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首页> 外文期刊>Parasitology Research >Parasite communities of two three-spined stickleback populations in subarctic Norway-effects of a small spatial-scale host introduction
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Parasite communities of two three-spined stickleback populations in subarctic Norway-effects of a small spatial-scale host introduction

机译:北极亚北极地区两个三棘背le种群的寄生虫群落-小型空间尺度寄主的影响

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Co-introduction and colonization of parasites with the introduction of new host species into aquatic habitats may depend on the host specificity and dispersal capabilities of the parasites. We compared the metazoan parasite community of an introduced three-spined stickleback (Gasterosteus aculeatus) population with that of the nearby source population in subarctic Norway. As expected from a small spatial scale (5 km), the parasite component communities in the two lakes were highly similar. All identifiable allogenic parasite taxa (Diphyllobothrium dendriticum, Diphyllobothrium ditremum, Diphyllobothrium spp., Schistocephalus solidus, Apatemon sp. and Diplostomum spp.) were also observed in both lakes while inter-lake differences were driven by autogenic parasite taxa (Eubothrium spp., Crepidostomum spp., Nematoda spp., Proteocephalus sp. and Gyrodactylus arcuatus). Contrary to expectation, the total number of parasite taxa was higher in the introduced stickleback population (12) compared to that found in the source population (9) with three parasite taxa (Eubothrium spp., Crepidostomum spp., Nematoda spp.) only occurring in the introduced population. These parasites were uncommon however and normally restricted to salmonids. Sticklebacks from both populations were heavily infected, particularly with eye-infecting metacercariae. Sequences from the DNA barcode region of cytochrome oxidase 1 indicated that these include Diplostomum lineage 6, a member of the Diplostomum baeri complex and a member of the Strigeinae. Despite high similarity between the two component communities, quantitative inter-lake differences were found at the infracommunity level. At this scale, parasite intensity was significantly higher in the source population for the two autogenic stickleback specialists: G. arcuatus and Proteocephalus sp., assumed to be the autogenic stickleback specialist Proteocephalus filicollis. Parasite infracommunities within each lake also resembled each other significantly more than infracommunities between lakes, primarily driven by the allogenic cestode D. ditremum, as well as G. arcuatus and Proteocephalus sp. Overall, quantitative dissimilarities between the two parasite communities were possibly explained by inter-lake differences in the density of sticklebacks and intermediate hosts.
机译:寄生虫的共引入和定殖以及将新的宿主物种引入水生生境可能取决于宿主的特异性和寄生虫的扩散能力。我们比较了引进的三旋棘背population(Gasterosteus aculeatus)种群的后生动物寄生虫种群与挪威近北极的附近源种群的比较。正如从较小的空间规模(5 km)所预期的那样,两个湖泊中的寄生虫成分群落高度相似。在两个湖泊中还观察到所有可识别的同种异体寄生生物分类群(Diphyllobothrium dendriticum,Diphyllobothrium ditremum,Diphyllobothrium spp。,Sistoscephalus solidus,Apatemon sp。和Diplostomum spp。),而湖间差异是由自生寄生虫分类群(Eubothrium Cre虫)引起的。 ,线虫,Proteocephalus sp。和Gyrodactylus arcuatus)。与预期相反,引入的棘背类种群(12)中的寄生虫类群总数比仅具有三个寄生虫类群(Eubothrium spp。,Crepidostomum spp。,Nematoda spp。)的源种群(9)中发现的总数高。在介绍的人口中。这些寄生虫并不常见,通常只限于鲑鱼。两种种群的病均受到严重感染,尤其是感染眼部感染的尾cer。来自细胞色素氧化酶1的DNA条码区域的序列表明,这些序列包括Diplostomum谱系6,Diplostomum baeri复合体的成员和Strigeinae的成员。尽管两个组成部分社区之间的相似度很高,但在次社区水平上发现了定量的湖间差异。在这种规模下,两个自体棘背专家G. arcuatus和Proteocephalus sp。的来源种群中的寄生虫强度显着更高,这被认为是自体背棘专家fitecoollis。每个湖内的寄生虫次生也比湖泊之间的互生相似得多,这主要由同种异头estD。ditremum以及弓形虫和Proteocephalus sp。驱动。总体而言,这两个寄生虫群落之间的数量差异可能是由于湖间棘背le和中间寄主的密度不同而造成的。

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