, PeJRL–transgenic Arabidopsis maintained reactive oxygen species (ROS) homeostasis by activating the antioxidant enzymes and reducing the production of O(2)(−) through downregulation of NADPH oxidases. Of note, the PeJRL-transgenic Arabidopsis repressed abscisic acid (ABA) biosynthesis, thus reducing the ABA-elicited ROS production and the oxidative damage during the period of salt stress. A schematic model was proposed to show the mediation of PeJRL on ABA response, and ionic and ROS homeostasis under NaCl stress.
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spelling pubmed-64127882019-04-05 Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress Zhang, Huilong Deng, Chen Yao, Jun Zhang, Yan-Li Zhang, Yi-Nan Deng, Shurong Zhao, Nan Sa, Gang Zhou, Xiaoyang Lu, Cunfu Lin, Shanzhi Zhao, Rui Chen, Shaoliang Int J Mol Sci Article Sodium chloride (NaCl) induced expression of a jacalin-related mannose-binding lectin (JRL) gene in leaves, roots, and callus cultures of Populus euphratica (salt-resistant poplar). To explore the mechanism of the PeJRL in salinity tolerance, the full length of PeJRL was cloned from P. euphratica and was transformed into Arabidopsis. PeJRL was localized to the cytoplasm in mesophyll cells. Overexpression of PeJRL in Arabidopsis significantly improved the salt tolerance of transgenic plants, in terms of seed germination, root growth, and electrolyte leakage during seedling establishment. Under NaCl stress, transgenic plants retained K(+) and limited the accumulation of Na(+). PeJRL-transgenic lines increased Na(+) extrusion, which was associated with the upward regulation of SOS1, AHA1, and AHA2 genes encoding plasma membrane Na(+)/proton (H(+)) antiporter and H(+)-pumps. The activated H(+)-ATPases in PeJRL-overexpressed plants restricted the channel-mediated loss of K(+) that was activated by NaCl-induced depolarization. Under salt stress, PeJRL–transgenic Arabidopsis maintained reactive oxygen species (ROS) homeostasis by activating the antioxidant enzymes and reducing the production of O(2)(−) through downregulation of NADPH oxidases. Of note, the PeJRL-transgenic Arabidopsis repressed abscisic acid (ABA) biosynthesis, thus reducing the ABA-elicited ROS production and the oxidative damage during the period of salt stress. A schematic model was proposed to show the mediation of PeJRL on ABA response, and ionic and ROS homeostasis under NaCl stress. MDPI 2019-02-14 /pmc/articles/PMC6412788/ /pubmed/30769802 http://dx.doi.org/10.3390/ijms20040815 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Huilong
Deng, Chen
Yao, Jun
Zhang, Yan-Li
Zhang, Yi-Nan
Deng, Shurong
Zhao, Nan
Sa, Gang
Zhou, Xiaoyang
Lu, Cunfu
Lin, Shanzhi
Zhao, Rui
Chen, Shaoliang
Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title_full Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title_fullStr Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title_full_unstemmed Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title_short Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
title_sort populus euphratica jrl mediates aba response, ionic and ros homeostasis in arabidopsis under salt stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412788/
https://www.ncbi.nlm.nih.gov/pubmed/30769802
http://dx.doi.org/10.3390/ijms20040815
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