Genetic structure and diversity of semi-captive populations: the anomalous case of the Asian elephant

Wild species living in captivity are subject to loss of genetic diversity, inbreeding depression, and differentiation among populations. Only very few species have been under human care for centuries but have not been selectively bred, have free-ranging movements most of the time, and retain porous...

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Published inConservation genetics Vol. 25; no. 4; pp. 973 - 984
Main Authors Maurer, Gilles, Dubois, Marie-Pierre, Oo, Zaw Min, Chanthavong, Vatsana, Mulot, Baptiste, Gimenez, Olivier, Kjellberg, Finn
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.08.2024
Springer Nature B.V
Springer Verlag
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Abstract Wild species living in captivity are subject to loss of genetic diversity, inbreeding depression, and differentiation among populations. Only very few species have been under human care for centuries but have not been selectively bred, have free-ranging movements most of the time, and retain porous barriers to gene flow between wild and captive populations. Such captive populations are expected to retain high levels of genetic diversity and anthropogenic factors should result in a limited genetic differentiation from wild populations. Asian elephants have been trained and used by humans for at least 4000 years as war animals, mounts of kings and draught animals. In Myanmar and Laos, elephants are still being used for hauling timber in the forest while retaining traditional management practices including seasonal release, free mating and movement. However, habitat fragmentation, isolation and reduced gene flows are threatening both semi-captive and wild pools. We genotyped 167 semi-captive elephants from Laos and Myanmar using a panel of 11 microsatellite loci to estimate the genetic diversity and population structure. We found that elephants of both countries presented high levels of genetic diversity and a low degree of inbreeding, if any. This agrees with the expected high level of genetic diversity in semi-captive populations. We found a weak differentiation along a geographical gradient from southern Laos to northern Myanmar but no differentiation between wild-caught and captive-born pools. The potential value for conservation of a large population of semi-captive elephants has been recognized but the conservation community has yet to fully explore the potential role semi-captive elephants could play in maintaining gene flows.
AbstractList Wild species living in captivity are subject to loss of genetic diversity, inbreeding depression, and differentiation among populations. Only very few species have been under human care for centuries but have not been selectively bred, have free-ranging movements most of the time, and retain porous barriers to gene flow between wild and captive populations. Such captive populations are expected to retain high levels of genetic diversity and anthropogenic factors should result in a limited genetic differentiation from wild populations. Asian elephants have been trained and used by humans for at least 4000 years as war animals, mounts of kings and draught animals. In Myanmar and Laos, elephants are still being used for hauling timber in the forest while retaining traditional management practices including seasonal release, free mating and movement. However, habitat fragmentation, isolation and reduced gene flows are threatening both semi-captive and wild pools. We genotyped 167 semi-captive elephants from Laos and Myanmar using a panel of 11 microsatellite loci to estimate the genetic diversity and population structure. We found that elephants of both countries presented high levels of genetic diversity and a low degree of inbreeding, if any. This agrees with the expected high level of genetic diversity in semi-captive populations. We found a weak differentiation along a geographical gradient from southern Laos to northern Myanmar but no differentiation between wild-caught and captive-born pools. The potential value for conservation of a large population of semi-captive elephants has been recognized but the conservation community has yet to fully explore the potential role semi-captive elephants could play in maintaining gene flows.
Author Maurer, Gilles
Chanthavong, Vatsana
Oo, Zaw Min
Gimenez, Olivier
Dubois, Marie-Pierre
Mulot, Baptiste
Kjellberg, Finn
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  givenname: Gilles
  surname: Maurer
  fullname: Maurer, Gilles
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  givenname: Marie-Pierre
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  givenname: Zaw Min
  surname: Oo
  fullname: Oo, Zaw Min
  organization: Myanma Timber Enterprise, Ministry of Natural Resources and Environmental Conservation
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  organization: Veterinary Unit, Department of Livestock and Fisheries, Ministry of Agriculture and Forestry
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  givenname: Baptiste
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  surname: Kjellberg
  fullname: Kjellberg, Finn
  organization: CEFE, Univ Montpellier, CNRS, EPHE, IRD
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Issue 4
Keywords Microsatellites
Nuclear DNA
Population genetics
Captive
Elephas maximus
Language English
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Snippet Wild species living in captivity are subject to loss of genetic diversity, inbreeding depression, and differentiation among populations. Only very few species...
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SubjectTerms Animal genetics
Animal Genetics and Genomics
Animals
Anthropogenic factors
Biodiversity
Biomedical and Life Sciences
Breeding
captive animals
Captivity
Conservation Biology/Ecology
Differentiation
Ecology
Elephants
Elephas maximus
Evolutionary Biology
Forest management
forests
Gene flow
genes
Genetic diversity
Genetic structure
genetic variation
Genetics
Habitat fragmentation
Hauling
Human motion
humans
Inbreeding
Inbreeding depression
Laos
Life Sciences
microsatellite repeats
Myanmar
Plant Genetics and Genomics
Population genetics
Population structure
Populations
Populations and Evolution
species
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Title Genetic structure and diversity of semi-captive populations: the anomalous case of the Asian elephant
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