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首页> 外文期刊>International Journal for Parasitology: Parasites and Wildlife >Pinworms of the red howler monkey (Alouatta seniculus) in Colombia: Gathering the pieces of the pinworm-primate puzzle
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Pinworms of the red howler monkey (Alouatta seniculus) in Colombia: Gathering the pieces of the pinworm-primate puzzle

机译:红色咆哮猴(阿努特塔森林)在哥伦比亚的皮肤:收集Pinworm-Pimlion难题的碎片

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Pinworms of primates are believed to be highly host specific parasites, forming co-evolutionary associations with their hosts. In order to assess the strength and reach of such evolutionary links, we need to have a broad understanding of the pinworm diversity associated with primates. Here, we employed an integrative taxonomic approach to assess pinworm diversity in red howler monkeys in Colombia. Molecular and morphological evidence validate the presence of at least four different species of Trypanoxyuris occurring in red howler monkeys: T. minutus , a widely distributed species, and three new species, T. seunimiii n. sp., T. kemuimae n. sp. and T. kotudoi n. sp. The mitochondrial COI gene and the 28S ribosomal gene were used for phylogenetic assessments through Bayesian inference. The three new species were morphologically distinct and formed reciprocally monophyletic lineages. Further molecular lineage subdivision in T. minutus and T. kotudoi n. sp. without morphological correspondence, suggests the potential scenario for the existence of cryptic species. Phylogenetic relationships imply that the different species of Trypanoxyuris occurring in each howler monkey species were acquired through independent colonization events. On-going efforts to uncover pinworm diversity will allow us to test the degree of host specificity and the co-phylogenetic hypothesis, as well as to further unravel the primate-pinworm evolutionary history puzzle.
机译:引发物的皮虫被认为是高度宿主特异性寄生虫,与其宿主形成共同进化的关联。为了评估这种进化链接的强度和覆盖力,我们需要广泛了解与灵长类动物相关的捕虫多样性。在这里,我们采用了一种综合的分类方法来评估哥伦比亚红豪氏猴的食丝多样性。分子和形态证据验证了在红吼猴中发生了至少四种不同种类的胰蛋白酶尿精:T.Minutus,一种广泛分布的物种和三种新物种T. Seunimiii n。 sp。,t.kemuimae n。 sp。和T. Kotudoi n。 sp。线粒体COI基因和28S核糖体基因用于通过贝叶斯推理进行系统发育评估。三种新物种在形态上是不同的,形成的相互作用的单晶体。在T.Minutus和T.Kotudoi n中的其他分子谱系细分。 sp。没有形态对应,表明隐秘物种存在的潜在情景。系统发育关系意味着通过独立的定植事件获得每个呼吸猴种类发生的不同种类的胰蛋白酶尿。揭示吞噬子变化的持续努力将使我们能够测试宿主特异性和共同系统发育假设的程度,以及进一步解开灵长类动物进化历史难题。

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