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Identification of Gene Modules Associated with Drought Response in Rice by Network-Based Analysis

机译:基于网络的分析鉴定水稻与干旱响应相关的基因模块

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摘要

Understanding the molecular mechanisms that underlie plant responses to drought stress is challenging due to the complex interplay of numerous different genes. Here, we used network-based gene clustering to uncover the relationships between drought-responsive genes from large microarray datasets. We identified 2,607 rice genes that showed significant changes in gene expression under drought stress; 1,392 genes were highly intercorrelated to form 15 gene modules. These drought-responsive gene modules are biologically plausible, with enrichments for genes in common functional categories, stress response changes, tissue-specific expression and transcription factor binding sites. We observed that a gene module (referred to as module 4) consisting of 134 genes was significantly associated with drought response in both drought-tolerant and drought-sensitive rice varieties. This module is enriched for genes involved in controlling the response of the plant to water and embryonic development, including a heat shock transcription factor as the key regulator in the expression of ABRE-containing genes. These results suggest that module 4 is highly conserved in the ABA-mediated drought response pathway in different rice varieties. Moreover, our study showed that many hub genes clustered in rice chromosomes had significant associations with QTLs for drought stress tolerance. The relationship between hub gene clusters and drought tolerance QTLs may provide a key to understand the genetic basis of drought tolerance in rice.
机译:由于众多不同基因之间复杂的相互作用,因此了解构成植物对干旱胁迫反应的分子机制具有挑战性。在这里,我们使用基于网络的基因聚类来揭示大型芯片数据集中干旱反应基因之间的关系。我们鉴定了2607个水稻基因,这些基因在干旱胁迫下显示出显着的基因表达变化。 1,392个基因高度相关,形成了15个基因模块。这些对干旱有反应的基因模块在生物学上是合理的,具有丰富的常见功能类别,应激反应变化,组织特异性表达和转录因子结合位点的基因。我们观察到,由134个基因组成的基因模块(称为模块4)在耐旱和干旱敏感的水稻品种中均与干旱响应显着相关。该模块丰富了涉及控制植物对水和胚胎发育的响应的基因,包括热激转录因子,作为含ABRE的基因表达中的关键调控因子。这些结果表明模块4在不同水稻品种的ABA介导的干旱反应途径中高度保守。此外,我们的研究表明,许多水稻染色体中的集线器基因与QTLs在干旱胁迫耐受性上具有显着的关联。轮毂基因簇与耐旱性QTLs之间的关系可能为了解水稻耐旱性的遗传基础提供了关键。

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