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Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle

AIM: One of the major biochemical aspects of thermoregulation is equilibrium of ion gradient across biological membranes. Na(+)/K(+)-ATPase, a member of P type-ATPase family, is a major contributor to the mechanism that actively controls cross-membrane ion gradient. Thus, we examined ATP1A1 gene tha...

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Autores principales: Kashyap, Neeraj, Kumar, Pushpendra, Deshmukh, Bharti, Bhat, Sandip, Kumar, Amit, Chauhan, Anuj, Bhushan, Bharat, Singh, Gyanendra, Sharma, Deepak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Veterinary World 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4774683/
https://www.ncbi.nlm.nih.gov/pubmed/27047171
http://dx.doi.org/10.14202/vetworld.2015.892-897
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author Kashyap, Neeraj
Kumar, Pushpendra
Deshmukh, Bharti
Bhat, Sandip
Kumar, Amit
Chauhan, Anuj
Bhushan, Bharat
Singh, Gyanendra
Sharma, Deepak
author_facet Kashyap, Neeraj
Kumar, Pushpendra
Deshmukh, Bharti
Bhat, Sandip
Kumar, Amit
Chauhan, Anuj
Bhushan, Bharat
Singh, Gyanendra
Sharma, Deepak
author_sort Kashyap, Neeraj
collection PubMed
description AIM: One of the major biochemical aspects of thermoregulation is equilibrium of ion gradient across biological membranes. Na(+)/K(+)-ATPase, a member of P type-ATPase family, is a major contributor to the mechanism that actively controls cross-membrane ion gradient. Thus, we examined ATP1A1 gene that encodes alpha-1 chain of Na(+)/K(+)-ATPase, for genetic polymorphisms. MATERIALS AND METHODS: A total of 100 Vrindavani (composite cross strain of Hariana x Holstein-Friesian/Brown Swiss/Jersey) and 64 Tharparkar (indigenous) cattle were screened for genetic polymorphism in ATP1A1 gene, using polymerase chain reaction single-strand conformation polymorphism and DNA sequencing. For association studies, rectal temperature (RT) and respiration rate (RR) of all animals were recorded twice daily for 3 seasons. RESULTS: A SNP (C2789A) was identified in exon 17 of ATP1A1 gene. Three genotypes namely CC, CA, and AA were observed in both, Vrindavani and Tharparkar cattle. The gene frequencies in Tharparkar and Vrindavani for allele A were 0.51 and 0.48, and for allele C were 0.49 and 0.52, respectively, which remained at intermediate range. Association study of genotypes with RT and RR in both cattle population revealed that the animals with genotype CC exhibited significantly lower RT and higher heat tolerance coefficient than CA and AA genotypes. CONCLUSION: Differential thermoregulation between different genotypes of ATP1A1 gene indicate that the ATP1A1 gene could be potentially contributing to thermotolerance in both, Tharparkar, an indigenous breed and Vrindavani, a composite crossbred cattle.
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spelling pubmed-47746832016-04-04 Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle Kashyap, Neeraj Kumar, Pushpendra Deshmukh, Bharti Bhat, Sandip Kumar, Amit Chauhan, Anuj Bhushan, Bharat Singh, Gyanendra Sharma, Deepak Vet World Research Article AIM: One of the major biochemical aspects of thermoregulation is equilibrium of ion gradient across biological membranes. Na(+)/K(+)-ATPase, a member of P type-ATPase family, is a major contributor to the mechanism that actively controls cross-membrane ion gradient. Thus, we examined ATP1A1 gene that encodes alpha-1 chain of Na(+)/K(+)-ATPase, for genetic polymorphisms. MATERIALS AND METHODS: A total of 100 Vrindavani (composite cross strain of Hariana x Holstein-Friesian/Brown Swiss/Jersey) and 64 Tharparkar (indigenous) cattle were screened for genetic polymorphism in ATP1A1 gene, using polymerase chain reaction single-strand conformation polymorphism and DNA sequencing. For association studies, rectal temperature (RT) and respiration rate (RR) of all animals were recorded twice daily for 3 seasons. RESULTS: A SNP (C2789A) was identified in exon 17 of ATP1A1 gene. Three genotypes namely CC, CA, and AA were observed in both, Vrindavani and Tharparkar cattle. The gene frequencies in Tharparkar and Vrindavani for allele A were 0.51 and 0.48, and for allele C were 0.49 and 0.52, respectively, which remained at intermediate range. Association study of genotypes with RT and RR in both cattle population revealed that the animals with genotype CC exhibited significantly lower RT and higher heat tolerance coefficient than CA and AA genotypes. CONCLUSION: Differential thermoregulation between different genotypes of ATP1A1 gene indicate that the ATP1A1 gene could be potentially contributing to thermotolerance in both, Tharparkar, an indigenous breed and Vrindavani, a composite crossbred cattle. Veterinary World 2015-07 2015-07-21 /pmc/articles/PMC4774683/ /pubmed/27047171 http://dx.doi.org/10.14202/vetworld.2015.892-897 Text en Copyright: © The authors. http://creativecommons.org/licenses/by/2.0 This article is an open access article licensed under the terms of the Creative Commons Attributin License (http://creative commons.org/licenses/by/2.0) which permits unrestricted use, distribution and reproduction in any medium, provided the work is properly cited.
spellingShingle Research Article
Kashyap, Neeraj
Kumar, Pushpendra
Deshmukh, Bharti
Bhat, Sandip
Kumar, Amit
Chauhan, Anuj
Bhushan, Bharat
Singh, Gyanendra
Sharma, Deepak
Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title_full Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title_fullStr Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title_full_unstemmed Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title_short Association of ATP1A1 gene polymorphism with thermotolerance in Tharparkar and Vrindavani cattle
title_sort association of atp1a1 gene polymorphism with thermotolerance in tharparkar and vrindavani cattle
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4774683/
https://www.ncbi.nlm.nih.gov/pubmed/27047171
http://dx.doi.org/10.14202/vetworld.2015.892-897
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