Molecular phylogeny of Diplostomum, Tylodelphys, Austrodiplostomum and Paralaria (Digenea: Diplostomidae) necessitates systematic changes and reveals a history of evolutionary host switching events.
28S
Cox1
Diplostomidae
Diplostomum
Molecular phylogeny
Tylodelphys
Journal
International journal for parasitology
ISSN: 1879-0135
Titre abrégé: Int J Parasitol
Pays: England
ID NLM: 0314024
Informations de publication
Date de publication:
01 2022
01 2022
Historique:
received:
10
03
2021
revised:
04
06
2021
accepted:
15
06
2021
pubmed:
10
8
2021
medline:
9
4
2022
entrez:
9
8
2021
Statut:
ppublish
Résumé
The Diplostomidae Poirier, 1886 is a large, globally distributed family of digeneans parasitic in intestines of their definitive hosts. Diplostomum and Tylodelphys spp. are broadly distributed, commonly reported, and the most often sequenced diplostomid genera. The majority of published DNA sequences from these genera originated from larval stages only, which typically cannot be identified to the species level based on morphology alone. We generated partial large ribosomal subunit (28S) rRNA and cytochrome c oxidase subunit 1 (cox1) mtDNA gene sequences from 14 species/species-level lineages of Diplostomum, six species/species-level lineages of Tylodelphys, two species/species-level lineages of Austrodiplostomum, one species previously assigned to Paralaria, two species/species-level lineages of Dolichorchis and one unknown diplostomid. Our DNA sequences of 11 species/species-level lineages of Diplostomum (all identified to species), four species/species-level lineages of Tylodelphys (all identified to species), Austrodiplostomum compactum, Paralaria alarioides and Dolichorchis lacombeensis originated from adult specimens. 28S sequences were used for phylogenetic inference to demonstrate the position of Paralaria alarioides and Dolichorchis spp. within the Diplostomoidea and study the interrelationships of Diplostomum, Tylodelphys and Austrodiplostomum. Our results demonstrate that two diplostomids from the North American river otter (P. alarioides and a likely undescribed taxon) belong within Diplostomum. Further, our results demonstrate the non-monophyly of Tylodelphys due to the position of Austrodiplostomum spp., based on our phylogenetic analyses and morphology. Furthermore, the results of phylogenetic analysis of 28S confirmed the status of Dolichorchis as a separate genus. The phylogenies suggest multiple definitive host-switching events (birds to otters and among major avian groups) and a New World origin of Diplostomum and Tylodelphys spp. Our DNA sequences from adult digeneans revealed identities of 10 previously published lineages of Diplostomum and Tylodelphys, which were previously identified to genus only. The novel DNA data from this work provide opportunities for future comparisons of larval diplostomines collected in ecological studies.
Identifiants
pubmed: 34371018
pii: S0020-7519(21)00236-8
doi: 10.1016/j.ijpara.2021.06.002
pmc: PMC8742756
mid: NIHMS1740069
pii:
doi:
Substances chimiques
DNA, Mitochondrial
0
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Research Support, U.S. Gov't, Non-P.H.S.
Langues
eng
Sous-ensembles de citation
IM
Pagination
47-63Subventions
Organisme : NIGMS NIH HHS
ID : P20 GM103442
Pays : United States
Organisme : NIAID NIH HHS
ID : R15 AI092622
Pays : United States
Informations de copyright
Copyright © 2021 Australian Society for Parasitology. Published by Elsevier Ltd. All rights reserved.
