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首页> 外文期刊>Development >Direct interaction of AGL24 and SOC1 integrates flowering signals in Arabidopsis.
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Direct interaction of AGL24 and SOC1 integrates flowering signals in Arabidopsis.

机译:AGL24和SOC1的直接相互作用整合了拟南芥中的开花信号。

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During the transition from vegetative to reproductive growth, the shoot meristem of flowering plants acquires the inflorescence identity to generate flowers rather than vegetative tissues. An important regulator that promotes the inflorescence identity in Arabidopsis is AGAMOUS-LIKE 24 (AGL24), a MADS-box transcription factor. Using a functional estradiol-inducible system in combination with microarray analysis, we identified AGL24-induced genes, including SUPPRESSOR OF OVEREXPRESSION OF CO 1 (SOC1), a floral pathway integrator. Chromatin immunoprecipitation (ChIP) analysis of a functional AGL24-6HA-tagged line revealed in vivo binding of AGL24-6HA to the regulatory region of SOC1. Mutagenesis of the AGL24 binding site in the SOC1 promoter decreased Pro(SOC1):GUS expression and compromised SOC1 function in promoting flowering. Our results show that SOC1 is one of the direct targets of AGL24, and that SOC1 expression is upregulated by AGL24 at the shoot apex at the floral transitional stage. ChIP assay using a functional SOC1-9myc-tagged line and promoter mutagenesis analysis also revealed in vivo binding of SOC1-9myc to the regulatory regions of AGL24 and upregulation of AGL24 at the shoot apex by SOC1. Furthermore, we found that as in other flowering genetic pathways, the effect of gibberellins on flowering under short-day conditions was mediated by the interaction between AGL24 and SOC1. These observations suggest that during floral transition, a positive-feedback loop conferred by direct transcriptional regulation between AGL24 and SOC1 at the shoot apex integrates flowering signals.
机译:在从营养生长到生殖生长的过渡过程中,开花植物的分生组织获得花序同一性以生成花,而不是营养组织。促进拟南芥中花序同一性的重要调节剂是MADS-box转录因子AGAMOUS-LIKE 24(AGL24)。使用功能性雌二醇诱导系统与微阵列分析相结合,我们确定了AGL24诱导的基因,包括过表达CO 1(SOC1)的抑制子,一种花卉途径整合子。功能性AGL24-6HA标记系的染色质免疫沉淀(ChIP)分析显示,AGL24-6HA在体内与SOC1调节区结合。 SOC1启动子中AGL24结合位点的诱变降低了Pro(SOC1):GUS表达并损害了SOC1在促进开花中的功能。我们的结果表明,SOC1是AGL24的直接靶标之一,并且在花期过渡期,SOC1的表达在芽顶处被AGL24上调。使用功能性SOC1-9myc标记品系的ChIP分析和启动子诱变分析还揭示了SOC1-9myc在体内与AGL24调控区的结合以及SOC1在茎尖处对AGL24的上调。此外,我们发现,与其他开花遗传途径一样,赤霉素在短日照条件下对开花的影响是由AGL24和SOC1之间的相互作用介导的。这些观察结果表明,在花期过渡过程中,由AGL24和SOC1之间的直接转录调控在茎尖产生的正反馈环整合了开花信号。

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