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Soybean Nodule-Enhanced CLE Peptides in Roots Act as Signals in GmNARK-Mediated Nodulation Suppression

机译:根中大豆根瘤增强的CLE肽在GmNARK介导的根瘤抑制中充当信号

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The number of nodules formed in the roots of leguminous plants is systemically controlled by autoregulation of nodulation (AON). This study characterized two of the CLAVATA3/endosperm-surrounding region (CLE) genes involved in AON signal transduction. The GmRIC1 and GmRIC2 genes initiated expression solely in the roots at approximately 3 days after inoculation (DAI) with Nod factor-producing rhizobia, corresponding to the time point of AON, and the expression was up-regulated by cytokinins. Levels of GmRIC1 and GmRIC2 gene expression were much higher in the supernodulation mutant, SS2-2, than in wild-type (WT) soybeans during nodule development, even after initiation of nitrogen fixation. At 3 DAI, GmRIC2 was induced in the cells of the pericycle and the outer cortex, which undergo cell division to form nodule primordia and spreads from the central region to the whole nodule as it develops. Overexpression of GmRIC1 and GmRIC2 strongly suppressed the nodulation of WT roots as well as transgenic hairy roots in a GmNARK-dependent manner. This systemic suppression of nodulation was caused by the secretion of two CLE proteins into the extracellular space. Double grafting between WT and SS2-2 soybeans showed that signal Q is larger in SS2-2 than in WT roots during nodulation. The results of this study suggest that GmRIC1 and GmRIC2 are good candidates for root-derived signal Q in AON signal transduction.
机译:在豆科植物的根中形成的根瘤数量是通过根瘤自动调节(AON)系统控制的。这项研究的特点是参与AON信号转导的两个CLAVATA3 /胚乳周围区域(CLE)基因。 GmRIC1和GmRIC2基因在接种(DAI)约3天后,仅在根系中产生Nod因子的根瘤菌开始在根中开始表达,这与AON的时间点相对应,并且该表达被细胞分裂素上调。在结瘤发育期间,即使在固氮开始后,超结瘤突变体SS2-2中的GmRIC1和GmRIC2基因表达水平也比野生型(WT)大豆高得多。在第3天DAI,GmRIC2在周围细胞和外皮层的细胞中被诱导,这些细胞经历细胞分裂形成结节原基,并随着其发育从中央区域扩散到整个结节。 GmRIC1和GmRIC2的过度表达以GmNARK依赖性方式强烈抑制野生根和转基因毛状根的结节。这种系统性的结节抑制是由两种CLE蛋白分泌到细胞外空间引起的。 WT和SS2-2大豆之间的两次嫁接表明,结瘤期间SS2-2中的信号Q大于WT根中的Q。这项研究的结果表明,GmRIC1和GmRIC2是AON信号转导中根源信号Q的良好候选者。

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