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从基因组学视角看盐生植物对高盐环境的适应性

Looking at Halophytic Adaptation to High Salinity Through Genomics Landscape.

作者信息

Nikalje G C, Nikam T D, Suprasanna P

机构信息

Department of Botany, Savitribai Phule Pune University, Pune 411 007, India.

Nuclear Agriculture and Biotechnology Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

Curr Genomics. 2017 Dec;18(6):542-552. doi: 10.2174/1389202918666170228143007.

Abstract

Soil salinity is an important stress factor that limits plant growth and productivity. For a given plant species, it is critical to sense and respond to salt stimuli followed by activation of multitude of mechanisms for plants to survive. Halophytes, the wonders of saline soils, have demonstrated ability to withstand and reproduce in at least 200 mM NaCl concentration, which makes them an ideal system to study mechanism of salt adaptation for imparting salt tolerance in glycophytes. Halophytes and salt sensitive glycophytes adapt different defense strategies towards salinity stress. These responses in halophytes are modulated by a well orchestrated network of signaling pathways, including calcium signaling, reactive oxygen species and phytohormones. Moreover, constitutive expression of salt stress response related genes, which is only salt inducible in glycophytes, maintains salt tolerance traits in halophytes. The focus of this review is on the adaptive considerations of halophytes through the genomics approaches from the point of view of sensing and signaling components involved in mediating plant responses to salinity.

摘要

土壤盐度是限制植物生长和生产力的重要胁迫因素。对于特定的植物物种而言,感知并响应盐刺激,随后激活多种植物生存机制至关重要。盐生植物作为盐碱地的神奇植物,已证明其能够在至少200 mM NaCl浓度下耐受并繁殖,这使其成为研究盐适应机制以赋予甜土植物耐盐性的理想系统。盐生植物和对盐敏感的甜土植物对盐胁迫采取不同的防御策略。盐生植物中的这些反应由精心编排的信号通路网络调节,包括钙信号传导、活性氧和植物激素。此外,与盐胁迫响应相关基因的组成型表达(在甜土植物中仅受盐诱导)维持了盐生植物的耐盐性状。本综述的重点是从参与介导植物对盐度响应的感知和信号成分的角度,通过基因组学方法探讨盐生植物的适应性考量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfed/5684652/8e1c2a01bc94/CG-18-542_F1.jpg

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