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CLE Peptides can Negatively Regulate Protoxylem Vessel Formation via Cytokinin Signaling

机译:CLE肽可通过细胞分裂素信号传导负调节protoxylem血管的形成。

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Cell–cell communication is critical for tissue and organ development. In plants, secretory CLAVATA3/EMBRYO SURROUNDING REGION-related (CLE) peptides function as intercellular signaling molecules in various aspects of tissue development including vascular development. However, little is known about intracellular signaling pathways functioning in vascular development downstream of the CLE ligands. We show that CLE peptides including CLE10, which is preferentially expressed in the root vascular system, inhibit protoxylem vessel formation in Arabidopsis roots. GeneChip analysis displayed that CLE10 peptides repressed specifically the expression of two type-A Arabidopsis Response Regulators (ARRs), ARR5 and ARR6, whose products act as negative regulators of cytokinin signaling. The arr5 arr6 roots exhibited defective protoxylem vessel formation. These results indicate that CLE10 inhibits protoxylem vessel formation by suppressing the expression of type-A ARR genes including ARR5 and ARR6. This was supported by the finding that CLE10 did not suppress protoxylem vessel formation in a background of arr10 arr12, a double mutant of type-B ARR genes. Thus, our results revealed cross-talk between CLE signaling and cytokinin signaling in protoxylem vessel formation in roots. Taken together with the indication that cytokinin signaling functions downstream of the CLV3/WUS signaling pathway in the shoot apical meristem, the cross-talk between CLE and cytokinin signaling pathways may be a common feature in plant development.
机译:细胞间的通讯对于组织和器官的发育至关重要。在植物中,分泌型CLAVATA3 / EMBRYO周围环境相关(CLE)肽在包括血管发育在内的组织发育的各个方面起细胞间信号分子的作用。然而,关于在CLE配体下游的血管发育中起作用的细胞内信号传导途径知之甚少。我们显示,包括在根血管系统中优先表达的CLE10在内的CLE肽抑制拟南芥根中protoxylem血管的形成。基因芯片分析显示,CLE10肽特异性抑制两种A型拟南芥反应调节因子(ARR),ARR5和ARR6的表达,它们的产物充当细胞分裂素信号传导的负调节剂。 arr5 arr6根表现出缺陷的protoxylem血管形成。这些结果表明,CLE10通过抑制包括ARR5和ARR6的A型ARR基因的表达来抑制protoxylem血管的形成。这得到以下发现的支持:CLE10不能抑制arr10 arr12(B型ARR基因的双重突变体)的背景下的protoxylem血管形成。因此,我们的研究结果揭示了根系中环氧丙烷血管形成中CLE信号传导和细胞分裂素信号传导之间的相互影响。结合细胞分裂素信号传导功能在茎尖分生组织中CLV3 / WUS信号传导途径下游的指示,CLE和细胞分裂素信号传导途径之间的相互干扰可能是植物发育的共同特征。

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