DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits

Abstract Background Various methods have been proposed to assign unknown specimens to known species using their DNA barcodes, while others have focused on using genetic divergence thresholds to estimate “species” diversity for a taxon, without a well-developed taxonomy and/or an extensive reference...

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Published in:BMC Ecology
Main Authors: Renaud, Anais K, Savage, Jade, Adamowicz, Sarah J
Format: Article in Journal/Newspaper
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/1993/14396
https://doi.org/10.1186/1472-6785-12-24
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spelling ftunivmanitoba:oai:mspace.lib.umanitoba.ca:1993/14396 2023-06-18T03:40:12+02:00 DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits Renaud, Anais K Savage, Jade Adamowicz, Sarah J 2013-01-04T04:21:22Z text/xml application/pdf application/octet-stream http://hdl.handle.net/1993/14396 https://doi.org/10.1186/1472-6785-12-24 en eng BMC Ecology. 2012 Nov 23;12(1):24 http://hdl.handle.net/1993/14396 http://dx.doi.org/10.1186/1472-6785-12-24 open access Anaïs K Renaud et al.; licensee BioMed Central Ltd. Journal Article 2013 ftunivmanitoba https://doi.org/10.1186/1472-6785-12-24 2023-06-04T17:37:56Z Abstract Background Various methods have been proposed to assign unknown specimens to known species using their DNA barcodes, while others have focused on using genetic divergence thresholds to estimate “species” diversity for a taxon, without a well-developed taxonomy and/or an extensive reference library of DNA barcodes. The major goals of the present work were to: a) conduct the largest species-level barcoding study of the Muscidae to date and characterize the range of genetic divergence values in the northern Nearctic fauna; b) evaluate the correspondence between morphospecies and barcode groupings defined using both clustering-based and threshold-based approaches; and c) use the reference library produced to address taxonomic issues. Results Our data set included 1114 individuals and their COI sequences (951 from Churchill, Manitoba), representing 160 morphologically-determined species from 25 genera, covering 89% of the known fauna of Churchill and 23% of the Nearctic fauna. Following an iterative process through which all specimens belonging to taxa with anomalous divergence values and/or monophyly issues were re-examined, identity was modified for 9 taxa, including the reinstatement of Phaonia luteva (Walker) stat. nov. as a species distinct from Phaonia errans (Meigen). In the post-reassessment data set, no distinct gap was found between maximum pairwise intraspecific distances (range 0.00-3.01%) and minimum interspecific distances (range: 0.77-11.33%). Nevertheless, using a clustering-based approach, all individuals within 98% of species grouped with their conspecifics with high (>95%) bootstrap support; in contrast, a maximum species discrimination rate of 90% was obtained at the optimal threshold of 1.2%. DNA barcoding enabled the determination of females from 5 ambiguous species pairs and confirmed that 16 morphospecies were genetically distinct from named taxa. There were morphological differences among all distinct genetic clusters; thus, no cases of cryptic species were detected. Conclusions ... Article in Journal/Newspaper Churchill MSpace at the University of Manitoba BMC Ecology 12 1 24
institution Open Polar
collection MSpace at the University of Manitoba
op_collection_id ftunivmanitoba
language English
description Abstract Background Various methods have been proposed to assign unknown specimens to known species using their DNA barcodes, while others have focused on using genetic divergence thresholds to estimate “species” diversity for a taxon, without a well-developed taxonomy and/or an extensive reference library of DNA barcodes. The major goals of the present work were to: a) conduct the largest species-level barcoding study of the Muscidae to date and characterize the range of genetic divergence values in the northern Nearctic fauna; b) evaluate the correspondence between morphospecies and barcode groupings defined using both clustering-based and threshold-based approaches; and c) use the reference library produced to address taxonomic issues. Results Our data set included 1114 individuals and their COI sequences (951 from Churchill, Manitoba), representing 160 morphologically-determined species from 25 genera, covering 89% of the known fauna of Churchill and 23% of the Nearctic fauna. Following an iterative process through which all specimens belonging to taxa with anomalous divergence values and/or monophyly issues were re-examined, identity was modified for 9 taxa, including the reinstatement of Phaonia luteva (Walker) stat. nov. as a species distinct from Phaonia errans (Meigen). In the post-reassessment data set, no distinct gap was found between maximum pairwise intraspecific distances (range 0.00-3.01%) and minimum interspecific distances (range: 0.77-11.33%). Nevertheless, using a clustering-based approach, all individuals within 98% of species grouped with their conspecifics with high (>95%) bootstrap support; in contrast, a maximum species discrimination rate of 90% was obtained at the optimal threshold of 1.2%. DNA barcoding enabled the determination of females from 5 ambiguous species pairs and confirmed that 16 morphospecies were genetically distinct from named taxa. There were morphological differences among all distinct genetic clusters; thus, no cases of cryptic species were detected. Conclusions ...
format Article in Journal/Newspaper
author Renaud, Anais K
Savage, Jade
Adamowicz, Sarah J
spellingShingle Renaud, Anais K
Savage, Jade
Adamowicz, Sarah J
DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
author_facet Renaud, Anais K
Savage, Jade
Adamowicz, Sarah J
author_sort Renaud, Anais K
title DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
title_short DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
title_full DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
title_fullStr DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
title_full_unstemmed DNA barcoding of Northern Nearctic Muscidae (Diptera) reveals high correspondence between morphological and molecular species limits
title_sort dna barcoding of northern nearctic muscidae (diptera) reveals high correspondence between morphological and molecular species limits
publishDate 2013
url http://hdl.handle.net/1993/14396
https://doi.org/10.1186/1472-6785-12-24
genre Churchill
genre_facet Churchill
op_relation BMC Ecology. 2012 Nov 23;12(1):24
http://hdl.handle.net/1993/14396
http://dx.doi.org/10.1186/1472-6785-12-24
op_rights open access
Anaïs K Renaud et al.; licensee BioMed Central Ltd.
op_doi https://doi.org/10.1186/1472-6785-12-24
container_title BMC Ecology
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container_issue 1
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