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首页> 外文期刊>The Plant Cell >NENA, a Lotus japonicus homolog of Sec13, is required for rhizodermal infection by arbuscular mycorrhiza fungi and rhizobia but dispensable for cortical endosymbiotic development.
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NENA, a Lotus japonicus homolog of Sec13, is required for rhizodermal infection by arbuscular mycorrhiza fungi and rhizobia but dispensable for cortical endosymbiotic development.

机译:NENA 是 Sec13 的 Lotus japonicus 同源物,对于丛枝菌根真菌和根瘤菌感染的根皮感染是必需的,但对于皮层内共生的发展是必需的。

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摘要

Legumes form symbioses with arbuscular mycorrhiza (AM) fungi and nitrogen fixing root nodule bacteria. Intracellular root infection by either endosymbiont is controlled by the activation of the calcium and calmodulin-dependent kinase (CCaMK), a central regulatory component of the plant's common symbiosis signaling network. We performed a microscopy screen for Lotus japonicus mutants defective in AM development and isolated a mutant, nena, that aborted fungal infection in the rhizodermis. NENA encodes a WD40 repeat protein related to the nucleoporins Sec13 and Seh1. Localization of NENA to the nuclear rim and yeast two-hybrid experiments indicated a role for NENA in a conserved subcomplex of the nuclear pore scaffold. Although nena mutants were able to form pink nodules in symbiosis with Mesorhizobium loti, root hair infection was not observed. Moreover, Nod factor induction of the symbiotic genes NIN, SbtM4, and SbtS, as well as perinuclear calcium spiking, were impaired. Detailed phenotypic analyses of nena mutants revealed a rhizobial infection mode that overcame the lack of rhizodermal responsiveness and carried the hallmarks of crack entry, including a requirement for ethylene. CCaMK-dependent processes were only abolished in the rhizodermis but not in the cortex of nena mutants. These data support the concept of tissue-specific components for the activation of CCaMK.Digital Object Identifier http://dx.doi.org/10.1105/tpc.109.069807
机译:豆类与丛枝菌根(AM)真菌和固氮根瘤细菌形成共生体。任一个共生共生体对细胞内根部的感染都受钙和钙调蛋白依赖性激酶(CCaMK)的激活的控制,该激酶是植物常见共生信号网络的中央调节成分。我们对在AM发育中有缺陷的 Lotus japonicus 突变体进行了显微镜筛查,并分离了 nena 突变体,该突变体终止了根瘤菌中的真菌感染。 NENA 编码与核孔蛋白Sec13和Seh1相关的WD40重复蛋白。 NENA在核边缘和酵母两杂交实验中的定位表明NENA在核孔支架的保守亚复合物中发挥了作用。尽管 nena 突变体能够与 Mesoorzozobium loti 共生形成粉红色结节,但未观察到根毛感染。此外,共生基因 NIN , SbtM4 和 SbtS 的Nod因子诱导以及核周钙增高均受到损害。对 nena 突变体进行详细的表型分析后,发现了一种根瘤菌感染模式,克服了根瘤菌反应性的不足,并带有裂纹进入的特点,包括对乙烯的要求。依赖CCaMK的过程仅在根瘤菌中被消除,而在 nena 突变体的皮质中没有被消除。这些数据支持激活CCaMK的组织特定组件的概念。数字对象标识符http://dx.doi.org/10.1105/tpc.109.069807

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