Enhancing the abiotic stress tolerance of plants: from chemical treatment to biotechnological approaches

非生物胁迫 非生物成分 生物 生物技术 启动(农业) 基因 作物生产力 转基因作物 计算生物学 基因组 转基因 遗传学 农业 植物 生态学 发芽
作者
Hoang Chinh Nguyen,Kuan‐Hung Lin,Shin‐Lon Ho,Chih‐Ming Chiang,Chi‐Ming Yang
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:164 (4): 452-466 被引量:93
标识
DOI:10.1111/ppl.12812
摘要

Abiotic stresses affect crop plants and cause decreases in plant quality and productivity. Plants can overcome environmental stresses by activating molecular networks, including signal transduction, stress perception, metabolite production and expressions of specific stress‐related genes. Recent research suggests that chemical priming is a promising field in crop stress management because plants can be primed by chemical agents to increase their tolerance to various environmental stresses. We present a concept to meet this objective and protect plants through priming of existing defense mechanisms avoiding manipulation of the genome. In addition, recent developments in plant molecular biology include the discovery of genes related to stress tolerance, including functional genes for protecting cells and regulatory genes for regulating stress responses. Therefore, enhancing abiotic stress tolerance using a transgenic approach to transfer these genes into plant genomes has attracted more investigations. Both chemical priming agents and genetic engineering can enhance regulatory and functional genes in plants and increase stress tolerance of plants. This review summarizes the latest findings of chemical priming agents and major achievements in molecular approaches that can potentially enhance the abiotic stress tolerance of plants.
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