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A Quartet of PIF bHLH Factors Provides a Transcriptionally Centered Signaling Hub That Regulates Seedling Morphogenesis through Differential Expression-Patterning of Shared Target Genes in Arabidopsis

机译:PIF bHLH因子四重奏提供了一个以转录为中心的信号枢纽该枢纽通过差异表达-拟南芥中共享靶基因的表达调控着种子的形态发生。

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摘要

Dark-grown seedlings exhibit skotomorphogenic development. Genetic and molecular evidence indicates that a quartet of Arabidopsis Phytochrome (phy)-Interacting bHLH Factors (PIF1, 3, 4, and 5) are critically necessary to maintaining this developmental state and that light activation of phy induces a switch to photomorphogenic development by inducing rapid degradation of the PIFs. Here, using integrated ChIP–seq and RNA–seq analyses, we have identified genes that are direct targets of PIF3 transcriptional regulation, exerted by sequence-specific binding to G-box (CACGTG) or PBE-box (CACATG) motifs in the target promoters genome-wide. In addition, expression analysis of selected genes in this set, in all triple pif-mutant combinations, provides evidence that the PIF quartet members collaborate to generate an expression pattern that is the product of a mosaic of differential transcriptional responsiveness of individual genes to the different PIFs and of differential regulatory activity of individual PIFs toward the different genes. Together with prior evidence that all four PIFs can bind to G-boxes, the data suggest that this collective activity may be exerted via shared occupancy of binding sites in target promoters.
机译:深色生长的幼苗表现出植物形态发生发展。遗传和分子证据表明,四倍拟南芥植物色素(phy)相互作用的bHLH因子(PIF1、3、4和5)对于维持这种发育状态至关重要,并且phy的光激活通过诱导诱导向光形态发生的转变PIF的快速降级。在这里,使用整合的ChIP-seq和RNA-seq分析,我们已经鉴定出是PIF3转录调控的直接靶标的基因,这些基因是通过与靶标中的G-box(CACGTG)或PBE-box(CACATG)模序特异性结合而发挥作用的全基因组启动子。此外,在所有三重pif突变组合中,该组中选定基因的表达分析提供了证据,证明PIF四重奏成员协作生成表达模式,该模式是单个基因对不同基因的差异转录反应性镶嵌的产物PIF和各个PI​​F对不同基因的不同调节活性。连同所有四个PIF都可以结合到G-box的现有证据一起,数据表明,这种集体活动可能是通过靶启动子中结合位点的共同占有而发挥的。

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