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首页> 外文期刊>Genome Biology >Identification of pathways directly regulated by SHORT VEGETATIVE PHASE during vegetative and reproductive development in Arabidopsis.
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Identification of pathways directly regulated by SHORT VEGETATIVE PHASE during vegetative and reproductive development in Arabidopsis.

机译:鉴定拟南芥在营养和生殖发育过程中受植物生长阶段直接调控的途径。

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Background: MADS-domain transcription factors play important roles during plant development. The Arabidopsis MADS-box gene SHORT VEGETATIVE PHASE (SVP) is a key regulator of two developmental phases. It functions as a repressor of the floral transition during the vegetative phase and later it contributes to the specification of floral meristems. How these distinct activities are conferred by a single transcription factor is unclear, but interactions with other MADS domain proteins which specify binding to different genomic regions is likely one mechanism. Results: To compare the genome-wide DNA binding profile of SVP during vegetative and reproductive development we performed ChIP-seq analyses. These ChIP-seq data were combined with tiling array expression analysis, induction experiments and qRT-PCR to identify biologically relevant binding sites. In addition, we compared genome-wide target genes of SVP with those published for the MADS domain transcription factors FLC and AP1, which interact with SVP during the vegetative and reproductive phases, respectively. Conclusions: Our analyses resulted in the identification of pathways that are regulated by SVP including those controlling meristem development during vegetative growth and flower development whereas floral transition pathways and hormonal signaling were regulated predominantly during the vegetative phase. Thus, SVP regulates many developmental pathways, some of which are common to both of its developmental roles whereas others are specific to only one of them.
机译:背景:MADS结构域转录因子在植物发育过程中起重要作用。拟南芥MADS盒基因短生植物阶段(SVP)是两个发育阶段的关键调节剂。它在植物生长阶段起着抑制花卉过渡的作用,后来又有助于规范花卉分生组织。单个转录因子如何赋予这些不同的活性尚不清楚,但与其他MADS结构域蛋白相互作用的相互作用可能是一种机制,该蛋白指定与不同的基因组区域结合。结果:为了在营养和生殖发育过程中比较SVP的全基因组DNA结合谱,我们进行了ChIP-seq分析。这些ChIP-seq数据与平铺阵列表达分析,诱导实验和qRT-PCR相结合,以鉴定生物学上相关的结合位点。此外,我们将SVP的全基因组靶基因与MADS域转录因子FLC和AP1公开的基因进行了比较,后者分别在营养和生殖阶段与SVP相互作用。结论:我们的分析结果确定了受SVP调控的途径,包括在营养生长和花朵发育过程中控制分生组织发育的途径,而在营养阶段则主要调控花卉过渡途径和激素信号传导。因此,SVP调控着许多发展途径,其中一些是其两个发展角色所共有的,而另一些则仅针对其中一个。

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