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首页> 外文期刊>International Journal for Parasitology >Diversity, specificity and speciation in larval Diplostomidae (Platyhelminthes: Digenea) in the eyes of freshwater fish, as revealed by DNA barcodes
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Diversity, specificity and speciation in larval Diplostomidae (Platyhelminthes: Digenea) in the eyes of freshwater fish, as revealed by DNA barcodes

机译:DNA条码显示,淡水鱼眼中的双齿线虫(Platyhelminthes:Digenea)幼虫的多样性,特异性和物种形成

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摘要

Larvae (metacercariae) in some species of Diplostomidae (Platyhelminthes: Digenea) inhabit fish eyes and are difficult to identify to species based on morphology. DNA barcoding has clarified the diversity and life cycles of diplostomids in North America, Europe and Africa, but has seldom been used in parasites sampled in large numbers or at large spatial scales. Here, distance-based analysis of cytochrome c oxidase 1 barcodes and, in some specimens, internal transcribed spacer (ITS-1, 5.8S, ITS-2) sequences was performed for over 2000 diplostomids from Africa, the Middle East, Europe, Asia and the Americas. Fifty-two species of Diplostomum, Tylodelphys and Austrodiplostomum (Digenea: Diplostomidae) were distinguished. The 52 species comprise 12 identified species, six species in two species complexes and 34 putative species, and 33/52 had been delineated in previous studies. Most (23/40) of the unidentified, putative species distinguished by cytochrome c oxidase 1 distances were supported by at least one additional line of evidence. As the intensity of sampling of the 52 species increased, variation in cytochrome c oxidase 1 decreased between and increased within species, while the spatial scale at which species were sampled had no effect. Nonetheless, variation between species always exceeded variation within species. New life-cycle linkages, geographic and host records, and genetic data were recorded in several species, including Tylodelphys jenynsiae, Tylodelphys immer and Diplostomum ardeae. Species of Diplostomum inhabiting the lens are less host-specific and less numerous than those infecting other tissues, suggesting that reduced immune activity in the lens has influenced rates of speciation. (C) 2015 Australian Society for Parasitology Inc. Published by Elsevier Ltd. All rights reserved.
机译:在梁龙科(Platyhelminthes:Digenea)的某些物种中,幼虫(metacercariae)栖息在鱼眼中,因此很难根据形态对其进行鉴定。 DNA条形码已经阐明了北美,欧洲和非洲的双梭菌毒素的多样性和生命周期,但是很少用于大量或大规模采样的寄生虫中。在这里,对来自非洲,中东,欧洲,亚洲的2000多种二甲基甲酰胺进行了细胞色素c氧化酶1条形码以及一些标本的内部转录间隔子(ITS-1、5.8S,ITS-2)序列的距离分析和美洲。区分出梁龙属,tylodelphys和金龙属52种(双子纲:梁龙科)。 52个物种包括12个已识别物种,两个物种复合体中的6个物种和34个推定物种,在先前的研究中已划定了33/52。至少有另外一道证据支持了大多数(23/40)以细胞色素C氧化酶1距离为特征的未知物种。随着对52个物种采样强度的增加,物种之间的细胞色素c氧化酶1的变化减小,而在物种内部增大,而对物种进行采样的空间尺度没有影响。尽管如此,物种之间的差异总是超过物种内部的差异。在几个物种中记录了新的生命周期联系,地理和宿主记录以及遗传数据,其中包括泰勒氏菌,沉香泰勒氏菌和火棘Diplostomum ardeae。与感染其他组织的物种相比,居住在晶状体中的梁龙属物种具有更少的宿主特异性且数量较少,这表明晶状体中免疫活性降低已影响物种形成率。 (C)2015年澳大利亚寄生虫学协会。由Elsevier Ltd.出版。保留所有权利。

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