首页> 外文期刊>Parasitology Research >Sacculogenesis and sporogony of Tetracapsuloides bryosalmonae (Myxozoa: Malacosporea) within the bryozoan host Fredericella sultana (Bryozoa: Phylactolaemata).
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Sacculogenesis and sporogony of Tetracapsuloides bryosalmonae (Myxozoa: Malacosporea) within the bryozoan host Fredericella sultana (Bryozoa: Phylactolaemata).

机译:苔藓小囊藻中的四囊藻(Myxozoa:Malacosporea)的芽孢形成和孢子形成宿主为Fredericella sultana(Bryozoa:Phylactolaemata)。

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摘要

Tetracapsuloides bryosalmonae is the myxozoan parasite responsible for proliferative kidney disease (PKD) of salmonid fishes. This disease affects farmed species in North America and Western Europe where it results in significant economic losses for the rainbow trout industry. The parasite has two hosts in its life cycle, salmonid fish, and freshwater bryozoans. In this study, we describe the development of the parasite at the ultrastructural level within the bryozoan host Fredericella sultana. Single celled, presaccular stages form aggregates within the metacoel of this host which resolve into spore sacs. Within these sacs sporogenesis is initiated with the differentiation of presporogonic cells into sporogonic and valvogenic cells. These latter cells surround a sporogonic cell which subsequently divides to form a sporoplasmogenic cell and a capsulogenic cell. The capsulogenic cell divides further to form four cells each with a polar capsule, while the sporoplasmogenic cell divides resulting in four cells, two primary cells and two secondary cells. The secondary cells are engulfed by the primary cells resulting in a mature sporoplasm. It is hypothesized that autogamy occurs during the initial formation of the spore sac and that allogamy is also possible during this time.
机译:苔藓小囊藻是造成鲑鱼鱼类增生性肾脏疾病(PKD)的粘虫寄生虫。该病影响北美和西欧的养殖物种,对虹鳟鱼产业造成重大经济损失。寄生虫在其生命周期中有两个寄主,鲑鱼和淡水苔藓动物。在这项研究中,我们描述了在苔藓寄主弗雷德里克菌苏丹娜的超微结构水平上的寄生虫的发展。单细胞的囊前阶段在该宿主的metacoel内形成聚集物,其分解成孢子囊。在这些囊内,孢子形成是由前孢子细胞向孢子细胞和valvogenic细胞的分化开始的。后面的这些细胞包围孢子细胞,随后分裂形成孢子形成细胞和产囊细胞。产囊细胞进一步分裂形成四个带有极性囊的细胞,而孢子浆形成细胞分裂产生四个细胞,两个初级细胞和两个次级细胞。次级细胞被初级细胞吞没,形成成熟的孢子质。假设在孢子囊的最初形成过程中会发生自配症,并且在这段时间内也可能发生同种异体。

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