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中间宿主转换驱动最大的吸虫科多样化:来自通过捕食珊瑚虫而传播给蝴蝶鱼的寄生虫——拟棘口吸虫亚科(棘口科)的证据。

Intermediate host switches drive diversification among the largest trematode family: evidence from the Polypipapiliotrematinae n. subf. (Opecoelidae), parasites transmitted to butterflyfishes via predation of coral polyps.

机构信息

School of Biological Sciences, The University of Queensland, Brisbane, QLD 4072, Australia.

PSL Research University, USR 3278 EPHE-UPVD-CNRS, Centre de Recherche Insulaire et Observatoire de l'Environnement (CRIOBE) Université de Perpignan Via Domitia, 58 avenue P. Alduy, 66860 Perpignan. France; Laboratoire d'excellence Corail, EPHE, Moorea, French Polynesia.

出版信息

Int J Parasitol. 2018 Dec;48(14):1107-1126. doi: 10.1016/j.ijpara.2018.09.003. Epub 2018 Oct 24.

Abstract

Podocotyloides stenometra Pritchard, 1966 (Digenea: Opecoelidae) is the only trematode known to infect anthozoan corals. It causes disease in coral polyps of the genus Porites Link (Scleractinia: Poritidae) and its life-cycle depends on ingestion of these polyps by butterflyfishes (Perciformes: Chaetodontidae). This species has been reported throughout the Indo-Pacific, from the Seychelles to the Galápagos, but no study has investigated whether multiple species are involved. Here, we recollect P. stenometra from its type-host and type-locality, in Hawaiian waters, and describe four new species from examination of 768 butterflyfishes from French Polynesia. On the basis of morphology, phylogeny and life-history, we propose Polypipapiliotrema Martin, Cutmore & Cribb n. gen. and the Polypipapiliotrematinae Martin, Cutmore & Cribb n. subf., for P. stenometra (Pritchard) n. comb., P. citerovarium Martin, Cutmore & Cribb n. sp., P. hadrometra Martin, Cutmore & Cribb n. sp., P. heniochi Martin, Cutmore & Cribb n. sp., and P. ovatheculum Martin, Cutmore & Cribb n. sp. Given the diversity uncovered here and the ubiquity, abundance and diversity of butterflyfishes on coral reefs, we predict that Polypipapiliotrema will prove to comprise a rich complex of species causing disease in corals across the Indo-Pacific. The unique life-cycle of these taxa is consistent with phylogenetic distinction of the group and provides evidence for a broader basis of diversification among the family. We argue that life-cycle specialisation, in terms of adoption of disparate second intermediate host groups, has been a key driver of the diversification and richness of the Opecoelidae, the largest of all trematode families and the group most frequently encountered in coral reef fishes.

摘要

豆形目 Stenometra 属 Pritchard, 1966(双腔科)是唯一已知感染珊瑚的扁形动物。它会引起 Porites Link 属珊瑚虫(珊瑚纲:石珊瑚科)的珊瑚虫患病,其生命周期依赖于蝴蝶鱼(鲈形目:蝴蝶鱼科)吞食这些珊瑚虫。这种物种已在从塞舌尔群岛到加拉帕戈斯群岛的整个印度洋-太平洋地区被报道,但没有研究调查是否涉及多个物种。在这里,我们从夏威夷水域的其原始宿主和原始栖息地重新采集到 stenometra 属,并从法属波利尼西亚的 768 条蝴蝶鱼中检查描述了四个新物种。基于形态学、系统发育和生活史,我们提出了 polypipapiliotrema Martin, Cutmore & Cribb n. gen. 和 polypipapiliotrematinae Martin, Cutmore & Cribb n. subf.,用于 stenometra 属(Pritchard)n. comb.,P. citerovarium Martin, Cutmore & Cribb n. sp.,P. hadrometra Martin, Cutmore & Cribb n. sp.,P. heniochi Martin, Cutmore & Cribb n. sp. 和 P. ovatheculum Martin, Cutmore & Cribb n. sp.。鉴于这里发现的多样性以及蝴蝶鱼在珊瑚礁中的普遍性、丰富性和多样性,我们预测 polypipapiliotrema 将证明是一个由多种引起珊瑚疾病的物种组成的丰富复合体,遍布印度洋-太平洋地区。这些分类群的独特生命周期与其系统发育上的区别一致,并为该科中更广泛的多样性提供了证据。我们认为,在采用不同的第二中间宿主群方面,生命周期的专业化是 opecoelidae 多样化和丰富的关键驱动因素,opecoelidae 是所有扁形动物中最大的家族,也是在珊瑚礁鱼类中最常遇到的家族。

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