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Developing stress tolerant plants through in vitro selection-An overview of the recent progress

机译:通过体外选择培育抗逆植物-最新进展概述

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摘要

Biotic and abiotic stresses impose a major threat to agriculture. Therefore, the efforts to develop stress-tolerant plants are of immense importance to increase crop productivity. In recent years, tissue culture based in vitro selection has emerged as a feasible and cost-effective tool for developing stress-tolerant plants. Plants tolerant to both the biotic and the abiotic stresses can be acquired by applying the selecting agents such as NaCl (for salt tolerance), PEG or mannitol (for drought tolerance) and pathogen culture filtrate, phytotoxin or pathogen itself (for disease resistance) in the culture media. Only the explants capable of sustaining such environments survive in the long run and are selected. In vitro selection is based on the induction of genetic variation among cells, tissues and/or organs in cultured and regenerated plants. The selection of somaclonal variations appearing in the regenerated plants may be genetically stable and useful in crop improvement. This review focuses on the progress made towards the development of stress-tolerant lines through tissue culture based in vitro selection. Plants have evolved many biochemical and molecular mechanisms to survive under stress conditions. The mechanisms of ROS (reaction oxygen species) generation and removal in plants under biotic and abiotic stress conditions have also been reviewed
机译:生物和非生物胁迫对农业构成重大威胁。因此,开发耐逆性植物的努力对于提高农作物的生产力至关重要。近年来,基于组织培养的体外选择已成为开发耐胁迫植物的可行且具有成本效益的工具。耐生物和非生物胁迫的植物可以通过在土壤中施用诸如NaCl(耐盐),PEG或甘露醇(耐干旱)和病原体培养滤液,植物毒素或病原体本身(抗病)等选择剂来获得。文化媒体。只有能够维持这种环境的外植体才能长期生存并被选中。体外选择基于在培养和再生植物中细胞,组织和/或器官之间遗传变异的诱导。在再生植物中出现的体细胞克隆变异的选择可能是遗传稳定的,可用于作物改良。这篇综述着重于通过基于组织培养的体外选择在开发抗逆系方面取得的进展。植物已经进化出许多生化和分子机制以在胁迫条件下生存。还综述了生物和非生物胁迫条件下植物中ROS(反应性氧)的产生和去除机理。

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