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Journal Article

Molecular systematics of threadfin breams and relatives (Teleostei, Nemipteridae)

Kuo‐Wei Hung; Barry C. Russell; Wei‐Jen Chen
Zoologica Scripta · Vol. 46, Issue 5 · pp. 536-551 · 2017

Abstract

Threadfin breams and relatives of the family Nemipteridae comprise 69 currently recognized species in five genera. They are found in the tropical and subtropical Indo‐West Pacific and most are commercially important. Using recently developed molecule‐based approaches exploiting DNA sequence variation among species/specimens, this study reconstructed a comprehensive phylogeny of the Nemipteridae, examined the validity of species and explored the cryptic diversity of the family, and tested previous phylogenetic hypotheses. A combined data set (105 taxa from 41 morphospecies) with newly determined sequences from two nuclear genes ( RAG 1 and RH ) and one mitochondrial gene ( COI ), and a data set with only COI gene sequences (329 newly obtained plus 328 from public databases from a total of 53 morphospecies) were used in the phylogenetic analysis. The latter was further used for species delimitation analyses with two different tools to explore species diversity. Our phylogenetic results showed that all the currently recognized genera were monophyletic. The monotypic genus Scaevius is the sister group of Pentapodus and they together are sister to Nemipterus . These three genera combined to form the sister group of the clade comprising Parascolopsis and Scolopsis . The validity of most of the examined species was confirmed except in some cases. The combined evidence from the results of different analyses revealed a gap in our existing knowledge of species diversity in the Nemipteridae. We found several currently recognized species contain multiple separately evolving metapopulation lineages within species; some lineages should be considered as new species for further assignment. Finally, some problematic sequences deposited in public databases (probably due to misidentification) were also revised in this study to improve the accuracy for prospective DNA barcoding work on nemipterid fishes.

Bibliographic Information

JournalZoologica Scripta
PublisherWiley
Publication Date2017-09-01
Publication Year2017
Volume46
Issue5
Pages536-551
Document TypeJournal Article
Print ISSN0300-3256
eISSN1463-6409
DOI10.1111/zsc.12237
SubjectZoology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14636409
Publisher PageOpen Publisher Page
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