鲤科五种双头鱼科种群的分子特征:寄生虫特异性的新数据

Mathieu Sicard, Erick Desmarais, Alain Lambert
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引用次数: 18

摘要

双plozoon属(Platyhelminth)展示了最引人注目的繁殖模式之一。成虫在两个雌雄同体的幼虫永久融合后繁殖,这两个幼虫起着对称的作用。由于另外两个原因,双兽科在单属多拟子叶科中也是例外的。它们是唯一真正多样化的陆地淡水鱼群;然而,这种多样化很难评估,因为很少有形态解剖学标准可用于区分物种,它们的宿主特异性在单属植物中是非典型变化的。本文首次利用分子工具研究了梁虫科的物种定义和寄主特异性问题。对5种与鲤科宿主相互作用的双plozoidae的两个核糖体标记ITS2和28S rDNA (D1)进行了测序,并对相应的寄主系统进行了较好的表征,揭示了双plozoidae和鲤科之间关系的一些对比情况。一些物种实际上是严格的宿主特异性的,但最初被认为是红鳞笛龙(scardinzoon erythrophtalmus)上的特异性物种的笛龙(Diplozoon scardinii)和Rutilus Rutilus上的homion D.,根据它们相同的ITS2和28S rDNA序列,被认为是一个单一的物种。在同样的基础上,我们提出,尽管在两个异种种群之间观察到形态差异,但paradox D.能够寄生于两种鱼类,Abramis brama和Blicca bjoerkna。利用ITS2序列和细胞色素b序列估计了双虫科物种间的系统发育关系。最后,这两种分子系统发生的比较似乎表现出共种现象。
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Caractérisation moléculaire des populations de Diplozoidae sur cinq espèces de Cyprinidae: nouvelles données sur la spécificité parasitaire

The genus Diplozoon (Platyhelminth) exhibits one of the most striking modes of reproduction. Adults reproduce after the permanent fusion of two larval hermaphrodites, which play a symmetrical role. The Diplozoidae are also exceptional among the Monogenea Polyopisthocotylea for two other reasons. They represent the only group really diversified on continental freshwater fishes; however, this diversification is difficult to evaluate since few morphoanatomical criteria are available to distinguish species and their host specificity is atypically variable among the Monogenea. For the first time in the Diplozoidae, the problems of species definition and of host specificity are examined using molecular tools. Two ribosomal markers (ITS2 and 28S rDNA (D1)) have been sequenced in five Diplozoidae, interacting with five Cyprinidae host species: the corresponding parasite–host systems have been well characterised, revealing some contrasting situations in the relations between Diplozoidae and Cyprinidae. Some species are effectively strictly host specific, but Diplozoon scardinii initially considered as a specific species on Scardinius erythrophtalmus and D. homoion on Rutilus rutilus are proposed to be a single species on the basis of their identical ITS2 and 28S rDNA sequences. On the same basis we proposed that D. paradoxum is able to parasitize two fish species, Abramis brama and Blicca bjoerkna, despite the morphological differences observed between the two xenopopulations. Phylogenetic relationships among Diplozoidae species were estimated with ITS2 sequences while cytochrome b sequences were used for their fish hosts. Finally, the comparison between these two molecular phylogenies seems to exhibit the phenomenon of cospeciation.

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