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Cell Wall Chitosaccharides Are Essential Components and Exposed Patterns of the Phytopathogenic Oomycete Aphanomyces euteiches

机译:细胞壁壳聚糖是植物致病卵菌Aphanomyces euteiches的必要成分和暴露模式。

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摘要

Chitin is an essential component of fungal cell walls, where it forms a crystalline scaffold, and chitooligosaccharides derived from it are signaling molecules recognized by the hosts of pathogenic fungi. Oomycetes are cellulosic fungus-like microorganisms which most often lack chitin in their cell walls. Here we present the first study of the cell wall of the oomycete Aphanomyces euteiches, a major parasite of legume plants. Biochemical analyses demonstrated the presence of ca. 10% N-acetyl-d-glucosamine (GlcNAc) in the cell wall. Further characterization of the GlcNAc-containing material revealed that it corresponds to noncrystalline chitosaccharides associated with glucans, rather than to chitin per se. Two putative chitin synthase (CHS) genes were identified by data mining of an A. euteiches expressed sequence tag collection and Southern blot analysis, and full-length cDNA sequences of both genes were obtained. Phylogeny analysis indicated that oomycete CHS diversification occurred before the divergence of the major oomycete lineages. Remarkably, lectin labeling showed that the Aphanomyces euteiches chitosaccharides are exposed at the cell wall surface, and study of the effect of the CHS inhibitor nikkomycin Z demonstrated that they are involved in cell wall function. These data open new perspectives for the development of antioomycete drugs and further studies of the molecular mechanisms involved in the recognition of pathogenic oomycetes by the host plants.
机译:几丁质是真菌细胞壁的重要组成部分,在其中形成结晶支架,衍生自它的壳寡糖是致病真菌宿主识别的信号分子。卵菌类是纤维素真菌样微生物,其细胞壁中最经常缺乏几丁质。在这里,我们提出卵母细胞Aphanomyces euteiches,豆科植物的主要寄生虫的细胞壁的第一个研究。生化分析表明存在ca。细胞壁中有10%N-乙酰基-d-葡萄糖胺(GlcNAc)。含GlcNAc的物质的进一步表征表明,它对应于与葡聚糖相关的非晶壳聚糖,而不是几丁质本身。通过对大果曲霉表达序列标签的数据挖掘和Southern blot分析,鉴定了两个推定的几丁质合酶(CHS)基因,并获得了两个基因的全长cDNA序列。系统发育分析表明卵石CHS多样化发生在主要卵石谱系发散之前。值得注意的是,凝集素标记显示,Aphanomyces euteiches壳聚糖暴露于细胞壁表面,并且对CHS抑制剂尼克霉素Z的作用的研究表明,它们参与了细胞壁的功能。这些数据为抗卵菌药物的开发和宿主植物识别致病卵菌的分子机制的进一步研究开辟了新的前景。

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