首页> 美国卫生研究院文献>BMC Plant Biology >Genome-wide data (ChIP-seq) enabled identification of cell wall-related and aquaporin genes as targets of tomato ASR1 a drought stress-responsive transcription factor
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Genome-wide data (ChIP-seq) enabled identification of cell wall-related and aquaporin genes as targets of tomato ASR1 a drought stress-responsive transcription factor

机译:全基因组数据(ChIP-seq)能够鉴定细胞壁相关基因和水通道蛋白基因作为番茄ASR1(干旱胁迫响应转录因子)的靶标

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摘要

BackgroundIdentifying the target genes of transcription factors is important for unraveling regulatory networks in all types of organisms. Our interest was precisely to uncover the spectrum of loci regulated by a widespread plant transcription factor involved in physiological adaptation to drought, a type of stress that plants have encountered since the colonization of land habitats 400 MYA. The regulator under study, named ASR1, is exclusive to the plant kingdom (albeit absent in Arabidopsis) and known to alleviate the stress caused by restricted water availability. As its target genes are still unknown despite the original cloning of Asr1 cDNA 20 years ago, we examined the tomato genome for specific loci interacting in vivo with this conspicuous protein.
机译:背景识别转录因子的靶基因对于揭示所有类型生物中的调控网络至关重要。我们的兴趣恰恰是揭示受生理适应干旱影响的广泛植物转录因子调控的基因座谱,干旱是自陆地栖息地400 MYA殖民化以来植物所遇到的一种胁迫。所研究的调节剂称为ASR1,是植物界所独有的(尽管在拟南芥中不存在),并且已知该调节剂可缓解因水供应受限而引起的压力。尽管20年前最初克隆了Asr1 cDNA,但由于其靶基因仍是未知的,因此我们检查了番茄基因组中与该显着蛋白质在体内相互作用的特异性基因座。

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