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Cellulose Synthesis in Phytophthora infestans Is Required for Normal Appressorium Formation and Successful Infection of Potato

机译:正常疫霉菌形成和马铃薯成功感染需要疫霉菌中的纤维素合成

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摘要

Cellulose, the important structural compound of cell walls, provides strength and rigidity to cells of numerous organisms. Here, we functionally characterize four cellulose synthase genes (CesA) in the oomycete plant pathogen Phytophthora infestans, the causal agent of potato (Solanum tuberosum) late blight. Three members of this new protein family contain Pleckstrin homology domains and form a distinct phylogenetic group most closely related to the cellulose synthases of cyanobacteria. Expression of all four genes is coordinately upregulated during pre- and early infection stages of potato. Inhibition of cellulose synthesis by 2,6-dichlorobenzonitrile leads to a dramatic reduction in the number of normal germ tubes with appressoria, severe disruption of the cell wall in the preinfection structures, and a complete loss of pathogenicity. Silencing of the entire gene family in P. infestans with RNA interference leads to a similar disruption of the cell wall surrounding appressoria and an inability to form typical functional appressoria. In addition, the cellulose content of the cell walls of the silenced lines is >50% lower than in the walls of the nonsilenced lines. Our data demonstrate that the isolated genes are involved in cellulose biosynthesis and that cellulose synthesis is essential for infection by P. infestans.
机译:纤维素是细胞壁的重要结构化合物,可为多种生物的细胞提供强度和刚度。在这里,我们在功能上鉴定了卵菌植物病原菌致病疫霉中的四个纤维素合酶基因(CesA),马铃薯是晚疫病的致病因子。这个新蛋白质家族的三个成员包含Pleckstrin同源结构域,并形成一个与蓝细菌的纤维素合酶最密切相关的独特的系统发育基团。在马铃薯的感染前和感染早期,所有四个基因的表达均协同上调。 2,6-二氯苄腈对纤维素合成的抑制作用导致带有生殖器的正常生殖管数量显着减少,感染前结构中细胞壁的严重破坏以及致病性的完全丧失。用RNA干扰沉默感染晚疫病的整个基因家族会导致类似的压迫感周围的细胞壁破坏,并且不能形成典型的功能压迫感。另外,沉默线的细胞壁的纤维素含量比非沉默线的细胞壁的纤维素含量低> 50%。我们的数据表明,分离的基因参与了纤维素的生物合成,并且纤维素合成对于感染致病疫霉至关重要。

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