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Kelch Repeat Protein Clakel2p and Calcium Signaling Control Appressorium Development in Colletotrichum lagenarium

机译:炭疽病菌中的Kelch重复蛋白Clakel2p和钙信号控制Appressorium的发育。

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Kelch repeat proteins are important mediators of fundamental cellular functions and are found in diverse organisms. However, the roles of these proteins in filamentous fungi have not been characterized. We isolated a kelch repeat-encoding gene of Colletotrichum lagenarium ClaKEL2, a Schizosaccharomyces pombe tea1 homologue. Analysis of the clakel2 mutant indicated that ClaKEL2 was required for the establishment of cellular polarity essential for proper morphogenesis of appressoria and that there is a plant signal-specific bypass pathway for appressorium development which circumvents ClaKEL2 function. Clakel2p was localized in the polarized region of growing hyphae and germ tubes, and the localization was disturbed by a microtubule assembly blocker. The clakel2 mutants formed abnormal appressoria, and those appressoria were defective in penetration hypha development into cellulose membranes, an artificial model substrate for fungal infection. Surprisingly, the clakel2 mutants formed normal appressoria on the host plant and retained penetration ability. Normal appressorium formation on the artificial substrate by the clakel2 mutants was restored when cells were incubated in the presence of CaCl2 or exudates from cucumber cotyledon. Furthermore, calcium channel modulators inhibited restoration of normal appressorium formation. These results suggest that there could be a bypass pathway that transduces a plant-derived signal for appressorium development independent of ClaKEL2 and that a calcium signal is involved in this transduction pathway.
机译:凯尔奇重复蛋白是基本细胞功能的重要介体,存在于多种生物中。但是,这些蛋白质在丝状真菌中的作用尚未被鉴定。我们分离出了 Colletotrichum lagenarium ClaKEL2 的海带重复编码基因,该基因是裂殖酵母的同源物。对 clakel2 突变体的分析表明, ClaKEL2 是建立Appressoria正确形态发生所必需的细胞极性所必需的,并且存在针对Appressorium发育的植物信号特异性旁路途径规避了 ClaKEL2 功能。 Clakel2p定位在生长的菌丝和胚芽管的极化区域,并且该定位受到微管组装阻滞剂的干扰。 clakel2 突变体形成异常的附睾,这些附睾在穿透菌丝进入纤维素膜(一种真菌感染的人工模型底物)方面存在缺陷。令人惊讶的是, clakel2 突变体在宿主植物上形成了正常的附子,并保持了穿透能力。当细胞在CaCl 2 或黄瓜子叶渗出液中孵育时,由 clakel2 突变体在人工底物上形成的正常顶盖得以恢复。此外,钙通道调节剂抑制了正常食欲形成的恢复。这些结果表明,可能存在一个旁路途径,该途径可以独立于 ClaKEL2 来转导植物来源的食欲发育信号,并且该信号转导途径涉及钙信号。

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