Projects per year
Abstract
Mitochondrial DNA barcodes provide a simple taxonomic tool for systematic and
ecological research, with particular benefit for poorly studied or species-rich taxa. Barcoding assumes genetic diversity follows species boundaries; however, many processes disrupt species-level monophyly of barcodes leading to incorrect classifications. Spatial population structure, particularly when shared across closely related and potentially hybridizing taxa, can invalidate barcoding approaches yet few data exist to examine its impacts. We test how shared population structure across hybridizing species impacts upon mitochondrial barcodes by sequencing the cytochrome b gene for 518 individuals of four well-delimited Western Palaearctic gallwasp species within the Andricus quercuscalicis species group. Mitochondrial barcodes clustered individuals into mixed-species clades corresponding to refugia, with no difference in within- and between-species divergence. Four nuclear genes were also sequenced from 4 to 11 individuals per refugial population of each species. Multi-locus analyses of these data supported established species, with no support for the refugial clustering across species seen in mitochondrial barcodes. This pattern is consistent with mitochondrial introgression among populations of species sharing the same glacial refugium, such that mitochondrial barcodes identify a shared history of population structure rather than species. Many taxa show phylogeographic structure across glacial refugia, suggesting that mitochondrial barcoding may fail when applied to other sets of co-distributed, closely related species. Robust barcoding approaches must sample extensively across population structure to disentangle spatial from species-level variation. Methods incorporating
multiple unlinked loci are also essential to accommodate coalescent variation among genes and provide power to resolve recently diverged species.
ecological research, with particular benefit for poorly studied or species-rich taxa. Barcoding assumes genetic diversity follows species boundaries; however, many processes disrupt species-level monophyly of barcodes leading to incorrect classifications. Spatial population structure, particularly when shared across closely related and potentially hybridizing taxa, can invalidate barcoding approaches yet few data exist to examine its impacts. We test how shared population structure across hybridizing species impacts upon mitochondrial barcodes by sequencing the cytochrome b gene for 518 individuals of four well-delimited Western Palaearctic gallwasp species within the Andricus quercuscalicis species group. Mitochondrial barcodes clustered individuals into mixed-species clades corresponding to refugia, with no difference in within- and between-species divergence. Four nuclear genes were also sequenced from 4 to 11 individuals per refugial population of each species. Multi-locus analyses of these data supported established species, with no support for the refugial clustering across species seen in mitochondrial barcodes. This pattern is consistent with mitochondrial introgression among populations of species sharing the same glacial refugium, such that mitochondrial barcodes identify a shared history of population structure rather than species. Many taxa show phylogeographic structure across glacial refugia, suggesting that mitochondrial barcoding may fail when applied to other sets of co-distributed, closely related species. Robust barcoding approaches must sample extensively across population structure to disentangle spatial from species-level variation. Methods incorporating
multiple unlinked loci are also essential to accommodate coalescent variation among genes and provide power to resolve recently diverged species.
| Original language | English |
|---|---|
| Journal | Molecular Ecology |
| DOIs | |
| Publication status | Published - 2012 |
Keywords / Materials (for Non-textual outputs)
- DNA barcoding
- introgression
- multi-locus
- spatial population structure
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Dive into the research topics of 'Mitochondrial barcodes are diagnostic of shared refugia but not species in hybridising oak gallwasps'. Together they form a unique fingerprint.Projects
- 4 Finished
-
NERC Biomolecular Analysis Facility (NBAF)
Blaxter, M. (Principal Investigator)
1/04/11 → 31/03/16
Project: Research
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Julja Ernst CASE studentship: COMMUNITY ASSEMBLY OVER EVOLUTIONARY AND ECOLOGICAL TIMESCALES: GALLWASPS AS A MODEL SYSTEM
Stone, G. (Principal Investigator)
1/03/11 → 28/02/14
Project: Research
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CLIMAFO: Climate change and management of forest biodiversity: predicting the impacts of climate matching strategies
Stone, G. (Principal Investigator)
1/01/10 → 31/12/12
Project: Research
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