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DNA Barcoding the Native Flowering Plants and Conifers of Wales

We present the first national DNA barcode resource that covers the native flowering plants and conifers for the nation of Wales (1143 species). Using the plant DNA barcode markers rbcL and matK, we have assembled 97.7% coverage for rbcL, 90.2% for matK, and a dual-locus barcode for 89.7% of the nati...

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Autores principales: de Vere, Natasha, Rich, Tim C. G., Ford, Col R., Trinder, Sarah A., Long, Charlotte, Moore, Chris W., Satterthwaite, Danielle, Davies, Helena, Allainguillaume, Joel, Ronca, Sandra, Tatarinova, Tatiana, Garbett, Hannah, Walker, Kevin, Wilkinson, Mike J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368937/
https://www.ncbi.nlm.nih.gov/pubmed/22701588
http://dx.doi.org/10.1371/journal.pone.0037945
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author de Vere, Natasha
Rich, Tim C. G.
Ford, Col R.
Trinder, Sarah A.
Long, Charlotte
Moore, Chris W.
Satterthwaite, Danielle
Davies, Helena
Allainguillaume, Joel
Ronca, Sandra
Tatarinova, Tatiana
Garbett, Hannah
Walker, Kevin
Wilkinson, Mike J.
author_facet de Vere, Natasha
Rich, Tim C. G.
Ford, Col R.
Trinder, Sarah A.
Long, Charlotte
Moore, Chris W.
Satterthwaite, Danielle
Davies, Helena
Allainguillaume, Joel
Ronca, Sandra
Tatarinova, Tatiana
Garbett, Hannah
Walker, Kevin
Wilkinson, Mike J.
author_sort de Vere, Natasha
collection PubMed
description We present the first national DNA barcode resource that covers the native flowering plants and conifers for the nation of Wales (1143 species). Using the plant DNA barcode markers rbcL and matK, we have assembled 97.7% coverage for rbcL, 90.2% for matK, and a dual-locus barcode for 89.7% of the native Welsh flora. We have sampled multiple individuals for each species, resulting in 3304 rbcL and 2419 matK sequences. The majority of our samples (85%) are from DNA extracted from herbarium specimens. Recoverability of DNA barcodes is lower using herbarium specimens, compared to freshly collected material, mostly due to lower amplification success, but this is balanced by the increased efficiency of sampling species that have already been collected, identified, and verified by taxonomic experts. The effectiveness of the DNA barcodes for identification (level of discrimination) is assessed using four approaches: the presence of a barcode gap (using pairwise and multiple alignments), formation of monophyletic groups using Neighbour-Joining trees, and sequence similarity in BLASTn searches. These approaches yield similar results, providing relative discrimination levels of 69.4 to 74.9% of all species and 98.6 to 99.8% of genera using both markers. Species discrimination can be further improved using spatially explicit sampling. Mean species discrimination using barcode gap analysis (with a multiple alignment) is 81.6% within 10×10 km squares and 93.3% for 2×2 km squares. Our database of DNA barcodes for Welsh native flowering plants and conifers represents the most complete coverage of any national flora, and offers a valuable platform for a wide range of applications that require accurate species identification.
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spelling pubmed-33689372012-06-13 DNA Barcoding the Native Flowering Plants and Conifers of Wales de Vere, Natasha Rich, Tim C. G. Ford, Col R. Trinder, Sarah A. Long, Charlotte Moore, Chris W. Satterthwaite, Danielle Davies, Helena Allainguillaume, Joel Ronca, Sandra Tatarinova, Tatiana Garbett, Hannah Walker, Kevin Wilkinson, Mike J. PLoS One Research Article We present the first national DNA barcode resource that covers the native flowering plants and conifers for the nation of Wales (1143 species). Using the plant DNA barcode markers rbcL and matK, we have assembled 97.7% coverage for rbcL, 90.2% for matK, and a dual-locus barcode for 89.7% of the native Welsh flora. We have sampled multiple individuals for each species, resulting in 3304 rbcL and 2419 matK sequences. The majority of our samples (85%) are from DNA extracted from herbarium specimens. Recoverability of DNA barcodes is lower using herbarium specimens, compared to freshly collected material, mostly due to lower amplification success, but this is balanced by the increased efficiency of sampling species that have already been collected, identified, and verified by taxonomic experts. The effectiveness of the DNA barcodes for identification (level of discrimination) is assessed using four approaches: the presence of a barcode gap (using pairwise and multiple alignments), formation of monophyletic groups using Neighbour-Joining trees, and sequence similarity in BLASTn searches. These approaches yield similar results, providing relative discrimination levels of 69.4 to 74.9% of all species and 98.6 to 99.8% of genera using both markers. Species discrimination can be further improved using spatially explicit sampling. Mean species discrimination using barcode gap analysis (with a multiple alignment) is 81.6% within 10×10 km squares and 93.3% for 2×2 km squares. Our database of DNA barcodes for Welsh native flowering plants and conifers represents the most complete coverage of any national flora, and offers a valuable platform for a wide range of applications that require accurate species identification. Public Library of Science 2012-06-06 /pmc/articles/PMC3368937/ /pubmed/22701588 http://dx.doi.org/10.1371/journal.pone.0037945 Text en de Vere et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
de Vere, Natasha
Rich, Tim C. G.
Ford, Col R.
Trinder, Sarah A.
Long, Charlotte
Moore, Chris W.
Satterthwaite, Danielle
Davies, Helena
Allainguillaume, Joel
Ronca, Sandra
Tatarinova, Tatiana
Garbett, Hannah
Walker, Kevin
Wilkinson, Mike J.
DNA Barcoding the Native Flowering Plants and Conifers of Wales
title DNA Barcoding the Native Flowering Plants and Conifers of Wales
title_full DNA Barcoding the Native Flowering Plants and Conifers of Wales
title_fullStr DNA Barcoding the Native Flowering Plants and Conifers of Wales
title_full_unstemmed DNA Barcoding the Native Flowering Plants and Conifers of Wales
title_short DNA Barcoding the Native Flowering Plants and Conifers of Wales
title_sort dna barcoding the native flowering plants and conifers of wales
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368937/
https://www.ncbi.nlm.nih.gov/pubmed/22701588
http://dx.doi.org/10.1371/journal.pone.0037945
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