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A network of rice genes associated with stress response and seed development.

机译:与胁迫响应和种子发育相关的水稻基因网络。

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We used a systematic approach to build a network of genes associated with developmental and stress responses in rice by identifying interaction domains for 200 proteins from stressed and developing tissues, by measuring the associated gene expression changes in different tissues exposed to a variety of environmental, biological, and chemical stress treatments, and by localizing the cognate genes to regions of stress-tolerance trait genetic loci. The integrated data set suggests that similar genes respond to environmental cues and stresses, and some may also regulate development. We demonstrate that the data can be used to correctly predict gene function in monocots and dicots. As a result, we have identified five genes that contribute to disease resistance in Arabidopsis.
机译:我们通过识别暴露于各种环境,生物的不同组织中相关基因表达的变化,确定了来自压力和发育中的组织中200种蛋白质的相互作用域,从而采用了系统的方法来构建与水稻中的发育和胁迫响应相关的基因网络。 ,以及化学应激处理,以及通过将同源基因定位到胁迫耐受性状遗传基因座的区域。综合数据集表明,相似的基因对环境暗示和压力有反应,有些可能还调节发育。我们证明该数据可用于正确预测单子叶植物和双子叶植物中的基因功能。结果,我们已经鉴定出五个基因,它们有助于拟南芥的抗病性。

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