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首页> 外文期刊>The Plant Cell >Predicting gene function from uncontrolled expression variation among individual wild-type Arabidopsis plants.
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Predicting gene function from uncontrolled expression variation among individual wild-type Arabidopsis plants.

机译:从单个野生型拟南芥植物之间不受控制的表达变异来预测基因功能。

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Gene expression profiling studies are usually performed on pooled samples grown under tightly controlled experimental conditions to suppress variability among individuals and increase experimental reproducibility. In addition, to mask unwanted residual effects, the samples are often subjected to relatively harsh treatments that are unrealistic in a natural context. Here, we show that expression variations among individual wild-type Arabidopsis thaliana plants grown under the same macroscopic growth conditions contain as much information on the underlying gene network structure as expression profiles of pooled plant samples under controlled experimental perturbations. We advocate the use of subtle uncontrolled variations in gene expression between individuals to uncover functional links between genes and unravel regulatory influences. As a case study, we use this approach to identify ILL6 as a new regulatory component of the jasmonate response pathway.
机译:基因表达谱研究通常在严格控制的实验条件下生长的合并样品上进行,以抑制个体之间的变异性并提高实验可重复性。另外,为了掩盖不想要的残留效应,通常对样品进行相对苛刻的处理,这在自然环境下是不现实的。在这里,我们显示了在相同的宏观生长条件下生长的各个野生型拟南芥植物之间的表达差异,与在受控实验扰动下汇集的植物样品的表达谱一样,包含了有关潜在基因网络结构的信息。我们提倡使用个体之间微妙的不受控制的基因表达差异来揭示基因之间的功能联系并消除监管影响。作为案例研究,我们使用这种方法将ILL6鉴定为茉莉酸酯反应途径的新调控成分。

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