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Free-living marine nematodes diversity at Ponta Delgada-São Miguel (Azores archipelago, North-East Atlantic Ocean): first results from shallow soft-bottom habitats

Alberto de Jesús Navarrete, Víctor Aramayo, Anitha Mary Davidson, Ana Cristina Costa
doi: https://doi.org/10.1101/2020.09.09.289918
Alberto de Jesús Navarrete
1Systematic and Aquatic Ecology Department, El Colegio de la Frontera Sur, Unidad Chetumal, México. Av. Centenario km 5.5, Chetumal Quintana Roo, México
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  • For correspondence: anavarre@ecosur.mx
Víctor Aramayo
2Facultad de Ciencias Biológicas, Universidad Nacional Mayor de San Marcos, P.O. BOX 1898, Lima 100, Peru
3Dirección de Oceanografía y Cambio Climático. Instituto del Mar del Perú, P.O. BOX 22, Callao, Peru
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Anitha Mary Davidson
4School of Ocean Studies and Technology, Kerala University of Fisheries and Ocean Studies, Panangad PO Kochi 682506, Kerala India. CSIR-National Institute of Oceanography, Regional Centre, Kochi-682018, Kerala India
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Ana Cristina Costa
5Faculdade de Ciências e Tecnologia e CIBIO/InBio – Centro de Investigação em Biodiverdade e Recursos Genéticos, Universidade dos Açores
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Abstract

Contrasting (sand, algae, rocky-dominated, mixed) benthic habitats were sampled to characterize marine nematode diversity inhabiting surface sediments in São Miguel (Azores, North-East Atlantic Ocean) in July 2019. Nematodes were extracted from the surface layer of sediments and morphologically identified using light microscopy. Nematode taxonomy was based on living/fresh specimens) to ensure a suitable recognition of morphological traits. Our results provide a preliminary checklist of free-living marine nematode genera from 21 intertidal and sublittoral sandy beach sites along the coast of São Miguel island, Azores archipelago, Portugal. The nematode fauna was represented by 4 orders, 21 families, and 43 genera. Cyatholaimus, Desmodora and Daptonema had two morphospecies each. Enoplida was represented by 8 families and 13 genera, while Chromadorida by 7 families and 18 genera, the latter corresponding to the most diverse nematode group. Monhysterida had 5 families and 10 genera and Araeolaimida was represented by a single 1 family and 2 genera. The most common genera (i.e., accounting for 75% of all organisms) included Adoncholaimus (most abundant genus, 32 specimens), Axonolaimus (18), Cyatholaimus (17), Enoploides (13), Rhabdocoma, and Acanthopharynx (11). Viscosia and Enoplolaimus were represented by 7 specimens, whilst Halalaimus, Desmoscolex, Monophostia, Daptonema, and Theristus obtained only 6 each. The dominant nematode taxa of São Miguel island have been commonly previously reported in other coastal habitats including sandy beaches. They can be considered typical meiofaunal components of intertidal sandy beaches. Many of the nematode morphotypes found in São Miguel island could represent new species to science. As far as we know, this is the first report on free-living nematodes for São Miguel Island and for marine shallow water in the Azores. Our findings will serve as an import baseline for future research aiming to improve our understating of nematode communities in volcanic islands such as São Miguel in the Azores archipelago.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted September 10, 2020.
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Free-living marine nematodes diversity at Ponta Delgada-São Miguel (Azores archipelago, North-East Atlantic Ocean): first results from shallow soft-bottom habitats
Alberto de Jesús Navarrete, Víctor Aramayo, Anitha Mary Davidson, Ana Cristina Costa
bioRxiv 2020.09.09.289918; doi: https://doi.org/10.1101/2020.09.09.289918
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Free-living marine nematodes diversity at Ponta Delgada-São Miguel (Azores archipelago, North-East Atlantic Ocean): first results from shallow soft-bottom habitats
Alberto de Jesús Navarrete, Víctor Aramayo, Anitha Mary Davidson, Ana Cristina Costa
bioRxiv 2020.09.09.289918; doi: https://doi.org/10.1101/2020.09.09.289918

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