Genetic diversity analysis of Thai indigenous pig population using microsatellite markers

Copyright © 2019 by Asian-Australasian Journal of Animal Sciences Objective: European pigs have been imported to improve the economically important traits of Thai pigs by crossbreeding and was finally completely replaced. Currently Thai indigenous pigs are particularly kept in a small population. Th...

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Main Authors: Rangsun Charoensook, Kesinee Gatphayak, Bertram Brenig, Christoph Knorr
Format: Journal
Published: 2020
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/67564
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-675642020-04-02T15:06:33Z Genetic diversity analysis of Thai indigenous pig population using microsatellite markers Rangsun Charoensook Kesinee Gatphayak Bertram Brenig Christoph Knorr Agricultural and Biological Sciences Engineering Copyright © 2019 by Asian-Australasian Journal of Animal Sciences Objective: European pigs have been imported to improve the economically important traits of Thai pigs by crossbreeding and was finally completely replaced. Currently Thai indigenous pigs are particularly kept in a small population. Therefore, indigenous pigs risk losing their genetic diversity and identity. Thus, this study was conducted to perform large-scale genetic diversity and phylogenetic analyses on the many pig breeds available in Thailand. Methods: Genetic diversity and phylogenetics analyses of 222 pigs belonging to Thai native pigs (TNP), Thai wild boars (TWB), European commercial pigs, commercial crossbred pigs, and Chinese indigenous pigs were investigated by genotyping using 26 microsatellite markers. Results: The results showed that Thai pig populations had a high genetic diversity with mean total and effective (Ne) number of alleles of 14.59 and 3.71, respectively, and expected heterozygosity (He) across loci (0.710). The polymorphic information content per locus ranged between 0.651 and 0.914 leading to an average value above all loci of 0.789, and private alleles were found in six populations. The higher He compared to observed heterozygosity (Ho) in TNP, TWB, and the commercial pigs indicated some inbreeding within a population. The Nei’s genetic distance, mean FST estimates, neighbour-joining tree of populations and individual, as well as multidimensional analysis indicated close genetic relationship between Thai indigenous pigs and some Chinese pigs, and they are distinctly different from European pigs. Conclusion: Our study reveals a close genetic relationship between TNP and Chinese pigs. The genetic introgression from European breeds is found in some TNP populations, and signs of genetic erosion are shown. Private alleles found in this study should be taken into consideration for the breeding program. The genetic information from this study will be a benefit for both conservation and utilization of Thai pig genetic resources. 2020-04-02T14:55:43Z 2020-04-02T14:55:43Z 2019-01-01 Journal 19765517 10112367 2-s2.0-85072072314 10.5713/ajas.18.0832 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85072072314&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/67564
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Agricultural and Biological Sciences
Engineering
spellingShingle Agricultural and Biological Sciences
Engineering
Rangsun Charoensook
Kesinee Gatphayak
Bertram Brenig
Christoph Knorr
Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
description Copyright © 2019 by Asian-Australasian Journal of Animal Sciences Objective: European pigs have been imported to improve the economically important traits of Thai pigs by crossbreeding and was finally completely replaced. Currently Thai indigenous pigs are particularly kept in a small population. Therefore, indigenous pigs risk losing their genetic diversity and identity. Thus, this study was conducted to perform large-scale genetic diversity and phylogenetic analyses on the many pig breeds available in Thailand. Methods: Genetic diversity and phylogenetics analyses of 222 pigs belonging to Thai native pigs (TNP), Thai wild boars (TWB), European commercial pigs, commercial crossbred pigs, and Chinese indigenous pigs were investigated by genotyping using 26 microsatellite markers. Results: The results showed that Thai pig populations had a high genetic diversity with mean total and effective (Ne) number of alleles of 14.59 and 3.71, respectively, and expected heterozygosity (He) across loci (0.710). The polymorphic information content per locus ranged between 0.651 and 0.914 leading to an average value above all loci of 0.789, and private alleles were found in six populations. The higher He compared to observed heterozygosity (Ho) in TNP, TWB, and the commercial pigs indicated some inbreeding within a population. The Nei’s genetic distance, mean FST estimates, neighbour-joining tree of populations and individual, as well as multidimensional analysis indicated close genetic relationship between Thai indigenous pigs and some Chinese pigs, and they are distinctly different from European pigs. Conclusion: Our study reveals a close genetic relationship between TNP and Chinese pigs. The genetic introgression from European breeds is found in some TNP populations, and signs of genetic erosion are shown. Private alleles found in this study should be taken into consideration for the breeding program. The genetic information from this study will be a benefit for both conservation and utilization of Thai pig genetic resources.
format Journal
author Rangsun Charoensook
Kesinee Gatphayak
Bertram Brenig
Christoph Knorr
author_facet Rangsun Charoensook
Kesinee Gatphayak
Bertram Brenig
Christoph Knorr
author_sort Rangsun Charoensook
title Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
title_short Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
title_full Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
title_fullStr Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
title_full_unstemmed Genetic diversity analysis of Thai indigenous pig population using microsatellite markers
title_sort genetic diversity analysis of thai indigenous pig population using microsatellite markers
publishDate 2020
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85072072314&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/67564
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