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首页> 外文期刊>OMICS: A journal of integrative biology >An Omics Approach to Understand the Plant Abiotic Stress
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An Omics Approach to Understand the Plant Abiotic Stress

机译:一个了解植物非生物组学方法压力

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摘要

Abiotic stress can lead to changes in development, productivity, and severe stress and may even threaten survival of plants. Several environmental stresses cause drastic changes in the growth, physiology, and metabolism of plants leading to the increased accumulation of secondary metabolites. As medicinal plants are important sources of drugs, steps are taken to understand the effect of stress on the physiology, biochemistry, genomic, proteomic, and metabolic levels. The molecular responses of plants to abiotic stress are often considered as a complex process. They are mainly based on the modulation of transcriptional activity of stressrelated genes. Many genes have been induced under stress conditions. The products of stress-inducible genes protecting against these stresses includes the enzymes responsible for the synthesis of various osmoprotectants. Genetic engineering of tolerance to abiotic stresses help in molecular understanding of pathways induced in response to one or more of the abiotic stresses. Systems biology and virtual experiments allow visualizing and understanding how plants work to overcome abiotic stress. This review discusses the omic approach to understand the plant response to abiotic stress with special emphasis on medicinal plant.
机译:非生物压力会导致发展发生变化,生产力和严重的压力,甚至可能威胁生存的植物。环境压力导致大幅度的变化植物的生长、生理和代谢导致积累的增加次生代谢物。药物的重要来源,是采取措施了解压力的影响生理学、生物化学、基因组、蛋白质组学和代谢水平。植物非生物胁迫常常被认为是一个复杂的过程。调制的转录活性stressrelated基因。在压力下的条件。防止这些stress-inducible基因压力包括酶负责各种osmoprotectants的合成。工程耐非生物压力有帮助分子的了解途径诱导对一个或多个非生物压力。系统生物学和虚拟实验允许观察和理解植物如何工作克服非生物压力。使方法了解植物响应非生物压力特别强调药用植物。

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