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首页> 外文期刊>Mycologia >Pseudorhizidium is a new genus with distinct zoospore ultrastructure in the order Chytridiales
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Pseudorhizidium is a new genus with distinct zoospore ultrastructure in the order Chytridiales

机译:假单胞菌属是一个新属,具有按梭菌序排列的明显的游动孢子超微结构

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A chytrid isolate (JEL 221) we identified as the rarely reported species, Rhizidium endosporangiatum Karling, was cultured axenically for the first time. The purposes of this study are to characterize the developmental morphology of isolate JEL 221 and to elucidate its zoospore ultrastructural features. Thallus development and morphology of isolate JEL 221 are characteristic of R. endosporangiatum as it was originally described. However, thallus morphology of R. endosporangiatum is not entirely typical of the genus Rhizidium, especially that of the type R. mycophilum. The presence of an endosporangium, a layer of material encapsulating the edges of the protoplast protruding through multiple discharge pores, makes this a distinctive species. Consistent with its published molecular-based phylogenetic placement, we found that isolate JEL 221 shared ultrastructural features with the two major zoospore types described for the Chytridiales but had distinct zoospore architecture. A new genus, Pseudorhizidium, is erected for this chytrid based on its thallus morphology, molecular phylogenetic placement and unique zoospore ultrastructure. This new genus does not fit into either of the described families (Chytridiaceae or Chytriomycetaceae) in the Chytridiales because of its unique zoospore ultrastructure, especially the two-layered nature of the electron-opaque plug in the base of the flagellum.
机译:我们首次将一种被鉴定为鲜为报道的物种的chychyd分离菌(JEL 221)-内生根瘤菌Karling进行了无氧培养。这项研究的目的是表征分离物JEL 221的发育形态,并阐明其游动孢子的超微结构特征。如最初所描述的,分离物JEL 221的气疱发育和形态是R. endosporangiatum的特征。然而,内生芽孢杆菌的all体形态并不完全是根瘤菌属(Rhizidium)属的典型特征,尤其是Mycophilum型。内生孢子囊(一层包裹着原生质塑料边缘并通过多个排放孔突出的材料)的存在使它成为一种独特的物种。与其公开的基于分子的系统发育定位相一致,我们发现分离的JEL 221与为the虫描述的两种主要游动孢子类型具有超微结构特征,但具有明显的游动孢子结构。基于该壶菌的菌体形态,分子系统发生位置和独特的游动孢子超微结构,为其建立了一个新属,即假单孢菌属。由于其独特的游动孢子超微结构,特别是鞭毛基部的电子不透明栓塞具有两层性质,因此该新属不适合于壶菌属中所描述的任何一个家族(壶菌科或壶菌科)。

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