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Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows

The aim of this study was to identify genomic regions associated with 305‐day milk yield and lactation curve parameters on primiparous (n = 9,910) and multiparous (n = 11,158) Holstein cows. The SNP solutions were estimated using a weighted single‐step genomic BLUP approach and imputed high‐density...

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Autores principales: Atashi, Hadi, Salavati, Mazdak, De Koster, Jenne, Ehrlich, Jim, Crowe, Mark, Opsomer, Geert, Hostens, Miel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217222/
https://www.ncbi.nlm.nih.gov/pubmed/31576624
http://dx.doi.org/10.1111/jbg.12442
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author Atashi, Hadi
Salavati, Mazdak
De Koster, Jenne
Ehrlich, Jim
Crowe, Mark
Opsomer, Geert
Hostens, Miel
author_facet Atashi, Hadi
Salavati, Mazdak
De Koster, Jenne
Ehrlich, Jim
Crowe, Mark
Opsomer, Geert
Hostens, Miel
author_sort Atashi, Hadi
collection PubMed
description The aim of this study was to identify genomic regions associated with 305‐day milk yield and lactation curve parameters on primiparous (n = 9,910) and multiparous (n = 11,158) Holstein cows. The SNP solutions were estimated using a weighted single‐step genomic BLUP approach and imputed high‐density panel (777k) genotypes. The proportion of genetic variance explained by windows of 50 consecutive SNP (with an average of 165 Kb) was calculated, and regions that accounted for more than 0.50% of the variance were used to search for candidate genes. Estimated heritabilities were 0.37, 0.34, 0.17, 0.12, 0.30 and 0.19, respectively, for 305‐day milk yield, peak yield, peak time, ramp, scale and decay for primiparous cows. Genetic correlations of 305‐day milk yield with peak yield, peak time, ramp, scale and decay in primiparous cows were 0.99, 0.63, 0.20, 0.97 and −0.52, respectively. The results identified three windows on BTA14 associated with 305‐day milk yield and the parameters of lactation curve in primi‐ and multiparous cows. Previously proposed candidate genes for milk yield supported by this work include GRINA, CYHR1, FOXH1, TONSL, PPP1R16A, ARHGAP39, MAF1, OPLAH and MROH1, whereas newly identified candidate genes are MIR2308, ZNF7, ZNF34, SLURP1, MAFA and KIFC2 (BTA14). The protein lipidation biological process term, which plays a key role in controlling protein localization and function, was identified as the most important term enriched by the identified genes.
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spelling pubmed-72172222020-05-13 Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows Atashi, Hadi Salavati, Mazdak De Koster, Jenne Ehrlich, Jim Crowe, Mark Opsomer, Geert Hostens, Miel J Anim Breed Genet Original Articles The aim of this study was to identify genomic regions associated with 305‐day milk yield and lactation curve parameters on primiparous (n = 9,910) and multiparous (n = 11,158) Holstein cows. The SNP solutions were estimated using a weighted single‐step genomic BLUP approach and imputed high‐density panel (777k) genotypes. The proportion of genetic variance explained by windows of 50 consecutive SNP (with an average of 165 Kb) was calculated, and regions that accounted for more than 0.50% of the variance were used to search for candidate genes. Estimated heritabilities were 0.37, 0.34, 0.17, 0.12, 0.30 and 0.19, respectively, for 305‐day milk yield, peak yield, peak time, ramp, scale and decay for primiparous cows. Genetic correlations of 305‐day milk yield with peak yield, peak time, ramp, scale and decay in primiparous cows were 0.99, 0.63, 0.20, 0.97 and −0.52, respectively. The results identified three windows on BTA14 associated with 305‐day milk yield and the parameters of lactation curve in primi‐ and multiparous cows. Previously proposed candidate genes for milk yield supported by this work include GRINA, CYHR1, FOXH1, TONSL, PPP1R16A, ARHGAP39, MAF1, OPLAH and MROH1, whereas newly identified candidate genes are MIR2308, ZNF7, ZNF34, SLURP1, MAFA and KIFC2 (BTA14). The protein lipidation biological process term, which plays a key role in controlling protein localization and function, was identified as the most important term enriched by the identified genes. John Wiley and Sons Inc. 2019-10-01 2020-05 /pmc/articles/PMC7217222/ /pubmed/31576624 http://dx.doi.org/10.1111/jbg.12442 Text en © 2019 The Authors. Journal of Animal Breeding and Genetics published by Blackwell Verlag GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Atashi, Hadi
Salavati, Mazdak
De Koster, Jenne
Ehrlich, Jim
Crowe, Mark
Opsomer, Geert
Hostens, Miel
Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title_full Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title_fullStr Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title_full_unstemmed Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title_short Genome‐wide association for milk production and lactation curve parameters in Holstein dairy cows
title_sort genome‐wide association for milk production and lactation curve parameters in holstein dairy cows
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217222/
https://www.ncbi.nlm.nih.gov/pubmed/31576624
http://dx.doi.org/10.1111/jbg.12442
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