Genetic Structure of Juvenile Stages of Phocanema bulbosum (Nematoda, Chromadorea: Anisakidae) Parasitizing Commercial Fish, Atlantic Cod Gadus morhua, and American Plaice Hippoglossoides platessoides in the Barents Sea

Author:

Gordeev Ilya I.12ORCID,Bakay Yuri I.3ORCID,Kalashnikova Marina Yu.3,Logvinenko Andrey D.2ORCID,Emelianova Olga R.45ORCID,Sokolov Sergey G.6ORCID

Affiliation:

1. Pacific Salmon Department, Russian Federal Research Institute of Fisheries and Oceanography, Okruzhnoy Proyezd 19, 105187 Moscow, Russia

2. Department of Invertebrate Zoology, Faculty of Biology, Lomonosov Moscow State University, Leninskie Gory 1/12, 119234 Moscow, Russia

3. Laboratory of Aquaculture and Hydrobionts Diseases, Polar Branch of the Russian Federal Research Institute of Fisheries and Oceanography, Akademika Knipovicha Srt. 6, 183038 Murmansk, Russia

4. Molecular Genetics Department, Russian Federal Research Institute of Fisheries and Oceanography, Okruzhnoy Proyezd 19, 105187 Moscow, Russia

5. Department of Biological Evolution, Faculty of Biology, Lomonosov Moscow State University, Leninskie Gory 1/12, 119234 Moscow, Russia

6. Center of Parasitology, A.N. Severtsov Institute of Ecology and Evolution, Russian Academy of Sciences, Leninskiy Pros. 33, 119071 Moscow, Russia

Abstract

Atlantic cod Gadus morhua and American plaice Hippoglossoides platessoides are two of the most commercially valuable species in the Barents Sea (FAO Area 27). They are considered as an important but neglected source of zoonotic risk associated with nematodes from the genus Phocanema. The abundance of Phocanema spp. in a fish host individual in the Barents Sea may be quite high, which is convenient for studying the genetic structure of its populations. A total of 69 third-stage juveniles of Phocanema spp. were isolated from the liver, the mesentery, and the musculature of G. morhua and H. platessoides and genotyped by the mtDNA Cox2 gene. Almost all these juveniles (68) were molecularly identified as P. bulbosum. The mtDNA Cox2 gene was also used to reveal the haplotype diversity and the genetic structure of P. bulbosum. A comparison of the specimens examined in this study with each other and with the haplotypes previously identified by us in the White Sea showed that there were no significant differences between the groups from different hosts and from different catch areas.

Publisher

MDPI AG

Subject

Nature and Landscape Conservation,Agricultural and Biological Sciences (miscellaneous),Ecological Modeling,Ecology

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