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感染新西兰蜥蜴的线虫(咽齿科)的多样性与进化。

The diversity and evolution of nematodes (Pharyngodonidae) infecting New Zealand lizards.

作者信息

Mockett Sarah, Bell Trent, Poulin Robert, Jorge Fátima

机构信息

Department of Zoology,University of Otago,P.O. Box 56, Dunedin 9054,New Zealand.

EcoGecko Consultants Limited,46 Sunrise Boulevard, Tawa, Wellington 5028,New Zealand.

出版信息

Parasitology. 2017 Apr;144(5):680-691. doi: 10.1017/S0031182016002365. Epub 2016 Dec 15.

Abstract

Host-parasite co-evolutionary studies can shed light on diversity and the processes that shape it. Molecular methods have proven to be an indispensable tool in this task, often uncovering unseen diversity. This study used two nuclear markers (18S rRNA and 28S rRNA) and one mitochondrial (cytochrome oxidase subunit I) marker to investigate the diversity of nematodes of the family Pharyngodonidae parasitizing New Zealand (NZ) lizards (lygosomine skinks and diplodactylid geckos) and to explore their co-evolutionary history. A Bayesian approach was used to infer phylogenetic relationships of the parasitic nematodes. Analyses revealed that nematodes parasitizing skinks, currently classified as Skrjabinodon, are more closely related to Spauligodon than to Skrjabinodon infecting NZ geckos. Genetic analyses also uncovered previously undetected diversity within NZ gecko nematodes and provided evidence for several provisionally cryptic species. We also examined the level of host-parasite phylogenetic congruence using a global-fit approach. Significant congruence was detected between gecko-Skrjabinodon phylogenies, but our results indicated that strict co-speciation is not the main co-evolutionary process shaping the associations between NZ skinks and geckos and their parasitic nematodes. However, further sampling is required to fully resolve co-phylogenetic patterns of diversification in this host-parasite system.

摘要

宿主-寄生虫的共同进化研究可以揭示多样性以及塑造这种多样性的过程。分子方法已被证明是这项任务中不可或缺的工具,常常能揭示出未曾发现的多样性。本研究使用了两个核标记(18S rRNA和28S rRNA)以及一个线粒体标记(细胞色素氧化酶亚基I)来研究寄生于新西兰蜥蜴(岛蜥科石龙子和双足趾虎科壁虎)的咽齿线虫科线虫的多样性,并探索它们的共同进化历史。采用贝叶斯方法推断寄生线虫的系统发育关系。分析表明,寄生于石龙子、目前被归类为斯氏线虫属的线虫与斯氏线虫属相比,与寄生新西兰壁虎的斯氏线虫属的亲缘关系更近。遗传分析还揭示了新西兰壁虎线虫中以前未被检测到的多样性,并为几个暂时隐秘的物种提供了证据。我们还使用全局拟合方法研究了宿主-寄生虫系统发育的一致性水平。在壁虎-斯氏线虫属的系统发育之间检测到了显著的一致性,但我们的结果表明,严格的共同物种形成并不是塑造新西兰石龙子和壁虎与其寄生线虫之间关联的主要共同进化过程。然而,需要进一步采样以全面解析这个宿主-寄生虫系统中多样化的共同系统发育模式。

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