Références
Int J Parasitol Parasites Wildl. 2014 Dec 30;4(1):11-21
pubmed: 25830100
Acta Trop. 2019 Nov;199:105082
pubmed: 31351070
Parasit Vectors. 2017 Dec 02;10(1):592
pubmed: 29197405
Int J Parasitol. 2013 Jan;43(1):57-72
pubmed: 23201234
Parasitol Res. 2019 Jan;118(1):203-217
pubmed: 30552574
Parasitol Res. 2015 Oct;114(10):3675-82
pubmed: 26122993
Parasit Vectors. 2015 Jun 19;8:336
pubmed: 26084797
Adv Parasitol. 2017;98:167-225
pubmed: 28942769
Parasitol Int. 2020 Jun;76:102033
pubmed: 31809881
Acta Parasitol. 2020 Jun;65(2):525-534
pubmed: 31919798
Int J Parasitol. 2017 May;47(6):327-345
pubmed: 28315362
J Helminthol. 2017 May;91(3):332-345
pubmed: 27225234
Int J Parasitol. 2010 Mar 1;40(3):333-43
pubmed: 19737570
Rev Suisse Zool. 1969 Mar;76(1):3-21
pubmed: 5406017
J Helminthol. 2021 Feb 11;95:e6
pubmed: 33568246
Parasitol Res. 2019 May;118(5):1403-1416
pubmed: 30911913
J Wildl Dis. 2014 Jan;50(1):42-9
pubmed: 24171572
Parasitol Res. 2006 Sep;99(4):341-5
pubmed: 16565817
Mol Ecol Resour. 2009 May;9 Suppl s1:75-82
pubmed: 21564967
Syst Parasitol. 2020 Oct;97(5):409-439
pubmed: 32813221
Parasitol Int. 2021 Aug;83:102329
pubmed: 33753234
Acta Parasitol. 2018 Sep 25;63(3):444-453
pubmed: 29975660
Science. 2006 Apr 21;312(5772):384-8
pubmed: 16627734
Parasitol Res. 2019 Oct;118(10):2781-2787
pubmed: 31493063
J Parasitol. 2019 Oct;105(5):704-717
pubmed: 31580785
J Parasitol. 2019 Feb;105(1):102-112
pubmed: 30807727
Int J Parasitol. 2018 Nov;48(13):1043-1059
pubmed: 30347194
Rev Suisse Zool. 1970;77(4):663-85
pubmed: 5517147
Parasit Vectors. 2014 Nov 12;7:502
pubmed: 25388753
Parasitol Res. 2021 May;120(5):1687-1697
pubmed: 33655349
Int J Parasitol Parasites Wildl. 2018 May 06;7(2):171-179
pubmed: 29988865
Ecohealth. 2018 Dec;15(4):827-839
pubmed: 30120669
J Parasitol. 1999 Jun;85(3):531-3
pubmed: 10386448
Ecol Evol. 2019 Feb 28;9(6):3153-3238
pubmed: 30962888
J Parasitol. 1989 Feb;75(1):21-32
pubmed: 2918441
Syst Parasitol. 2015 Mar;90(3):221-30
pubmed: 25693456
Int J Parasitol. 2015 Nov;45(13):841-55
pubmed: 26276524
Parasitology. 2013 Apr;140(4):509-20
pubmed: 23279837
Int J Parasitol. 2014 Sep;44(10):703-15
pubmed: 24929135
PLoS One. 2014 Mar 19;9(3):e92075
pubmed: 24647410
Parasitol Int. 2006 Mar;55(1):7-10
pubmed: 16126453
Parasitol Res. 2016 Nov;115(11):4365-4378
pubmed: 27539726
Iran J Parasitol. 2016 Jul-Sep;11(3):429-430
pubmed: 28127353
Int J Parasitol. 2003 Jul;33(7):733-55
pubmed: 12814653
Parasitol Int. 2014 Apr;63(2):315-23
pubmed: 24309555
Int J Parasitol Parasites Wildl. 2019 Dec 16;11:50-61
pubmed: 31908920
Bioinformatics. 2003 Aug 12;19(12):1572-4
pubmed: 12912839
J Parasitol. 2021 May 1;107(3):455-462
pubmed: 34086924
Infect Genet Evol. 2013 Jul;17:62-70
pubmed: 23542455
J Helminthol. 2019 Jul 23;94:e66
pubmed: 31331402
Sci Rep. 2021 Feb 9;11(1):3440
pubmed: 33564005
J Parasitol. 2019 Oct;105(5):821-826
pubmed: 31670613
J Helminthol. 2016 Mar;90(2):174-85
pubmed: 25735970
Parasitol Res. 2020 Jul;119(7):2129-2137
pubmed: 32472382
Parasitol Res. 2019 Jul;118(7):2169-2182
pubmed: 31183598
Parasitology. 2004 Jul;129(Pt 1):87-92
pubmed: 15267115
Parasitol Res. 2016 Oct;115(10):3867-80
pubmed: 27245072
Parasitol Res. 2016 Oct;115(10):3923-39
pubmed: 27283961
J Parasitol. 2016 Apr;102(2):260-74
pubmed: 26741049
Parasitology. 2003 Mar;126(Pt 3):203-24
pubmed: 12666879
Parasit Vectors. 2015 Jun 03;8:300
pubmed: 26036245
Syst Parasitol. 2017 Oct;94(8):833-848
pubmed: 28822036
Mol Biol Evol. 2016 Jul;33(7):1870-4
pubmed: 27004904
Parasitol Int. 2020 Dec;79:102166
pubmed: 32603866
Mol Ecol. 2010 Jul;19(13):2813-27
pubmed: 20561195
J Parasitol. 1964 Dec;50:717-20
pubmed: 14244801
Zool Scr. 2019 Jul;48(4):545-556
pubmed: 31937984
Syst Parasitol. 2014 Nov;89(3):195-213
pubmed: 25301510
Syst Parasitol. 2003 Sep;56(1):1-15
pubmed: 12975618