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An Arabidopsis Transcriptional Regulatory Map Reveals Distinct Functional and Evolutionary Features of Novel Transcription Factors

机译:拟南芥转录调控图揭示了新型转录因子的独特功能和进化特征。

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摘要

Transcription factors (TFs) play key roles in both development and stress responses. By integrating into and rewiring original systems, novel TFs contribute significantly to the evolution of transcriptional regulatory networks. Here, we report a high-confidence transcriptional regulatory map covering 388 TFs from 47 families in Arabidopsis. Systematic analysis of this map revealed the architectural heterogeneity of developmental and stress response subnetworks and identified three types of novel network motifs that are absent from unicellular organisms and essential for multicellular development. Moreover, TFs of novel families that emerged during plant landing present higher binding specificities and are preferentially wired into developmental processes and these novel network motifs. Further unveiled connection between the binding specificity and wiring preference of TFs explains the wiring preferences of novel-family TFs. These results reveal distinct functional and evolutionary features of novel TFs, suggesting a plausible mechanism for their contribution to the evolution of multicellular organisms.
机译:转录因子(TFs)在发育和应激反应中均起关键作用。通过整合到原始系统中并重新连接原始系统,新的TF在转录调控网络的进化中发挥了重要作用。在这里,我们报告了一个高可信度的转录调控图谱,涵盖了拟南芥47个科的388个TF。对该图的系统分析揭示了发育和应激反应子网的结构异质性,并确定了单细胞生物中缺少的三类新型网络基序,这对多细胞发育至关重要。而且,在植物着陆期间出现的新家族的TF具有更高的结合特异性,并且优先地连接到发育过程和这些新的网络基序中。 TF的结合特异性和接线偏好之间进一步揭示的联系解释了新家族TF的接线偏好。这些结果揭示了新型TF的独特功能和进化特征,暗示了它们对多细胞生物进化的贡献的合理机制。

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