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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Expression analysis in response to drought stress in soybean: shedding light on the regulation of metabolic pathway genes
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Expression analysis in response to drought stress in soybean: shedding light on the regulation of metabolic pathway genes

机译:大豆响应干旱胁迫的表达分析:阐明代谢途径基因的调控

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Metabolomics analysis of wild type Arabidopsis thaliana plants, under control and drought stress conditions revealed several metabolic pathways that are induced under water deficit. The metabolic response to drought stress is also associated with ABA dependent and independent pathways, allowing a better understanding of the molecular mechanisms in this model plant. Through combining an in silico approach and gene expression analysis by quantitative real-time PCR, the present work aims at identifying genes of soybean metabolic pathways potentially associated with water deficit. Digital expression patterns of Arabidopsis genes, which were selected based on the basis of literature reports, were evaluated under drought stress condition by Genevestigator. Genes that showed strong induction under drought stress were selected and used as bait to identify orthologs in the soybean genome. This allowed us to select 354 genes of putative soybean orthologs of 79 Arabidopsis genes belonging to 38 distinct metabolic pathways. The expression pattern of the selected genes was verified in the subtractive libraries available in the GENOSOJA project. Subsequently, 13 genes from different metabolic pathways were selected for validation by qPCR experiments. The expression of six genes was validated in plants undergoing drought stress in both pot-based and hydroponic cultivation systems. The results suggest that the metabolic response to drought stress is conserved in Arabidopsis and soybean plants.
机译:在控制和干旱胁迫条件下,野生型拟南芥植物的代谢组学分析揭示了在缺水条件下诱导的几种代谢途径。对干旱胁迫的代谢反应也与ABA依赖和独立的途径有关,从而可以更好地了解这种模型植物的分子机制。通过将计算机方法和通过定量实时PCR进行的基因表达分析相结合,本工作旨在鉴定可能与水分缺乏相关的大豆代谢途径的基因。基于文献报道选择的拟南芥基因的数字表达模式由Genevestigator在干旱胁迫条件下进行评估。选择在干旱胁迫下表现出强诱导作用的基因,并用作诱饵以鉴定大豆基因组中的直向同源物。这使我们能够从属于38个不同代谢途径的79个拟南芥基因中选择354个大豆直系同源基因。在GENOSOJA项目中可用的减性文库中验证了所选基因的表达模式。随后,选择了来自不同代谢途径的13个基因,以通过qPCR实验进行验证。在盆栽和水培栽培系统中,在遭受干旱胁迫的植物中验证了六个基因的表达。结果表明在拟南芥和大豆植物中对干旱胁迫的代谢反应得以保留。

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