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2. | | UTSUNOMIYA, A. T. H.; VAZ, R. I.; PIRES, M. P.; ONO, R. K.; FONSECA, R. da. Desenvolvimento de um software-livre para simulação em melhoramento genético animal. In: CONGRESSO INTERNACIONAL DE ZOOTECNIA, 7.; CONGRESSO NACIONAL DE ZOOTECNIA, 10.; REUNIÃO NACIONAL DE ENSINO DE ZOOTECNIA, 11.; FÓRUM DE ENTIDADES DE ZOOTECNIA, 28.; FÓRUM DE COORDENADORES DE CURSOS DE ZOOTECNIA DAS UNIVERSIDADES BRASILEIRAS, 1., 2005, Campo Grande, MS. Zootec 2005: produção animal e responsabilidade. Campo Grande, MS: ABZ: UEMS: UFMS: CPAP: MAPA, 2005. 1 CD ROM. Biblioteca(s): Embrapa Caprinos e Ovinos. |
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3. | | UTSUNOMIYA, A. T. H.; FONSECA, R.; SANTOS, D. J. A.; MACHADO, M. A.; VERNEQUE, R. da S.; SILVA, M. V. G. B. Genome wide association study to detect chromosomal regions related to milk, fat and protein yield in Gir breed. In: INTERNATIONAL SYMPOSIUM ON ANIMAL FUNCTIONAL GENOMICS, 5., 2013, Guarujá. Programme and abstract book... [S.l.: s.n.], 2013. Biblioteca(s): Embrapa Gado de Leite. |
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4. | | UTSUNOMIYA, Y. T.; MILANESI, M.; FORTES, M. R. S.; PORTO?NETO, L. R.; UTSUNOMIYA, A. T. H.; SILVA, M. V. G. B.; GARCIA, J. F.; AJMONE-MARSAN, P. Genomic clues of the evolutionary history of Bos indicus cattle. Animal Genetics, v. 50, n. 6, p. 557-568, 2019. Biblioteca(s): Embrapa Gado de Leite. |
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6. | | ALMEIDA, F. N.; SANTOS, D. J. DE A.; UTSUNOMIYA, A. T. H.; MACHADO, M. A.; VERNEQUE, R. da S.; SILVA, M. V. G. B. Caracterização de blocos haplotípicos em bovinos de quatro raças zebuinas e uma poulação F2. In: SIMPÓSIO BRASILEIRO DE MELHORAMENTO ANIMAL, 10., 2013, Uberaba. Anais... Viçosa: Sociedade Brasileira de Melhoramento Animal, 2013. Biblioteca(s): Embrapa Gado de Leite. |
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7. | | UTSUNOMIYA, A. T. H.; SILVA, M. V. G. B.; SANTOS, D. J. A. DOS; MACHADO, M. A.; VERNEQUE, R. da S.; PANETTO, J. C. do C. Efeito de SNPs em posições equívocas sobre o decaimento do desequilíbrio de ligação. In: SIMPÓSIO BRASILEIRO DE MELHORAMENTO ANIMAL, 10., 2013, Uberaba. Anais... Viçosa: Sociedade Brasileira de Melhoramento Animal, 2013. Biblioteca(s): Embrapa Gado de Leite. |
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8. | | SANTOS, D. J. DE A.; PEIXOTO, M. G. C. D.; UTSUNOMIYA, A. T. H.; TONHATI, H.; CARVALHO, M. R. S.; SILVA, M. V. G. B. Análise de associação global para identificar locos relacionados às produções de leite, de gordura e de proteína na raça Guzerá. In: SIMPÓSIO BRASILEIRO DE MELHORAMENTO ANIMAL, 10., 2013, Uberaba. Anais... Viçosa: Sociedade Brasileira de Melhoramento Animal, 2013. Biblioteca(s): Embrapa Gado de Leite. |
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9. | | SANTOS, D. J. A.; PEIXOTO, M. G. C. D.; SANTOS, K. C. L. dos; UTSUNOMIYA, A. T. H.; ARBEX, W. A.; TONHATI, H.; SILVA, M. V. G. B. Comparison on genomic predictions for milk, fat and protein yield in Guzerat breed using GBLUP and BayesC methods. In: INTERNATIONAL SYMPOSIUM ON ANIMAL FUNCTIONAL GENOMICS, 5., 2013, Guarujá. Programme and abstract book... [S.l.: s.n.], 2013. Biblioteca(s): Embrapa Gado de Leite. |
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10. | | OLIVEIRA JUNIOR, G. A.; CARMO, A. S.; UTSUNOMIYA, A. T. H.; CHUD, T. C. S.; REY, F. S. B.; FERRAZ, J. B. S.; SILVA, M. V. G. B. Common copy number variation regions affecting dairy traits in Gyr cattle In: ADSA ASAS JOINT ANNUAL MEETING, 2015, Orlando. Proceedings... Orlando: ADSA: ASAS, 2015. Biblioteca(s): Embrapa Gado de Leite. |
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11. | | MACHADO, M. A.; UTSUNOMIYA, A. T. H.; BOISON, S. A.; SANTOS, D. J. A. dos; UTSUNOMIYA, Y. T.; FONSECA, R. da; SÖLKNER, J.; GARCIA, J. F.; VERNEQUE, R. da S.; SILVA, M. V. G. B. Genome Wide Association Study for Calving Interval in Gyr Dairy Cattle. In: WORLD CONGRESS OF GENETICS APPLIED TO LIVESTOCK PRODUCTION, 10., 2014, Vancouver. Proceedings... Champaign: American Society of Animal Science, 2014. 3 p. Biblioteca(s): Embrapa Gado de Leite. |
