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Registros recuperados : 35 | |
1. | | MOREIRA, G. C. M.; SALVIAN, M.; BOSCHIERO, C.; CESAR, A. S. M.; REECY, J. M.; GODOY, T. F.; LEDUR, M. C.; GARRICK, D.; MOURÃO, G. B.; COUTINHO, L. L. Genome-wide association scan for QTL and their positional candidate genes associated with internal organ traits in chickens. BMC Genomics, v. 20, n. 669, 2019. Biblioteca(s): Embrapa Suínos e Aves. |
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2. | | MOREIRA, G. C. M.; BOSCHIERO, C.; CESAR, A. S. M.; REECY, J. M.; GODOY, T. F.; TREVISOLI, P. A.; CANTAO, M. E.; LEDUR, M. C.; IBELLI, A. M. G.; MOURA, A. S. M. T.; GARRICK, D.; COUTINHO, L. L. A genome-wide association study reveals novel genomic regions and positional candidate genes for fat deposition in broiler chickens. BMC Genomics, v. 19, n. 374, 2018. Biblioteca(s): Embrapa Suínos e Aves. |
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3. | | GONÇALVES, T. M.; REGITANO, L. C. de A.; KOLTES, J. E.; CESAR, A. S. M.; ANDRADE, S. C. da S.; MOURAO, G. B.; GASPARIN, G.; MOREIRA, G. C. M.; FRITZ-WATERS, E.; REECY, J. M.; COUTINHO, L. L. Gene co-expression analysis indicates potential pathways and regulators of beef tenderness in Nellore cattle. Frontiers in Genetics, v.9, n. 441, p. 1-18, 2018. Biblioteca(s): Embrapa Pecuária Sudeste. |
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4. | | OLIVEIRA, P. S. N. DE; ANDRADE, B. G.; CONTEVILLE, L. C.; CARDOSO, T. F.; PASCHOAL, J. J.; JOSAHKIAN, L. A.; ALMEIDA, L. F.; MARCONDES, C. R.; MOURÃO, G. B.; COUTINHO, L. L.; REECY, J. M.; REGITANO, L. C. de A. Microbial diversity in the stool of Bos indicus divergent for feed efficiency. Italian Journal of Animal Science, v. 22, supplement 1, 2023. p. 194. Congress of the Animal Science and Production Association, 25., Monopoli (BARI – ITALY), June 13–16, 2023. Biblioteca(s): Embrapa Pecuária Sudeste. |
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5. | | OLIVEIRA, P. S. N. de; CESAR, A. S. M.; OLIVEIRA, G. B. de; TIZIOTO, P. C.; POLETI, M. D.; DINIZ, W. J. da S.; LIMA, A. O. de; REECY, J. M.; COUTINHO, L. L.; REGITANO, L. C. de A. miRNAs related to fatty acids composition in Nellore cattle. Journal of Animal Science, v. 94, e-suppl. 5; Journal of Dairy Science, v. 99, e-suppl. 1, p. 159, jul. 2016. p. 160. Biblioteca(s): Embrapa Pecuária Sudeste. |
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6. | | CESAR, A. S. M.; REGITANO, L. C. de A.; KOLTES, J.; FRITZ-WATERS, E. R.; TULLIO, R. R.; LANNA, D. P. D.; REECY, J. M.; MOURÃO, G. B.; GASPARIN, G.; COUTINHO, L. L. Transcriptome profile in Longissimus dorsi muscle from Nellore steers with extreme GEBV for intramuscular fat percentage. In: INTERNATIONAL SYMPOSIUM ON ANIMAL FUNCTIONAL GENOMICS, 5., 2013, Guarujá. Abstract... Guarujá:[ s.n.], 2013. AB.07. Biblioteca(s): Embrapa Pecuária Sudeste. |
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7. | | MOREIRA, G. C. M.; POLETI, M. D.; PÉRTILLE, F.; BOSCHIERO, C.; CESAR, A. S. M.; GODOY, T. F.; LEDUR, M. C.; REECY, J. M.; GARRICK, D. J.; COUTINHO, L. L. Unraveling genomic associations with feed efficiency and body weight traits in chickens through an integrative approach. BMC Genetics, v. 20, n. 83, 2019. Biblioteca(s): Embrapa Suínos e Aves. |
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8. | | MOREIRA, G. C. M.; BOSCHIERO, C.; CESAR, A. S. M.; REECY, J. M.; GODOY, T. F.; PÉRTILLE, F.; LEDUR, M. C.; MOURA, A. S. A. M. T. M.; GARRICK, D. J.; COUTINHO, L. L. Integration of genome wide association studies and whole genome sequencing provides novel insights into fat deposition in chicken. Scientific Reports, v. 8, n. 16222, 2018. Biblioteca(s): Embrapa Suínos e Aves. |
