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研究伊比利亚半岛特有的鲤形目(硬骨鱼纲,真骨总目)鱼类寄生粘孢子虫(刺胞动物门,粘体动物亚门)的形态学和分子特征。

Morphological and molecular characterization of myxobolids (Cnidaria, Myxozoa) infecting cypriniforms (Actinopterygii, Teleostei) endemic to the Iberian Peninsula.

机构信息

Institute of Biomedical Sciences Abel Salazar, University of Porto (ICBAS/UP), Rua Jorge Viterbo Ferreira No. 228, 4050-313 Porto, Portugal - Interdisciplinary Centre of Marine and Environmental Research (CIIMAR), Terminal de Cruzeiros de Leixões, Av. General Norton de Matos s/n, 4450-208 Matosinhos, Portugal.

Institute of Biomedical Sciences Abel Salazar, University of Porto (ICBAS/UP), Rua Jorge Viterbo Ferreira No. 228, 4050-313 Porto, Portugal.

出版信息

Parasite. 2019;26:48. doi: 10.1051/parasite/2019049. Epub 2019 Aug 16.

Abstract

The Iberian Peninsula provides a unique freshwater ecosystem for native and endemic cypriniforms to thrive. Despite cypriniforms being hosts to multiple myxobolids worldwide, little research has been performed in this geographic location. In this study, the examination of three Iberian endemic cypriniforms showed that myxosporean richness in the Iberian Peninsula is underestimated, with three new and one known myxobolid species being reported based on morphological and molecular data (SSU). Myxobolus arcasii n. sp. is described from the kidney and gonads of the "bermejuela" Achondrostoma arcasii, M. duriensis n. sp. from the gills of the Northern straight-mouth nase Pseudochondrostoma duriense, and Thelohanellus paludicus n. sp. from the intestine of the Southern Iberian spined-loach Cobitis paludica. Myxobolus pseudodispar Gorbunova, 1936 is further reported from several organs of P. duriense, and from the spleen of A. arcasii. The occurrence of M. pseudodispar in endemic Iberian species reveals that host-shift followed its co-introduction with central European leuciscids into this geographic location. Several other myxobolids originally described from barbels in central Europe have also been reported from the Iberian endemic cypriniform Luciobarbus bocagei. Nonetheless, except for M. musculi, the identification of these myxobolids in L. bocagei is here shown to be dubious and require molecular confirmation. Phylogenetic analyses reveal M. arcasii n. sp. and M. duriensis n. sp. clustering within different lineages of leuciscid-infecting species, showing that myxobolids entered Leuciscidae as hosts multiple times during their evolution. Constituting the first myxobolid reported from the subfamily Cobitinae, Thelohanellus paludicus n. sp. stands alone in the tree topology.

摘要

伊比利亚半岛为本地和特有鲤科鱼类提供了独特的淡水生态系统,使其得以繁衍生息。尽管鲤科鱼类是世界范围内多种粘孢子虫的宿主,但在该地理区域的相关研究却很少。本研究对三种伊比利亚特有鲤科鱼类进行了检查,结果表明,伊比利亚半岛的粘孢子虫丰富度被低估了,根据形态学和分子数据(SSU),报告了三种新的和一种已知的粘孢子虫物种。新种 Myxobolus arcasii 从“bermejuela”Achondrostoma arcasii 的肾脏和性腺中描述,新种 Myxobolus duriensis 从北方直口鲃 Pseudochondrostoma duriense 的鳃中描述,新种 Thelohanellus paludicus 从南方伊比利亚刺鳅 Cobitis paludica 的肠中描述。Myxobolus pseudodispar Gorbunova, 1936 进一步从几种北方直口鲃器官和 A. arcasii 的脾脏中报告。M. pseudodispar 在伊比利亚特有种中的出现表明,随着中欧的拟鲤科鱼类被引入到该地理区域,发生了宿主转移。几种最初从中欧的须中描述的其他粘孢子虫也已从伊比利亚特有鲤科鱼类 Luciobarbus bocagei 中报告。然而,除了 M. musculi 之外,这些粘孢子虫在 L. bocagei 中的鉴定结果存在疑问,需要进行分子确认。系统发育分析显示,新种 M. arcasii 和 M. duriensis 聚类在感染拟鲤科鱼类的不同谱系内,表明粘孢子虫在其进化过程中多次作为宿主进入了鲤科鱼类。新种 Thelohanellus paludicus 是首次从 Cobitinae 亚科报告的粘孢子虫,在系统发育树拓扑结构中自成一派。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/667d/6694745/9bb641aceb99/parasite-26-48-fig1.jpg

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