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ZmSOC1 an MADS-Box Transcription Factor from Zea mays Promotes Flowering in Arabidopsis

机译:ZmSOC1玉米的MADS盒转录因子促进拟南芥开花。

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摘要

Zea mays is an economically important crop, but its molecular mechanism of flowering remains largely uncharacterized. The gene, SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1), integrates multiple flowering signals to regulate floral transition in Arabidopsis. In this study, ZmSOC1 was isolated from Zea mays. Sequence alignment and phylogenetic analysis demonstrated that the ZmSOC1 protein contained a highly conserved MADS domain and a typical SOC1 motif. ZmSOC1 protein was localized in the nucleus in protoplasts and showed no transcriptional activation activity in yeast cells. ZmSOC1 was highly expressed in maize reproductive organs, including filaments, ear and endosperm, but expression was very low in embryos; on the other hand, the abiotic stresses could repress ZmSOC1 expression. Overexpression of ZmSOC1 resulted in early flowering in Arabidopsis through increasing the expression of AtLFY and AtAP1. Overall, these results suggest that ZmSOC1 is a flowering promoter in Arabidopsis.
机译:玉米可能是一种重要的经济作物,但其开花的分子机制在很大程度上仍未发现。该基因,CONSANS 1(SOC1)的过表达抑制子,整合了多个开花信号来调节拟南芥中的花期过渡。在这项研究中,ZmSOC1是从玉米中分离的。序列比对和系统发育分析表明,ZmSOC1蛋白包含一个高度保守的MADS域和一个典型的SOC1基序。 ZmSOC1蛋白位于原生质体的核中,在酵母细胞中没有转录激活活性。 ZmSOC1在玉米生殖器官(包括细丝,穗和胚乳)中高表达,但在胚胎中的表达非常低。另一方面,非生物胁迫可抑制ZmSOC1表达。 ZmSOC1的过表达通过增加AtLFY和AtAP1的表达导致拟南芥中的早期开花。总体而言,这些结果表明ZmSOC1是拟南芥中的开花启动子。

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