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拟南芥在单一胁迫和复合胁迫下的转录调控网络

Transcriptional regulatory networks in Arabidopsis thaliana during single and combined stresses.

作者信息

Barah Pankaj, B N Mahantesha Naika, Jayavelu Naresh Doni, Sowdhamini Ramanathan, Shameer Khader, Bones Atle M

机构信息

Cell, Molecular Biology and Genomics Group, Department of Biology, Norwegian University of Science and Technology, Trondheim N-7491, Norway

National Centre for Biological Sciences, Tata Institute of Fundamental Research, GKVK campus, Bangalore 560 065, India.

出版信息

Nucleic Acids Res. 2016 Apr 20;44(7):3147-64. doi: 10.1093/nar/gkv1463. Epub 2015 Dec 17.

Abstract

Differentially evolved responses to various stress conditions in plants are controlled by complex regulatory circuits of transcriptional activators, and repressors, such as transcription factors (TFs). To understand the general and condition-specific activities of the TFs and their regulatory relationships with the target genes (TGs), we have used a homogeneous stress gene expression dataset generated on ten natural ecotypes of the model plant Arabidopsis thaliana, during five single and six combined stress conditions. Knowledge-based profiles of binding sites for 25 stress-responsive TF families (187 TFs) were generated and tested for their enrichment in the regulatory regions of the associated TGs. Condition-dependent regulatory sub-networks have shed light on the differential utilization of the underlying network topology, by stress-specific regulators and multifunctional regulators. The multifunctional regulators maintain the core stress response processes while the transient regulators confer the specificity to certain conditions. Clustering patterns of transcription factor binding sites (TFBS) have reflected the combinatorial nature of transcriptional regulation, and suggested the putative role of the homotypic clusters of TFBS towards maintaining transcriptional robustness against cis-regulatory mutations to facilitate the preservation of stress response processes. The Gene Ontology enrichment analysis of the TGs reflected sequential regulation of stress response mechanisms in plants.

摘要

植物对各种胁迫条件的差异进化反应是由转录激活因子和阻遏因子(如转录因子,TFs)的复杂调控回路控制的。为了了解转录因子的一般和特定条件下的活性及其与靶基因(TGs)的调控关系,我们使用了一个在模式植物拟南芥的十个自然生态型上生成的同质胁迫基因表达数据集,该数据集涵盖了五种单一胁迫条件和六种复合胁迫条件。生成了25个胁迫响应转录因子家族(187个转录因子)的基于知识的结合位点图谱,并测试了它们在相关靶基因调控区域中的富集情况。条件依赖性调控子网揭示了潜在网络拓扑结构在胁迫特异性调节因子和多功能调节因子作用下的差异利用情况。多功能调节因子维持核心胁迫反应过程,而瞬时调节因子赋予特定条件下的特异性。转录因子结合位点(TFBS)的聚类模式反映了转录调控的组合性质,并表明TFBS同型簇在维持针对顺式调控突变的转录稳健性以促进胁迫反应过程保存方面可能发挥的作用。靶基因的基因本体富集分析反映了植物胁迫反应机制的顺序调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e40/4838348/d51fd9f5d489/gkv1463fig1.jpg

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