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Genetic effects of long-term captive breeding on the endangered pygmy hog

Long-term captive populations often accumulate genetic changes that are detrimental to their survival in the wild. Periodic genetic evaluation of captive populations is thus necessary to identify deleterious changes and minimize their impact through planned breeding. Pygmy hog (Porcula salvania) is...

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Autores principales: Purohit, Deepanwita, Manu, Shivakumara, Ram, Muthuvarmadam Subramanian, Sharma, Shradha, Patnaik, Harika Chinchilam, Deka, Parag Jyoti, Narayan, Goutam, Umapathy, Govindhaswamy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504462/
https://www.ncbi.nlm.nih.gov/pubmed/34707930
http://dx.doi.org/10.7717/peerj.12212
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author Purohit, Deepanwita
Manu, Shivakumara
Ram, Muthuvarmadam Subramanian
Sharma, Shradha
Patnaik, Harika Chinchilam
Deka, Parag Jyoti
Narayan, Goutam
Umapathy, Govindhaswamy
author_facet Purohit, Deepanwita
Manu, Shivakumara
Ram, Muthuvarmadam Subramanian
Sharma, Shradha
Patnaik, Harika Chinchilam
Deka, Parag Jyoti
Narayan, Goutam
Umapathy, Govindhaswamy
author_sort Purohit, Deepanwita
collection PubMed
description Long-term captive populations often accumulate genetic changes that are detrimental to their survival in the wild. Periodic genetic evaluation of captive populations is thus necessary to identify deleterious changes and minimize their impact through planned breeding. Pygmy hog (Porcula salvania) is an endangered species with a small population inhabiting the tall sub-Himalayan grasslands of Assam, India. A conservation breeding program of pygmy hog from six founders has produced a multi-generational captive population destined for reintroduction into the wild. However, the impact of conservation breeding on its genetic diversity remained undocumented. Here, we evaluate temporal genetic changes in 39 pygmy hogs from eight consecutive generations of a captive population using genome-wide SNPs, mitochondrial genomes, and MHC sequences, and explore the relationship between genetic diversity and reproductive success. We find that pygmy hog harbors a very low genome-wide heterozygosity (H) compared to other members of the Suidae family. However, within the captive population we find excess heterozygosity and a significant increase in H from the wild-caught founders to the individuals in subsequent generations due to the selective pairing strategy. The MHC and mitochondrial nucleotide diversities were lower in captive generations compared to the founders with a high prevalence of low-frequency MHC haplotypes and more unique mitochondrial genomes. Further, even though no signs of genetic inbreeding were observed from the estimates of individual inbreeding coefficient F and between individuals (F(IS)) in each generation, the kinship coefficient showed a slightly increasing trend in the recent generations, due to a relatively smaller non-random sample size compared to the entire captive population. Surprisingly, male pygmy hogs that had higher heterozygosity also showed lower breeding success. We briefly discuss the implications of our findings in the context of breeding management and recommend steps to minimize the genetic effects of long-term captive breeding.
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spelling pubmed-85044622021-10-26 Genetic effects of long-term captive breeding on the endangered pygmy hog Purohit, Deepanwita Manu, Shivakumara Ram, Muthuvarmadam Subramanian Sharma, Shradha Patnaik, Harika Chinchilam Deka, Parag Jyoti Narayan, Goutam Umapathy, Govindhaswamy PeerJ Conservation Biology Long-term captive populations often accumulate genetic changes that are detrimental to their survival in the wild. Periodic genetic evaluation of captive populations is thus necessary to identify deleterious changes and minimize their impact through planned breeding. Pygmy hog (Porcula salvania) is an endangered species with a small population inhabiting the tall sub-Himalayan grasslands of Assam, India. A conservation breeding program of pygmy hog from six founders has produced a multi-generational captive population destined for reintroduction into the wild. However, the impact of conservation breeding on its genetic diversity remained undocumented. Here, we evaluate temporal genetic changes in 39 pygmy hogs from eight consecutive generations of a captive population using genome-wide SNPs, mitochondrial genomes, and MHC sequences, and explore the relationship between genetic diversity and reproductive success. We find that pygmy hog harbors a very low genome-wide heterozygosity (H) compared to other members of the Suidae family. However, within the captive population we find excess heterozygosity and a significant increase in H from the wild-caught founders to the individuals in subsequent generations due to the selective pairing strategy. The MHC and mitochondrial nucleotide diversities were lower in captive generations compared to the founders with a high prevalence of low-frequency MHC haplotypes and more unique mitochondrial genomes. Further, even though no signs of genetic inbreeding were observed from the estimates of individual inbreeding coefficient F and between individuals (F(IS)) in each generation, the kinship coefficient showed a slightly increasing trend in the recent generations, due to a relatively smaller non-random sample size compared to the entire captive population. Surprisingly, male pygmy hogs that had higher heterozygosity also showed lower breeding success. We briefly discuss the implications of our findings in the context of breeding management and recommend steps to minimize the genetic effects of long-term captive breeding. PeerJ Inc. 2021-10-08 /pmc/articles/PMC8504462/ /pubmed/34707930 http://dx.doi.org/10.7717/peerj.12212 Text en ©2021 Purohit et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Conservation Biology
Purohit, Deepanwita
Manu, Shivakumara
Ram, Muthuvarmadam Subramanian
Sharma, Shradha
Patnaik, Harika Chinchilam
Deka, Parag Jyoti
Narayan, Goutam
Umapathy, Govindhaswamy
Genetic effects of long-term captive breeding on the endangered pygmy hog
title Genetic effects of long-term captive breeding on the endangered pygmy hog
title_full Genetic effects of long-term captive breeding on the endangered pygmy hog
title_fullStr Genetic effects of long-term captive breeding on the endangered pygmy hog
title_full_unstemmed Genetic effects of long-term captive breeding on the endangered pygmy hog
title_short Genetic effects of long-term captive breeding on the endangered pygmy hog
title_sort genetic effects of long-term captive breeding on the endangered pygmy hog
topic Conservation Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504462/
https://www.ncbi.nlm.nih.gov/pubmed/34707930
http://dx.doi.org/10.7717/peerj.12212
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