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12. | | UTSUNOMIYA, A. T. H.; BOISON, S. A.; SANTOS, D. J. A. dos; UTSUNOMIYA, Y. T.; MACHADO, M. A.; VERNEQUE, R. da S.; SÖLKNER, J.; GARCIA, J. F.; FONSECA, R. da; SILVA, M. V. G. B. Genome Wide Scan for Age at First Calving in Gyr Dairy Cattle. In: WORLD CONGRESS OF GENETICS APPLIED TO LIVESTOCK PRODUCTION, 10., 2014, Vancouver. Proceedings... Champaign: American Society of Animal Science, 2014. 3 p. Biblioteca(s): Embrapa Gado de Leite. |
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13. | | BOISON, S. A.; UTSUNOMIYA, A. T. H.; SANTOS, D. J. A.; NEVES, H. H. R.; MÉSZÁROS, G.; CARVALHEIRO, R.; GARCIA, J. F.; SILVA, M. V. G. B.; SÖLKNER, J. Accuracy of genomic predictions for dairy traits in Gyr cattle (Bos indicus) Warsaw: EAAP, 2015. Biblioteca(s): Embrapa Gado de Leite. |
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14. | | SILVA, M. V. G. B.; SANTOS, D. J. A. dos; BOISON, S. A.; UTSUNOMIYA, A. T. H.; CARMO, A. S.; SONSTEGARD, T. S.; COLE, J. B.; TASSELL, C. P. V. The development of genomics applied to dairy breeding. Livestock Science, v. 166, p. 66-75, 2014. Biblioteca(s): Embrapa Gado de Leite. |
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15. | | UTSUNOMIYA, A. T. H.; SANTOS, D. J. A.; BOISON, S. A.; UTSUNOMIYA, Y. T.; MILANESI, M.; BICKHART, D. M.; AJMONE-MARSAN, P.; SOLKNER, J.; GARCIA, J. F.; FONSECA, R. da; SILVA, M. V. G. B. Revealing misassembled segments in the bovine reference genome by high resolution linkage disequilibrium scan. BMC Genomics, v. 17, article 705, 2016. Biblioteca(s): Embrapa Gado de Leite. |
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16. | | BOISON, S. A.; UTSUNOMIYA, A. T. H.; SANTOS, D. J. A.; NEVES, H. H. R.; CARVALHEIRO, R.; MÉSZÁROS, G.; UTSUNOMIYA, Y. T.; CARMO, A. S. do; VERNEQUE, R. da S.; MACHADO, M. A.; PANETTO, J. C. do C.; GARCIA, J. F.; SÖLKNER, J.; SILVA, M. V. G. B. Accuracy of genomic predictions in Gyr (Bos indicus) dairy cattle. Journal of Dairy Science, v. 100, n. 7, p. 5479-5490, 2017. Biblioteca(s): Embrapa Gado de Leite. |
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Registro Completo
Biblioteca(s): |
Embrapa Gado de Leite. |
Data corrente: |
29/12/2019 |
Data da última atualização: |
06/02/2024 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
UTSUNOMIYA, Y. T.; MILANESI, M.; FORTES, M. R. S.; PORTO?NETO, L. R.; UTSUNOMIYA, A. T. H.; SILVA, M. V. G. B.; GARCIA, J. F.; AJMONE-MARSAN, P. |
Afiliação: |
MARCOS VINICIUS GUALBERTO B SILVA, CNPGL. |
Título: |
Genomic clues of the evolutionary history of Bos indicus cattle. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Animal Genetics, v. 50, n. 6, p. 557-568, 2019. |
DOI: |
https://doi.org/10.1111/age.12836 |
Idioma: |
Inglês |
Conteúdo: |
Together with their sister subspecies Bos taurus, zebu cattle (Bos indicus) have contributed to important socioeconomic changes that have shaped modern civilizations. Zebu cattle were domesticated in the Indus Valley 8000 years before present (YBP). From the domestication site, they expanded to Africa, East Asia, southwestern Asia and Europe between 4000 and 1300 YBP, intercrossing with B. taurus to form clinal variations of zebu ancestry across the landmass of Afro-Eurasia. In the past 150 years, zebu cattle reached the Americas and Oceania, where they have contributed to the prosperity of emerging economies. The zebu genome is characterized by two mitochondrial haplogroups (I1 and I2), one Y chromosome haplogroup (Y3) and three major autosomal ancestral groups (Indian-Pakistani, African and Chinese). Phenotypically, zebu animals are recognized by their hump, large ears and excess skin. They are rustic, resilient to parasites and capable of bearing the hot and humid climates of the tropics. Many resources are available to study the zebu genome, including commercial arrays of SNP, reference assemblies and publicly available genotypes and whole-genome sequences. Nevertheless, many of these resources were initially developed to support research and subsidize industrial applications in B. taurus, and therefore they can produce bias in data analysis. The combination of genomics with precision agriculture holds great promise for the