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Genome-Wide Binding Analysis of the Transcription Activator IDEAL PLANT ARCHITECTURE1 Reveals a Complex Network Regulating Rice Plant Architecture

机译:转录激活因子IDEAL PLANT ARCHITECTURE1的全基因组结合分析揭示了调控水稻植株结构的复杂网络

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摘要

IDEAL PLANT ARCHITECTURE1 (IPA1) is critical in regulating rice (Oryza sativa) plant architecture and substantially enhances grain yield. To elucidate its molecular basis, we first confirmed IPA1 as a functional transcription activator and then identified 1067 and 2185 genes associated with IPA1 binding sites in shoot apices and young panicles, respectively, through chromatin immunoprecipitation sequencing assays. The SQUAMOSA PROMOTER BINDING PROTEIN-box direct binding core motif GTAC was highly enriched in IPA1 binding peaks; interestingly, a previously uncharacterized indirect binding motif TGGGCC/T was found to be significantly enriched through the interaction of IPA1 with proliferating cell nuclear antigen PROMOTER BINDING FACTOR1 or PROMOTER BINDING FACTOR2. Genome-wide expression profiling by RNA sequencing revealed IPA1 roles in diverse pathways. Moreover, our results demonstrated that IPA1 could directly bind to the promoter of rice TEOSINTE BRANCHED1, a negative regulator of tiller bud outgrowth, to suppress rice tillering, and directly and positively regulate DENSE AND ERECT PANICLE1, an important gene regulating panicle architecture, to influence plant height and panicle length. The elucidation of target genes of IPA1 genome-wide will contribute to understanding the molecular mechanisms underlying plant architecture and to facilitating the breeding of elite varieties with ideal plant architecture.
机译:理想的植物架构1(IPA1)对于调节水稻(Oryza sativa)的植物架构至关重要,并可以大大提高谷物产量。为了阐明其分子基础,我们首先确认了IPA1为功能性转录激活因子,然后通过染色质免疫沉淀测序分析分别鉴定了1067和2185个与IPA1结合位点相关的芽尖和幼穗中的基因。 SQUAMOSA启动子结合蛋白盒直接结合核心基序GTAC在IPA1结合峰中高度富集。有趣的是,以前未知的间接结合基序TGGGCC / T通过IPA1与增殖细胞核抗原PROMOTER BINDING FACTOR1或PROMOTER BINDING FACTOR2的相互作用而显着富集。 RNA测序的全基因组表达谱揭示了IPA1在多种途径中的作用。此外,我们的结果表明,IPA1可以直接与水稻分OS芽生长的负调控物TEOSINTE BRANCHED1的启动子结合,从而抑制水稻分till,并直接和正向调节DENSE AND ERECT PANICLE1(调节穗结构的重要基因),从而影响水稻分till。株高和穗长。阐明全基因组IPA1的靶基因将有助于理解植物结构的分子机制,并有助于以理想的植物结构育种优良品种。

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