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首页> 外文期刊>The Journal of Eukaryotic Microbiology >Development, ultrastructural pathology, and taxonomic revision of the microsporidial genus, Pseudoloma and its type species Pseudoloma neurophilia, in skeletal muscle and nervous tissue of experimentally infected zebrafish Danio rerio.
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Development, ultrastructural pathology, and taxonomic revision of the microsporidial genus, Pseudoloma and its type species Pseudoloma neurophilia, in skeletal muscle and nervous tissue of experimentally infected zebrafish Danio rerio.

机译:实验感染的斑马鱼 Danio rerio的骨骼肌和神经组织中的微孢子菌属假单胞菌及其类型种假单胞菌神经性的发育,超微结构病理学和分类学修订

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The microsporidium Pseudoloma neurophilia was initially reported to infect the central nervous system of zebrafish causing lordosis and eventually death. Subsequently, muscle tissue infections were also identified. To understand the infection process, development, and ultrastructural pathology of this microsporidium, larval and adult zebrafish were fed P. neurophilia spores. Spores were detected in the larval fish digestive tract 3-h postexposure (PE). By 4.5-d PE, developing parasite stages were identified in muscle tissue. Wet preparations of larvae collected at 8-d PE showed aggregates of spores in the spinal cord adjacent to the notochord. All parasite stages, including spores, were present in the musculature of larval fish 8-d PE. Adult zebrafish sacrificed 45-d PE had fully developed infections in nerves. Ultrastructural study of the developmental cycle of P. neurophilia revealed that proliferative stages undergo karyokinesis, producing tetranucleate stages that then divide into uninucleate cells. The plasmalemma of proliferative cells has a previously unreported glycocalyx-like coat that interfaces with the host cell cytoplasm. Sporogonic stages form sporophorous vacuoles (SPOV) derived from the plasmalemmal dense surface coat, which "blisters" off sporonts. Uninucleate sporoblasts and spores develop in the SPOV. The developmental cycle is identical in both nerve and muscle. The SPOV surface is relatively thick and is the outermost parasite surface entity; thus, xenomas are not formed. Based on the new information provided by this study, the taxonomic description of the genus Pseudoloma and its type species, P. neurophilia, is modified and its life cycle described.Digital Object Identifier http://dx.doi.org/10.1111/j.1550-7408.2011.00591.x
机译:最初有报道称微孢子虫神经假单胞菌感染斑马鱼的中枢神经系统,导致脊柱前凸并最终导致死亡。随后,还确定了肌肉组织感染。为了了解这种微孢子虫,幼虫和成年斑马鱼的感染过程,发育和超微结构病理,分别饲喂了磷。神经性孢子。暴露后3小时(PE)在幼体鱼消化道中检测到孢子。通过4.5天的PE,在肌肉组织中鉴定出发育中的寄生虫阶段。在8 d PE收集的幼虫湿制剂在邻近脊索的脊髓中显示出孢子聚集体。所有寄生虫阶段,包括孢子,都存在于幼体鱼8-d PE的肌肉组织中。牺牲45天PE的成年斑马鱼已经完全发育成神经感染。 P发育周期的超微结构研究。神经毒症显示增殖阶段经历了核运动,产生了四核阶段,然后分裂成单核细胞。增殖细胞的质膜具有先前未报道的与宿主细胞质接触的糖萼样涂层。孢子形成阶段形成孢子囊泡(SPOV),其来源于质膜致密的表面涂层,其“起泡”了孢子体。 SPOV中发育单核孢子母细胞和孢子。神经和肌肉的发育周期相同。 SPOV表面相对较厚,是最外面的寄生虫表面实体。因此,不会形成异种瘤。根据这项研究提供的新信息,对假单胞菌及其类型物种 P的分类学描述。修改并描述了它的生命周期。数字对象标识符http://dx.doi.org/10.1111/j.1550-7408.2011.00591.x

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