identification of genetic variants affecting economically important traits such as tick resistance and heat tolerance, which were naturally selected for millennia and played a major role in the evolution of B. indicus cattle. MenosTogether with their sister subspecies Bos taurus, zebu cattle (Bos indicus) have contributed to important socioeconomic changes that have shaped modern civilizations. Zebu cattle were domesticated in the Indus Valley 8000 years before present (YBP). From the domestication site, they expanded to Africa, East Asia, southwestern Asia and Europe between 4000 and 1300 YBP, intercrossing with B. taurus to form clinal variations of zebu ancestry across the landmass of Afro-Eurasia. In the past 150 years, zebu cattle reached the Americas and Oceania, where they have contributed to the prosperity of emerging economies. The zebu genome is characterized by two mitochondrial haplogroups (I1 and I2), one Y chromosome haplogroup (Y3) and three major autosomal ancestral groups (Indian-Pakistani, African and Chinese). Phenotypically, zebu animals are recognized by their hump, large ears and excess skin. They are rustic, resilient to parasites and capable of bearing the hot and humid climates of the tropics. Many resources are available to study the zebu genome, including commercial arrays of SNP, reference assemblies and publicly available genotypes and whole-genome sequences. Nevertheless, many of these resources were initially developed to support research and subsidize industrial applications in B. taurus, and therefore they can produce bias in data analysis. The combination of genomics with precision agriculture holds great promise for the identification of genetic variants affecting ec... Mostrar Tudo |
Palavras-Chave: |
Environmental adaptation; Genetic diversity; Tropical cattle. |
Categoria do assunto: |
L Ciência Animal e Produtos de Origem Animal |
Marc: |
LEADER 02433naa a2200253 a 4500 001 2117823 005 2024-02-06 008 2019 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1111/age.12836$2DOI 100 1 $aUTSUNOMIYA, Y. T. 245 $aGenomic clues of the evolutionary history of Bos indicus cattle.$h[electronic resource] 260 $c2019 520 $aTogether with their sister subspecies Bos taurus, zebu cattle (Bos indicus) have contributed to important socioeconomic changes that have shaped modern civilizations. Zebu cattle were domesticated in the Indus Valley 8000 years before present (YBP). From the domestication site, they expanded to Africa, East Asia, southwestern Asia and Europe between 4000 and 1300 YBP, intercrossing with B. taurus to form clinal variations of zebu ancestry across the landmass of Afro-Eurasia. In the past 150 years, zebu cattle reached the Americas and Oceania, where they have contributed to the prosperity of emerging economies. The zebu genome is characterized by two mitochondrial haplogroups (I1 and I2), one Y chromosome haplogroup (Y3) and three major autosomal ancestral groups (Indian-Pakistani, African and Chinese). Phenotypically, zebu animals are recognized by their hump, large ears and excess skin. They are rustic, resilient to parasites and capable of bearing the hot and humid climates of the tropics. Many resources are available to study the zebu genome, including commercial arrays of SNP, reference assemblies and publicly available genotypes and whole-genome sequences. Nevertheless, many of these resources were initially developed to support research and subsidize industrial applications in B. taurus, and therefore they can produce bias in data analysis. The combination of genomics with precision agriculture holds great promise for the identification of genetic variants affecting economically important traits such as tick resistance and heat tolerance, which were naturally selected for millennia and played a major role in the evolution of B. indicus cattle. 653 $aEnvironmental adaptation 653 $aGenetic diversity 653 $aTropical cattle 700 1 $aMILANESI, M. 700 1 $aFORTES, M. R. S. 700 1 $aPORTO?NETO, L. R. 700 1 $aUTSUNOMIYA, A. T. H. 700 1 $aSILVA, M. V. G. B. 700 1 $aGARCIA, J. F. 700 1 $aAJMONE-MARSAN, P. 773 $tAnimal Genetics$gv. 50, n. 6, p. 557-568, 2019.
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