Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.

Captive breeding programs are crucial to ensure the survival of endangered species and ultimately to reintroduce individuals into the wild. However, captive-bred populations can also deteriorate due to inbreeding depression and reduction of genetic variability. We genotyped a captive population of 8...

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Autores principales: Jitmat Thintip, Worapong Singchat, Syed Farhan Ahmad, Nattakan Ariyaraphong, Narongrit Muangmai, Wiyada Chamchumroon, Klinsak Pitiwong, Warong Suksavate, Sutee Duangjai, Prateep Duengkae, Kornsorn Srikulnath
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Publicado: Public Library of Science (PLoS) 2021
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Acceso en línea:https://doaj.org/article/8fab45cad60e4cbb9782334fa5338d74
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spelling oai:doaj.org-article:8fab45cad60e4cbb9782334fa5338d742021-12-02T20:19:26ZReduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.1932-620310.1371/journal.pone.0256573https://doaj.org/article/8fab45cad60e4cbb9782334fa5338d742021-01-01T00:00:00Zhttps://doi.org/10.1371/journal.pone.0256573https://doaj.org/toc/1932-6203Captive breeding programs are crucial to ensure the survival of endangered species and ultimately to reintroduce individuals into the wild. However, captive-bred populations can also deteriorate due to inbreeding depression and reduction of genetic variability. We genotyped a captive population of 82 individuals of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) at the Doi Tung Wildlife Breeding Center to assess the genetic consequences associated with captive breeding. Analysis of microsatellite loci and mitochondrial D-loop sequences reveal significantly reduced genetic differentiation and a shallow population structure. Despite the low genetic variability, no bottleneck was observed but 12 microsatellite loci were informative in reflecting probable inbreeding. These findings provide a valuable source of knowledge to maximize genetic variability and enhance the success of future conservation plans for captive and wild populations of Hume's pheasant.Jitmat ThintipWorapong SingchatSyed Farhan AhmadNattakan AriyaraphongNarongrit MuangmaiWiyada ChamchumroonKlinsak PitiwongWarong SuksavateSutee DuangjaiPrateep DuengkaeKornsorn SrikulnathPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 16, Iss 8, p e0256573 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jitmat Thintip
Worapong Singchat
Syed Farhan Ahmad
Nattakan Ariyaraphong
Narongrit Muangmai
Wiyada Chamchumroon
Klinsak Pitiwong
Warong Suksavate
Sutee Duangjai
Prateep Duengkae
Kornsorn Srikulnath
Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
description Captive breeding programs are crucial to ensure the survival of endangered species and ultimately to reintroduce individuals into the wild. However, captive-bred populations can also deteriorate due to inbreeding depression and reduction of genetic variability. We genotyped a captive population of 82 individuals of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) at the Doi Tung Wildlife Breeding Center to assess the genetic consequences associated with captive breeding. Analysis of microsatellite loci and mitochondrial D-loop sequences reveal significantly reduced genetic differentiation and a shallow population structure. Despite the low genetic variability, no bottleneck was observed but 12 microsatellite loci were informative in reflecting probable inbreeding. These findings provide a valuable source of knowledge to maximize genetic variability and enhance the success of future conservation plans for captive and wild populations of Hume's pheasant.
format article
author Jitmat Thintip
Worapong Singchat
Syed Farhan Ahmad
Nattakan Ariyaraphong
Narongrit Muangmai
Wiyada Chamchumroon
Klinsak Pitiwong
Warong Suksavate
Sutee Duangjai
Prateep Duengkae
Kornsorn Srikulnath
author_facet Jitmat Thintip
Worapong Singchat
Syed Farhan Ahmad
Nattakan Ariyaraphong
Narongrit Muangmai
Wiyada Chamchumroon
Klinsak Pitiwong
Warong Suksavate
Sutee Duangjai
Prateep Duengkae
Kornsorn Srikulnath
author_sort Jitmat Thintip
title Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
title_short Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
title_full Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
title_fullStr Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
title_full_unstemmed Reduced genetic variability in a captive-bred population of the endangered Hume's pheasant (Syrmaticus humiae, Hume 1881) revealed by microsatellite genotyping and D-loop sequencing.
title_sort reduced genetic variability in a captive-bred population of the endangered hume's pheasant (syrmaticus humiae, hume 1881) revealed by microsatellite genotyping and d-loop sequencing.
publisher Public Library of Science (PLoS)
publishDate 2021
url https://doaj.org/article/8fab45cad60e4cbb9782334fa5338d74
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