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Focus Issue on Legume Biology: LIN a Novel Type of U-Box/WD40 Protein Controls Early Infection by Rhizobia in Legumes

机译:豆科植物生物学的焦点问题:一种新型的U-Box / WD40蛋白LIN控制豆科植物中根瘤菌的早期感染

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摘要

The formation of a nitrogen-fixing nodule requires the coordinated development of rhizobial colonization and nodule organogenesis. Based on its mutant phenotype, lumpy infections (lin), LIN functions at an early stage of the rhizobial symbiotic process, required for both infection thread growth in root hair cells and the further development of nodule primordia. We show that spontaneous nodulation activated by the calcium- and calmodulin-dependent protein kinase is independent of LIN; thus, LIN is not necessary for nodule organogenesis. From this, we infer that LIN predominantly functions during rhizobial colonization and that the abortion of this process in lin mutants leads to a suppression of nodule development. Here, we identify the LIN gene in Medicago truncatula and Lotus japonicus, showing that it codes for a predicted E3 ubiquitin ligase containing a highly conserved U-box and WD40 repeat domains. Ubiquitin-mediated protein degradation is a universal mechanism to regulate many biological processes by eliminating rate-limiting enzymes and key components such as transcription factors. We propose that LIN is a regulator of the component(s) of the nodulation factor signal transduction pathway and that its function is required for correct temporal and spatial activity of the target protein(s).
机译:固氮根瘤的形成需要根瘤菌定植和根瘤器官发生的协调发展。基于其突变表型,块状感染(lin),LIN在根瘤菌共生过程的早期阶段起作用,这是根毛细胞中感染线增长和根瘤原基进一步发展所必需的。我们表明,钙和钙调蛋白依赖性蛋白激酶激活的自发结节是独立于LIN的。因此,LIN对于结节器官发生不是必需的。据此,我们推断LIN主要在根瘤菌定殖过程中起作用,而在lin突变体中这一过程的失败导致结节的形成受到抑制。在这里,我们在紫花苜蓿和日本莲花中鉴定了LIN基因,表明它编码包含高度保守的U-box和WD40重复域的预测E3泛素连接酶。泛素介导的蛋白质降解是通过消除限速酶和关键成分(例如转录因子)来调节许多生物学过程的通用机制。我们建议LIN是结瘤因子信号转导通路的组成部分的调节器,其功能是目标蛋白正确的时空活动所必需的。

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