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寄生在巴西锯脂鲤(鲤形目脂鲤科)的棘头虫(单殖吸虫目,指环虫科)的系统发育位置。

The phylogenetic position of Anacanthorus (Monogenea, Dactylogyridae) parasitizing Brazilian serrasalmids (Characiformes).

机构信息

Curso de Pós-Graduação em Biologia Animal da Universidade Federal Rural do Rio de Janeiro, BR 465, Km 7, Caixa Postal 74.540, 23890-000, Seropédica, RJ, Brazil.

Curso de Pós-Graduação em Biologia Animal da Universidade Federal Rural do Rio de Janeiro, BR 465, Km 7, Caixa Postal 74.540, 23890-000, Seropédica, RJ, Brazil - Departamento de Parasitologia Animal, Universidade Federal Rural do Rio de Janeiro, Caixa Postal 74.540, 23851-970, Seropédica, RJ, Brazil.

出版信息

Parasite. 2019;26:44. doi: 10.1051/parasite/2019045. Epub 2019 Jul 23.

Abstract

Anacanthorus (Anacanthorinae) is one of the most speciose and common genera of neotropical monogeneans, yet there are still many gaps in our knowledge concerning their diversity and phylogeny. We performed phylogenetic analyses of molecular sequences in order to investigate the phylogenetic position within the Dactylogyridae of Anacanthorus spp. infesting serrasalmids from two Brazilian river basins. Sequences of partial 28S rDNA obtained for nine species of Anacanthorus and Mymarothecium viatorum parasitizing serrasalmids and the published sequences of other members of the Dactylogyridae were included in the phylogenetic reconstruction. Phylogenetic analyses supported the monophyly of anacanthorine monogeneans. The Anacanthorinae (represented in this study by Anacanthorus spp.) formed a monophyletic group included in a large clade together with a group of solely freshwater Ancyrocephalinae and species of the Ancylodiscoidinae. Mymarothecium viatorum (Ancyrocephalinae) was placed within the clade of freshwater Ancyrocephalinae. The phylogenetic analyses indicated that the relationships among species of Anacanthorus reflect those of their serrasalmid hosts: the first subgroup includes a species specific to hosts assigned to Piaractus, a member of the "pacus" lineage; the second subgroup includes a species parasitizing the "Myleus-like pacus" lineage; and the third subgroup includes species parasitizing the lineage of the "true piranhas". We suggest that Anacanthorus and their serrasalmid hosts can be considered a useful model to assess host-parasite biogeography and coevolution in the neotropics. However, future studies focusing on a wider spectrum of host species and their specific Anacanthorus spp. are needed in order to investigate coevolution in this highly diversified system.

摘要

棘头虫(棘头虫亚科)是新热带地区单殖吸虫中最具物种多样性和最常见的属之一,但我们对其多样性和系统发育仍知之甚少。我们进行了分子序列的系统发育分析,以研究寄生在来自两个巴西流域的锯齿鲑科鱼类的棘头虫属 spp. 在棘头虫科中的系统发育位置。我们获得了 9 种棘头虫和寄生在锯齿鲑科鱼类的 Mymarothecium viatorum 的部分 28S rDNA 序列,并将其与其他棘头虫科成员的已发表序列一起纳入系统发育重建。系统发育分析支持棘头虫亚科的单系性。棘头虫亚科(本研究中以棘头虫属 spp. 为代表)形成了一个单系群,与一个仅包含淡水 Ancyrocephalinae 和 Ancylodiscoidinae 物种的大支系一起包含在内。Mymarothecium viatorum(Ancyrocephalinae)被置于淡水 Ancyrocephalinae 支系内。系统发育分析表明,棘头虫属 spp. 的种间关系反映了它们的锯齿鲑科宿主的关系:第一个亚组包括一种特定于宿主的物种,该宿主被分配到 Piaractus,即“pacus”谱系的一员;第二个亚组包括一种寄生在“Myleus-like pacus”谱系的物种;第三个亚组包括寄生在“真正的食人鱼”谱系的物种。我们建议,棘头虫属及其锯齿鲑科宿主可以被视为评估新热带地区宿主-寄生虫生物地理学和协同进化的有用模型。然而,为了研究这个高度多样化系统中的协同进化,未来需要进行更多关注宿主物种多样性及其特定棘头虫属 spp. 的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d25/6650203/efa8ead7283f/parasite-26-44-fig1.jpg

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