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Emerging trends in the functional genomics of the abiotic stress response in crop plants

机译:作物非生物胁迫响应功能基因组学的新兴趋势

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Plants are exposed to different abiotic stresses, such as water deficit, high temperature, salinity, cold, heavy metals and mechanical wounding, under field conditions. It is estimated that such stress conditions can potentially reduce the yield of crop plants by more than 50%. Investigations of the physiological, biochemical and molecular aspects of stress tolerance have been conducted to unravel the intrinsic mechanisms developed during evolution to mitigate against stress by plants. Before the advent of the genomics era, researchers primarily used a gene?¢????by?¢????gene approach to decipher the function of the genes involved in the abiotic stress response. However, abiotic stress tolerance is a complex trait and, although large numbers of genes have been identified to be involved in the abiotic stress response, there remain large gaps in our understanding of the trait. The availability of the genome sequences of certain important plant species has enabled the use of strategies, such as genome?¢????wide expression profiling, to identify the genes associated with the stress response, followed by the verification of gene function by the analysis of mutants and transgenics. Certain components of both abscisic acid?¢????dependent and ?¢????independent cascades involved in the stress response have already been identified. Information originating from the genome?¢????wide analysis of abiotic stress tolerance will help to provide an insight into the stress?¢????responsive network(s), and may allow the modification of this network to reduce the loss caused by stress and to increase agricultural productivity.
机译:在田间条件下,植物面临不同的非生物胁迫,例如缺水,高温,盐度,寒冷,重金属和机械伤害。据估计,这种胁迫条件可能使农作物的产量减少50%以上。已经进行了对胁迫耐受性的生理,生化和分子方面的研究,以揭示进化过程中形成的减轻植物胁迫的内在机制。在基因组学时代来临之前,研究人员主要使用一种通过逐个基因的基因方法来破译参与非生物胁迫反应的基因的功能。然而,非生物胁迫耐受性是一个复杂的特征,尽管已鉴定出大量基因参与非生物胁迫响应,但我们对该特征的理解仍存在很大差距。某些重要植物物种的基因组序列的可用性使诸如基因组全表达谱等策略的使用成为可能,以鉴定与胁迫响应相关的基因,随后通过基因组验证基因功能。突变体和转基因的分析。已经确定了脱落酸依赖的和依赖于氨基酸的级联反应的某些成分。来自基因组的信息-非生物胁迫耐受性的广泛分析将有助于提供对胁迫响应网络的了解,并可能允许对该网络进行修改以减少损失造成压力并提高农业生产率。

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