首页> 外文期刊>Marine Biodiversity >Morphology and molecular phylogeny of the marine gregarine parasite Selenidium oshoroense n. sp (Gregarina, Apicomplexa) isolated from a Northwest Pacific Hydroides ezoensis Okuda 1934 (Serpulidae, Polychaeta)
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Morphology and molecular phylogeny of the marine gregarine parasite Selenidium oshoroense n. sp (Gregarina, Apicomplexa) isolated from a Northwest Pacific Hydroides ezoensis Okuda 1934 (Serpulidae, Polychaeta)

机译:海洋普雷雷寄生虫甲苯酮型胰岛肌肌肌的形态和分子系统发育。 从西北太平洋氢咖啡ezoensis okuda 1934(Serpulidae,Polychaeta)分离的SP(Gregarina,Apicomplexa)

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摘要

In this study, we describe a novel marine gregarine parasite, Selenidium oshoroense n. sp., isolated from Hydroides ezoensis Okuda 1934 (Serpulidae, Polychaeta). Trophozoites (feeding stages) of S. oshoroense n. sp. were isolated from the gut of H. ezoensis collected from the intertidal shore near Oshoro, Hokkaido, Japan, and prepared for analysis with scanning and transmission electron microscopy (SEM and TEM), and molecular phylogenetic analysis using 18S rDNA. Trophozoites of S. oshoroense n. sp. were, on average, 120m long and 13m wide. Observation of the cells under SEM and TEM revealed 23 longitudinally running epicytic folds on the surface of the cells. Peduncles, multimembrane-bound whorls, and inclusions were also observed and were indicative of surface-mediated nutrition. Myzocytotic feeding at the apical end of the cell was also indicated in sections of host gut tissue that were viewed under TEM, suggesting that myzocytosis could be a shared feature among this clade of Selenidium from tube-forming polychaetes. Molecular phylogenetic analysis of the 18S rDNA grouped S. oshoroense n. sp. within a clade of Selenidium from tube-forming polychaetes, sister to S. serpulae. The two 18S rDNA sequences generated from separate isolates of S. oshoroense n. sp. had a similarity of 0.997, but were 0.965 and 0.966 similar to S. serpulae. S. oshoroense n. sp. was differentiated from, S. serpulae, based on the absence of transverse striations on the surface of the epicytic folds and difference in ecological niche (host). Morphological differences were supported in phylogenetic analysis which grouped S. oshoroense n. sp. isolates, to the exclusion of S. serpulae.
机译:在这项研究中,我们描述了一种新型海洋Gregarine寄生虫,Selenidium Oshoroense n。 SP。,来自氢苯甲醚okuda 1934(Serpulidae,Polychaeta)分离。 S. Oshoroense N的滋养体(喂养阶段)。 SP。从奥什洛洛,北海道,日本伊富岛附近的京都岸边收集的ezoensis肠道中分离出来,并用扫描和透射电子显微镜(SEM和TEM)进行分析,以及使用18S rDNA的分子系统发育分析。 S. Oshoroense的滋养体SP。平均,120米长,宽13米。在SEM和TEM下观察细胞显示在细胞表面上的纵向运行的23倍。还观察到花序,多膜结合的螺旋和夹杂物,并指示表面介导的营养。在细胞的顶端饲喂细胞的顶端的肌细胞菌喂养也在TEM观察的宿主肠组织的部分中表明,肌细胞增多症可以是来自管形成多芯的硒菌的共用特征。 18S rDNA分组的S. Oshoroense N的分子系统发育分析。 SP。在塞皮杜氏菌的塞伦西亚人的思想中,姐妹塞满了血清。从S. Oshoroense N的单独分离株产生的两种18S rDNA序列。 SP。具有0.997的相似性,但为0.965和0.966,类似于S. Serpulae。 S. Oshoroense n。 SP。基于对外观折叠表面的横向条纹和生态利基(宿主)差异的缺乏晶体,不同于S. Serpulae。系统发育分析中的形态学差异被分组为oShoroense n。 SP。分离物,排除S. Serpulae。

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