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首页> 外文期刊>BioSystems >Similar bowtie structures and distinct largest strong components are identified in the transcriptional regulatory networks of Arabidopsis thaliana during photomorphogenesis and heat shock
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Similar bowtie structures and distinct largest strong components are identified in the transcriptional regulatory networks of Arabidopsis thaliana during photomorphogenesis and heat shock

机译:在光学发生和热休克期间,在Arabidopsis Thaliana的转录调节网络中确定了类似的蝴蝶结结构和明显的最大强大组分

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摘要

Photomorphogenesis and heat shock are critical biological processes of plants. A recent research constructed the transcriptional regulatory networks (TRNs) of Arabidopsis thaliana during these processes using DNase-seq. In this study, by strong decomposition, we revealed that each of these TRNs can be represented as a similar bowtie structure with only one non-trivial and distinct strong component. We further identified distinct patterns of variation of a few light-related genes in these bowtie structures during photomorphogenesis. These results suggest that bowtie structure may be a common property of TRNs of plants, and distinct variation patterns of genes in bowtie structures of TRNs during biological processes may reflect distinct functions. Overall, our study provides an insight into the molecular mechanisms underlying photomorphogenesis and heat shock, and emphasizes the necessity to investigate the strong connectivity structures while studying TRNs.
机译:光膀胱和热休克是植物的关键生物过程。 最近的研究在使用DNase-SEQ期间构建了拟南芥拟南芥的转录调节网络(TRNS)。 在本研究中,通过强烈分解,我们透露,这些TRN中的每一个可以表示为类似的弓形结构,只有一个非琐碎和不同的强组件。 我们在光学发生期间进一步确定了这些弓形结构中少数光相关基因的不同模式。 这些结果表明,弓形结构可以是植物TRNS的常见性,并且生物过程中TRN的弓形结构中的基因的不同变化模式可能反映出不同的功能。 总体而言,我们的研究介绍了光致血管发生和热冲击的分子机制,并强调必须在研究TRNS时研究强的连接结构的必要性。

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