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Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress

Soil salinity severely threatens land use capability and crop yields worldwide. An analysis of the molecular mechanisms of salt tolerance in halophytes will contribute to the development of salt-tolerant crops. In this study, a combination of physiological characteristics and iTRAQ-based proteomic a...

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Autores principales: Wang, Juncheng, Yao, Lirong, Li, Baochun, Meng, Yaxiong, Ma, Xiaole, Lai, Yong, Si, Erjing, Ren, Panrong, Yang, Ke, Shang, Xunwu, Wang, Huajun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746295/
https://www.ncbi.nlm.nih.gov/pubmed/26904073
http://dx.doi.org/10.3389/fpls.2016.00110
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author Wang, Juncheng
Yao, Lirong
Li, Baochun
Meng, Yaxiong
Ma, Xiaole
Lai, Yong
Si, Erjing
Ren, Panrong
Yang, Ke
Shang, Xunwu
Wang, Huajun
author_facet Wang, Juncheng
Yao, Lirong
Li, Baochun
Meng, Yaxiong
Ma, Xiaole
Lai, Yong
Si, Erjing
Ren, Panrong
Yang, Ke
Shang, Xunwu
Wang, Huajun
author_sort Wang, Juncheng
collection PubMed
description Soil salinity severely threatens land use capability and crop yields worldwide. An analysis of the molecular mechanisms of salt tolerance in halophytes will contribute to the development of salt-tolerant crops. In this study, a combination of physiological characteristics and iTRAQ-based proteomic approaches was conducted to investigate the molecular mechanisms underlying the salt response of suspension cell cultures of halophytic Halogeton glomeratus. These cells showed halophytic growth responses comparable to those of the whole plant. In total, 97 up-regulated proteins and 192 down-regulated proteins were identified as common to both 200 and 400 mM NaCl concentration treatments. Such salinity responsive proteins were mainly involved in energy, carbohydrate metabolism, stress defense, protein metabolism, signal transduction, cell growth, and cytoskeleton metabolism. Effective regulatory protein expression related to energy, stress defense, and carbohydrate metabolism play important roles in the salt-tolerance of H. glomeratus suspension cell cultures. However, known proteins regulating Na(+) efflux from the cytoplasm and its compartmentalization into the vacuole did not change significantly under salinity stress suggesting our existing knowledge concerning Na(+) extrusion and compartmentalization in halophytes needs to be evaluated further. Such data are discussed in the context of our current understandings of the mechanisms involved in the salinity response of the halophyte, H. glomeratus.
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spelling pubmed-47462952016-02-22 Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress Wang, Juncheng Yao, Lirong Li, Baochun Meng, Yaxiong Ma, Xiaole Lai, Yong Si, Erjing Ren, Panrong Yang, Ke Shang, Xunwu Wang, Huajun Front Plant Sci Plant Science Soil salinity severely threatens land use capability and crop yields worldwide. An analysis of the molecular mechanisms of salt tolerance in halophytes will contribute to the development of salt-tolerant crops. In this study, a combination of physiological characteristics and iTRAQ-based proteomic approaches was conducted to investigate the molecular mechanisms underlying the salt response of suspension cell cultures of halophytic Halogeton glomeratus. These cells showed halophytic growth responses comparable to those of the whole plant. In total, 97 up-regulated proteins and 192 down-regulated proteins were identified as common to both 200 and 400 mM NaCl concentration treatments. Such salinity responsive proteins were mainly involved in energy, carbohydrate metabolism, stress defense, protein metabolism, signal transduction, cell growth, and cytoskeleton metabolism. Effective regulatory protein expression related to energy, stress defense, and carbohydrate metabolism play important roles in the salt-tolerance of H. glomeratus suspension cell cultures. However, known proteins regulating Na(+) efflux from the cytoplasm and its compartmentalization into the vacuole did not change significantly under salinity stress suggesting our existing knowledge concerning Na(+) extrusion and compartmentalization in halophytes needs to be evaluated further. Such data are discussed in the context of our current understandings of the mechanisms involved in the salinity response of the halophyte, H. glomeratus. Frontiers Media S.A. 2016-02-09 /pmc/articles/PMC4746295/ /pubmed/26904073 http://dx.doi.org/10.3389/fpls.2016.00110 Text en Copyright © 2016 Wang, Yao, Li, Meng, Ma, Lai, Si, Ren, Yang, Shang and Wang. 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
Wang, Juncheng
Yao, Lirong
Li, Baochun
Meng, Yaxiong
Ma, Xiaole
Lai, Yong
Si, Erjing
Ren, Panrong
Yang, Ke
Shang, Xunwu
Wang, Huajun
Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title_full Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title_fullStr Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title_full_unstemmed Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title_short Comparative Proteomic Analysis of Cultured Suspension Cells of the Halophyte Halogeton glomeratus by iTRAQ Provides Insights into Response Mechanisms to Salt Stress
title_sort comparative proteomic analysis of cultured suspension cells of the halophyte halogeton glomeratus by itraq provides insights into response mechanisms to salt stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746295/
https://www.ncbi.nlm.nih.gov/pubmed/26904073
http://dx.doi.org/10.3389/fpls.2016.00110
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