Molecular data aids pinworm diagnosis in night monkeys (Aotus spp., Primates: Aotidae) with the resurrection of a Trypanoxyuris species (Nematoda: Oxyuridae).

Syst Parasitol

Laboratorio de Parasitología y Medicina de la Conservación, ENES-Mérida, Universidad Nacional Autónoma de México, Tablaje Catastral N°6998, Carretera Mérida-Tetiz Km. 4.5́, C.P 97357, Municipio de Ucú, Yucatán, Mexico.

Published: December 2023

AI Article Synopsis

  • * Previous studies suggested that observed differences were due to developmental stages rather than separate species, leading to the synonymization of T. interlabiata with T. microon.
  • * The research utilized an integrative taxonomy approach, revealing that the morphotypes are indeed distinct species, advocating for the reestablishment of T. interlabiata, and highlighting the importance of combining morphological and molecular data in studying pinworm diversity and evolution in primates

Article Abstract

Neotropical primates (Platyrrhines) are commonly parasitized by pinworm nematodes of the genus Trypanoxyuris Vevers, 1923. The taxonomic identity of Trypanoxyuris sampled in night monkeys (Aotus Iliger) has been rather controversial. Two species have been described, namely T. microon (Linstow, 1907) and T. interlabiata (Sandosham, 1950). The latter was synonymized with T. microon considering that the observed morphological differences corresponded to different developmental stages of the nematode rather than to differences between both species. Here, we used an integrative taxonomy approach, based on morphological and molecular data along with host identity, in order to assess the validity of both species. Our results evidenced that these different morphotypes correspond to different and reciprocally monophyletic groups; thus, we propose the resurrection of T. interlabiata. We redescribe both pinworm species using specimens sampled in Aotus monkeys from Colombia and discuss the advantages of combining molecular and morphological data to uncover pinworm diversity, and to understand the potential forces determining the diversification process in pinworms from platyrrhine primates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10725851PMC
http://dx.doi.org/10.1007/s11230-023-10134-zDOI Listing

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