use of approximate Bayesian computation in conservation genetics and its application in a case study on yellow-eyed penguins

The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally in population genetics, known as approximate Bayesian computation (ABC), has been shown to be particularly useful for the estimation of such...

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Published inConservation genetics Vol. 11; no. 2; pp. 421 - 433
Main Authors Lopes, Joao S, Boessenkool, Sanne
Format Journal Article
LanguageEnglish
Published Dordrecht Dordrecht : Springer Netherlands 01.04.2010
Springer Netherlands
Springer Nature B.V
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Abstract The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally in population genetics, known as approximate Bayesian computation (ABC), has been shown to be particularly useful for the estimation of such parameters. These methods do not need to evaluate likelihood functions analytically and can therefore be used even while assuming complex models. In this paper we describe the ABC approach and identify specific parts of its algorithm that are being the subject of intensive studies in order to further expand its usability. Furthermore, we discuss applications of this Bayesian algorithm in conservation studies, providing insights on the potentialities of these tools. Finally, we present a case study in which we use a simple Isolation-Migration model to estimate a number of demographic parameters of two populations of yellow-eyed penguins (Megadyptes antipodes) in New Zealand. The resulting estimates confirm our current understanding of M. antipodes dynamic, demographic history and provide new insights into the expansion this species has undergone during the last centuries.
AbstractList The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally in population genetics, known as approximate Bayesian computation (ABC), has been shown to be particularly useful for the estimation of such parameters. These methods do not need to evaluate likelihood functions analytically and can therefore be used even while assuming complex models. In this paper we describe the ABC approach and identify specific parts of its algorithm that are being the subject of intensive studies in order to further expand its usability. Furthermore, we discuss applications of this Bayesian algorithm in conservation studies, providing insights on the potentialities of these tools. Finally, we present a case study in which we use a simple Isolation-Migration model to estimate a number of demographic parameters of two populations of yellow-eyed penguins (Megadyptes antipodes) in New Zealand. The resulting estimates confirm our current understanding of M. antipodes dynamic, demographic history and provide new insights into the expansion this species has undergone during the last centuries.
Issue Title: Special Issue: ESF-ConGen: Integrating population Genetics and Conservation Biology / Guest Edited by Kuke Bijlsma, Volker Loeschcke and N. Joop Ouborg The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally in population genetics, known as approximate Bayesian computation (ABC), has been shown to be particularly useful for the estimation of such parameters. These methods do not need to evaluate likelihood functions analytically and can therefore be used even while assuming complex models. In this paper we describe the ABC approach and identify specific parts of its algorithm that are being the subject of intensive studies in order to further expand its usability. Furthermore, we discuss applications of this Bayesian algorithm in conservation studies, providing insights on the potentialities of these tools. Finally, we present a case study in which we use a simple Isolation-Migration model to estimate a number of demographic parameters of two populations of yellow-eyed penguins (Megadyptes antipodes) in New Zealand. The resulting estimates confirm our current understanding of M. antipodes dynamic, demographic history and provide new insights into the expansion this species has undergone during the last centuries.[PUBLICATION ABSTRACT]
The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally in population genetics, known as approximate Bayesian computation (ABC), has been shown to be particularly useful for the estimation of such parameters. These methods do not need to evaluate likelihood functions analytically and can therefore be used even while assuming complex models. In this paper we describe the ABC approach and identify specific parts of its algorithm that are being the subject of intensive studies in order to further expand its usability. Furthermore, we discuss applications of this Bayesian algorithm in conservation studies, providing insights on the potentialities of these tools. Finally, we present a case study in which we use a simple Isolation-Migration model to estimate a number of demographic parameters of two populations of yellow-eyed penguins ( Megadyptes antipodes ) in New Zealand. The resulting estimates confirm our current understanding of M. antipodes dynamic, demographic history and provide new insights into the expansion this species has undergone during the last centuries.
Author Lopes, Joao S
Boessenkool, Sanne
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SSID ssj0016271
Score 1.9988291
Snippet The inference of demographic parameters from genetic data has become an integral part of conservation studies. A group of Bayesian methods developed originally...
Issue Title: Special Issue: ESF-ConGen: Integrating population Genetics and Conservation Biology / Guest Edited by Kuke Bijlsma, Volker Loeschcke and N. Joop...
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SubjectTerms Algorithms
Animal Genetics and Genomics
Bayesian analysis
Biodiversity
Biomedical and Life Sciences
Case studies
Conservation biology
Conservation Biology/Ecology
Conservation genetics
Ecology
Evolutionary Biology
Genetics
Life Sciences
Marine mammals
New Zealand
penguins
Plant Genetics and Genomics
Population genetics
Research Article
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Title use of approximate Bayesian computation in conservation genetics and its application in a case study on yellow-eyed penguins
URI https://link.springer.com/article/10.1007/s10592-009-0032-9
https://www.proquest.com/docview/226841858
https://www.proquest.com/docview/46578670
Volume 11
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