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Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures

BACKGROUND: In order to understand the role of herbivores in trophic webs, it is essential to know what they feed on. Diet analysis is, however, a challenge in many small herbivores with a secretive life style. In this paper, we compare novel (high-throughput pyrosequencing) DNA barcoding technology...

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Autores principales: Soininen, Eeva M, Valentini, Alice, Coissac, Eric, Miquel, Christian, Gielly, Ludovic, Brochmann, Christian, Brysting, Anne K, Sønstebø, Jørn H, Ims, Rolf A, Yoccoz, Nigel G, Taberlet, Pierre
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2736939/
https://www.ncbi.nlm.nih.gov/pubmed/19695081
http://dx.doi.org/10.1186/1742-9994-6-16
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author Soininen, Eeva M
Valentini, Alice
Coissac, Eric
Miquel, Christian
Gielly, Ludovic
Brochmann, Christian
Brysting, Anne K
Sønstebø, Jørn H
Ims, Rolf A
Yoccoz, Nigel G
Taberlet, Pierre
author_facet Soininen, Eeva M
Valentini, Alice
Coissac, Eric
Miquel, Christian
Gielly, Ludovic
Brochmann, Christian
Brysting, Anne K
Sønstebø, Jørn H
Ims, Rolf A
Yoccoz, Nigel G
Taberlet, Pierre
author_sort Soininen, Eeva M
collection PubMed
description BACKGROUND: In order to understand the role of herbivores in trophic webs, it is essential to know what they feed on. Diet analysis is, however, a challenge in many small herbivores with a secretive life style. In this paper, we compare novel (high-throughput pyrosequencing) DNA barcoding technology for plant mixture with traditional microhistological method. We analysed stomach contents of two ecologically important subarctic vole species, Microtus oeconomus and Myodes rufocanus, with the two methods. DNA barcoding was conducted using the P6-loop of the chloroplast trnL (UAA) intron. RESULTS: Although the identified plant taxa in the diets matched relatively well between the two methods, DNA barcoding gave by far taxonomically more detailed results. Quantitative comparison of results was difficult, mainly due to low taxonomic resolution of the microhistological method, which also in part explained discrepancies between the methods. Other discrepancies were likely due to biases mostly in the microhistological analysis. CONCLUSION: We conclude that DNA barcoding opens up for new possibilities in the study of plant-herbivore interactions, giving a detailed and relatively unbiased picture of food utilization of herbivores.
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spelling pubmed-27369392009-09-03 Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures Soininen, Eeva M Valentini, Alice Coissac, Eric Miquel, Christian Gielly, Ludovic Brochmann, Christian Brysting, Anne K Sønstebø, Jørn H Ims, Rolf A Yoccoz, Nigel G Taberlet, Pierre Front Zool Research BACKGROUND: In order to understand the role of herbivores in trophic webs, it is essential to know what they feed on. Diet analysis is, however, a challenge in many small herbivores with a secretive life style. In this paper, we compare novel (high-throughput pyrosequencing) DNA barcoding technology for plant mixture with traditional microhistological method. We analysed stomach contents of two ecologically important subarctic vole species, Microtus oeconomus and Myodes rufocanus, with the two methods. DNA barcoding was conducted using the P6-loop of the chloroplast trnL (UAA) intron. RESULTS: Although the identified plant taxa in the diets matched relatively well between the two methods, DNA barcoding gave by far taxonomically more detailed results. Quantitative comparison of results was difficult, mainly due to low taxonomic resolution of the microhistological method, which also in part explained discrepancies between the methods. Other discrepancies were likely due to biases mostly in the microhistological analysis. CONCLUSION: We conclude that DNA barcoding opens up for new possibilities in the study of plant-herbivore interactions, giving a detailed and relatively unbiased picture of food utilization of herbivores. BioMed Central 2009-08-20 /pmc/articles/PMC2736939/ /pubmed/19695081 http://dx.doi.org/10.1186/1742-9994-6-16 Text en Copyright © 2009 Soininen et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Soininen, Eeva M
Valentini, Alice
Coissac, Eric
Miquel, Christian
Gielly, Ludovic
Brochmann, Christian
Brysting, Anne K
Sønstebø, Jørn H
Ims, Rolf A
Yoccoz, Nigel G
Taberlet, Pierre
Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title_full Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title_fullStr Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title_full_unstemmed Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title_short Analysing diet of small herbivores: the efficiency of DNA barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
title_sort analysing diet of small herbivores: the efficiency of dna barcoding coupled with high-throughput pyrosequencing for deciphering the composition of complex plant mixtures
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2736939/
https://www.ncbi.nlm.nih.gov/pubmed/19695081
http://dx.doi.org/10.1186/1742-9994-6-16
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