Literature DB >> 28130668

Ancient and modern genome shuffling: Reticulate mito-nuclear phylogeny of four related allopatric species of Gyrodactylus von Nordmann, 1832 (Monogenea: Gyrodactylidae), ectoparasites on the Eurasian minnow Phoxinus phoxinus (L.) (Cyprinidae).

Jaakko Lumme1, Marek S Ziętara2, Dar'ya Lebedeva3.   

Abstract

Phylogenetic analyses including four allopatric species of Gyrodactylus von Nordmann, 1832 on the Eurasian minnow Phoxinus phoxinus (L.) (Cyprinidae) revealed incongruence between the nuclear ITS1-5.8S-ITS2 and mitochondrial cox1 phylogenies due to ancient hybridisation. Gyrodactylus pannonicus Molnár, 1968 was sampled close to its type-locality, the upper reaches of River Tisza, tributary of Danube in the Black Sea Basin. Faunistic search detected three new related species with maximum composite likelihood distances in cox1 between 16.8-23.2% (tentatively 1.3 to 1.8 My of divergence). Gyrodactylus albolacustris n. sp. recorded in the White Sea Basin, eastern Baltic Basin and Mongolia was close to G. pannonicus in the nuclear ITS (divergence of 0.9%), but diverged in cox1 by 19.8%. The Mongolian isolate of G. albolacustris n. sp. diverged from the European isolates in cox1 by 8.9%, suggesting 0.7 My of isolation. The two other new species differed from G. pannonicus by >4% in ITS and some large indels in ITS1, and by >20% in cox1. Gyrodactylus danastriae n. sp. was found in River Strwiąż, a tributary of the River Dniester (Black Sea Basin) and was characterised by smaller size of anchors and by 29-41 bp dimorphic insertion in ITS1. Gyrodactylus botnicus n. sp. is considered endemic in the Baltic Basin, but was also found in the White Sea Basin as a postglacial immigrant, where it had hybridised with G. albolacustris n. sp. in spite of the high divergence in ITS (3.9%) and cox1 (22%). The discordant nuclear and mitochondrial phylogenies revealed an ancient mitochondrial introgression: G. albolacustris n. sp. was derived from a hybridisation combining proto-pannonicus ITS with proto-danastriae mitochondria, perhaps 1.3 My ago. The postglacial hybridisation of G. albolacustris n. sp. (as the donor of mtDNAalb and ITSalb) and G. botnicus n. sp. (donor of the ITSbot) offered a model of shuffling of the genomic components: the process of the homogenisation and stabilisation of nuclear ITS (concerted evolution) and the lineage sorting has hardly begun.

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Year:  2017        PMID: 28130668     DOI: 10.1007/s11230-016-9696-y

Source DB:  PubMed          Journal:  Syst Parasitol        ISSN: 0165-5752            Impact factor:   1.431


  39 in total

1.  Speciation by host switch and adaptive radiation in a fish parasite genus Gyrodactylus (Monogenea, Gyrodactylidae).

Authors:  Marek S Zietara; Jaakko Lumme
Journal:  Evolution       Date:  2002-12       Impact factor: 3.694

2.  Mitonuclear discordance is caused by rampant mitochondrial introgression in Neodiprion (Hymenoptera: Diprionidae) sawflies.

Authors:  Catherine R Linnen; Brian D Farrell
Journal:  Evolution       Date:  2007-06       Impact factor: 3.694

3.  Gyrodactylus eyipayipi sp. n. (Monogenea: Gyrodactylidae) from Syngnathus acus (Syngnathidae) from South Africa.

Authors:  David B Vaughan; Kevin W Christison; Haakon Hansen; Andrew P Shinn
Journal:  Folia Parasitol (Praha)       Date:  2010-03       Impact factor: 2.122

4.  Redescription of Gyrodactylus teuchis Lautraite, Blanc, Thiery, Daniel & Vigneulle, 1999 (Monogenea: Gyrodactylidae); a species identified by ribosomal RNA sequence.

Authors:  C O Cunningham; T A Mo; C M Collins; K Buchmann; R Thiery; G Blanc; A Lautraite
Journal:  Syst Parasitol       Date:  2001-02       Impact factor: 1.431

5.  Speciation and host-parasite relationships in the parasite genus Gyrodactylus (Monogenea, Platyhelminthes) infecting gobies of the genus Pomatoschistus (Gobiidae, Teleostei).

Authors:  Tine Huyse; Vanessa Audenaert; Filip A M Volckaert
Journal:  Int J Parasitol       Date:  2003-12       Impact factor: 3.981

6.  Initial steps of speciation by geographic isolation and host switch in salmonid pathogen Gyrodactylus salaris (Monogenea: Gyrodactylidae).

Authors:  Maria Meinilä; Jussi Kuusela; Marek S Zietara; Jaakko Lumme
Journal:  Int J Parasitol       Date:  2004-03-29       Impact factor: 3.981

7.  Escape from an evolutionary dead end: a triploid clone of Gyrodactylus salaris is able to revert to sex and switch host (Platyhelminthes, Monogenea, Gyrodactylidae).

Authors:  Marek S Zietara; Jussi Kuusela; Jaakko Lumme
Journal:  Hereditas       Date:  2006-12       Impact factor: 3.271

8.  Discrimination between Gyrodactylus salaris, G. derjavini and G. truttae (Platyhelminthes: Monogenea) using restriction fragment length polymorphisms and an oligonucleotide probe within the small subunit ribosomal RNA gene.

Authors:  C O Cunningham; D M McGillivray; K MacKenzie; W T Melvin
Journal:  Parasitology       Date:  1995-07       Impact factor: 3.234

9.  Co-Speciation of the Ectoparasite Gyrodactylus teuchis (Monogenea, Platyhelminthes) and Its Salmonid Hosts.

Authors:  Christoph Hahn; Steven J Weiss; Stojmir Stojanovski; Lutz Bachmann
Journal:  PLoS One       Date:  2015-06-16       Impact factor: 3.240

10.  Evidence for cryptic speciation in directly transmitted gyrodactylid parasites of Trinidadian guppies.

Authors:  Raquel Xavier; Patricia J Faria; Giuseppe Paladini; Cock van Oosterhout; Mireille Johnson; Jo Cable
Journal:  PLoS One       Date:  2015-01-09       Impact factor: 3.240

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  2 in total

1.  Species delimitation of Gyrodactylus (Monogenea: Gyrodactylidae) infecting the southernmost cyprinids (Actinopterygii: Cyprinidae) in the New World.

Authors:  Carlos Daniel Pinacho-Pinacho; Miguel Calixto-Rojas; Adriana García-Vásquez; Ismael Guzmán-Valdivieso; Juan J Barrios-Gutiérrez; Miguel Rubio-Godoy
Journal:  Parasitol Res       Date:  2021-01-06       Impact factor: 2.289

2.  Revision of Gyrodactylus salaris phylogeny inspired by new evidence for Eemian crossing between lineages living on grayling in Baltic and White sea basins.

Authors:  Agata Mieszkowska; Marcin Górniak; Agata Jurczak-Kurek; Marek S Ziętara
Journal:  PeerJ       Date:  2018-07-06       Impact factor: 2.984

  2 in total

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