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首页> 外文期刊>Journal of Experimental Botany >AHP2, AHP3, and AHP5 act downstream of CKI1 in Arabidopsis female gametophyte development
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AHP2, AHP3, and AHP5 act downstream of CKI1 in Arabidopsis female gametophyte development

机译:AHP2,AHP3和AHP5在拟南芥中的CKI1下游作用于拟南芥雌性配子体发育

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摘要

Histidine phosphotransfer proteins (HPs) are key elements of the two-component signaling system, which act as a shuttle to transfer phosphorylation signals from histidine kinases (HKs) to response regulators (RRs). CYTOKININ INDEPENDENT 1 (CKI1), a key regulator of central cell specification in the Arabidopsis female gametophyte, activates the cytokinin signaling pathway through the Arabidopsis histidine phosphotransfer proteins (AHPs). There are five HP genes in Arabidopsis, AHP1-AHP5, but it remains unknown which AHP genes act downstream of CKI1 in Arabidopsis female gametophyte development. Promoter activity analysis of AHP1-AHP5 in embryo sacs revealed AHP1, AHP2, AHP3, and AHP5 expression in the central cell. Phenotypic studies of various combinations of ahp mutants showed that triple mutations in AHP2, AHP3, and AHP5 resulted in defective embryo sac development. Using cell-specific single and double markers in the female gametophyte, the ahp2-2 ahp3 ahp5-2/+ triple mutant ovules showed loss of central cell and antipodal cell fates and gain of egg cell or synergid cell attributes, resembling the cki1 mutant phenotypes. These data suggest that AHP2, AHP3, and AHP5 are the major factors acting downstream of CKI1 in the two-component cytokinin signaling pathway to promote Arabidopsis female gametophyte development.
机译:组氨酸磷酸酯蛋白(HPS)是双组分信号系统的关键要素,其作为梭子从组氨酸激酶(HKS)转移磷酸化信号以反应调节剂(RRS)。 Cytokinin独立1(CKI1)是拟南芥雌性配子体中的中央电池规格的关键调节器,通过拟南芥组氨酸磷酸替代蛋白(AHPS)激活细胞蛋白信号传导途径。 Arabidopsis有五种HP基因,AHP1-AHP5,但它仍然未知,其中AHP基因在拟南芥雌性配子体发育中的CKI1下游。 AHP1-AHP5在胚囊中的启动子活性分析显示中央电池中的AHP1,AHP2,AHP3和AHP5表达。 AHP突变体各种组合的表型研究表明,AHP2,AHP3和AHP5中的三倍突变导致胚胎发育有缺陷。在雌性配子体中使用细胞特异性单个和双标记,AHP2-2 AHP3 AHP5-2 / +三重突变胚珠显示出中枢电池和脱叠细胞的损失以及蛋细胞或增益细胞属性的增益,类似于CKI1突变表型。这些数据表明AHP2,AHP3和AHP5是在双组分细胞蛋白信号传导途径中的CKI1下游的主要因素,以促进拟南芥雌性配子体发育。

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