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9. | | MOREIRA, G. C. M.; GODOY, T. F.; BOSCHIERO, C.; CESAR, A. S. M.; REECY, J. M.; LEDUR, M. C.; GARRICK, D.; SILVA, V. H. da; CROOIJAMANS, R. P.; GROENEN, M. A. M.; COUTINHO, L. L. Integration of GWAS, CNV and sele ction signature reveals candidate genes for abdominal fat regulation in chickens. In: WORLD CONGRESS ON GENETICS APPLIED TO LIVESTOCK PRODUCTION, 11., 2018, Auckland, New Zealand. Proceedings... Massey University, 2018. Digital Archive. Biblioteca(s): Embrapa Suínos e Aves. |
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10. | | OLIVEIRA, G. B.; REGITANO, L. C. de A.; CESAR, A. S. M.; REECY, J. M.; DEGAKI, K. Y.; POLETI, M. D.; FELICIO, A. M.; KOLTES, J. E.; COUTINHO, L. L. Integrative analysis of microRNAs and mRNAs revealed regulation of composition and metabolism in Nelore cattle. BMC Genomics, v. 19, n. 126, p. 2-16, 2018. Biblioteca(s): Embrapa Pecuária Sudeste. |
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11. | | OLIVEIRA, P. S. N. de; TIZIOTO, P. C.; OLIVEIRA, G. B.; CESAR, A. S. M.; DINIZ, W. J. da S.; LIMA, A. O. de; REECY, J. M.; COUTINHO, L. L.; REGITANO, L. C. de A. Differentially expressed miRNAs in skeletal muscle related to feed efficiency in Nellore cattle. Journal of Animal Science, v. 94, e-suppl. 5; Journal of Dairy Science, v. 99, e-suppl. 1, p. 159, jul. 2016. Biblioteca(s): Embrapa Pecuária Sudeste. |
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12. | | OLIVEIRA, P. S. N. DE; ANDRADE, B. G.; CARDOSO, T. F.; PASCHOAL, J. J.; JOSAHKIAN, L. A.; ALMEIDA, L. F.; MARCONDES, C. R.; MOURÃO, G. B.; COUTINHO, L. L.; REECY, J. M.; REGITANO, L. C. de A. Differentially expressed miRNAs in the stool of Bos indicus divergent for feed efficiency. Italian Journal of Animal Science, v. 22, supplement 1, 2023. p. 193-194. Congress of the Animal Science and Production Association, 25., Monopoli (BARI – ITALY), June 13–16, 2023. Biblioteca(s): Embrapa Pecuária Sudeste. |
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13. | | CESAR, A. S. M.; REGITANO, L. C. de A.; LANNA, D. P. D.; POLETI, M. D.; KOLTES, J. E.; REECY, J. M.; FRITZ-WATERS, E.; KRAMER, L.; GARRICK, D.; MUDADU, M. de A.; TULLIO, R. R.; COUTINHO, L. L. Expression quantitative trait loci (eQTL) hotspot regions from whole genome analysis of Nellore steers. In: PLANT AND ANIMAL GENOME CONFERENCE, 24., 2016, San Diego. Anais... San Diego: PAG, 2016. Biblioteca(s): Embrapa Pecuária Sudeste. |
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14. | | MALHEIROS, J. M.; CORREIA, B. S. B.; CERIBELI, C.; CARDOSO, D. R.; COLNAGO, L. A.; BOGUSZ JUNIOR, S.; REECY, J. M.; MOURÃO, G. B.; COUTINHO, L. L.; PALHARES, J. C. P.; BERNDT, A.; REGITANO, L. C. de A. Comparative untargeted metabolome analysis of ruminal fluid and feces of Nelore steers (Bos indicus). Scientific Reports, v.11, n.1, e12752, 2021. 13 p. Biblioteca(s): Embrapa Pecuária Sudeste. |
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15. | | MALHEIROS, J. M.; CORREIA, B. S. B.; CERIBELI, C.; CARDOSO, D. R.; COLNAGO, L. A.; BOGUSZ JUNIOR, S.; REECY, J. M.; MOURÃO, G. B.; COUTINHO, L. L.; PALHARES, J. C. P.; BERNDT, A.; REGITANO, L. C. de A. Comparative untargeted metabolome analysis of ruminal fuid and feces of Nelore steers (Bos indicus). Scientific Reports, v. 11, n. 1, e12752, 2021. Biblioteca(s): Embrapa Instrumentação; Embrapa Pecuária Sudeste. |
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16. | | OLIVEIRA, P. S. N.; CESAR, A. S. M.; NASCIMENTO, M. L. do; SOUZA, M. M.; TULLIO, R. R.; LANNA, D. P.; SONSTEGARD, T.; MOURÃO, G. B.; REECY, J. M.; GARRICK, D. J.; MUDADU, M. de A.; REGITANO, L. C. de A.; COUTINHO, L. L. Positional candidate genes for residual intake and gain in Nelore beef cattle. In:WORLD CONGRESS OF GENETICS APPLIED TO LIVESTOK PRODUCTION, 10; . 2014, Vancouver. Proceedings... Vancouver: American Society of animal Science, 2014 Biblioteca(s): Embrapa Pecuária Sudeste. |
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17. | | CESAR, A. S. M.; REGITANO, L. C. de A.; MOURÃO, G. B.; TULLIO, R. R.; LANNA, D. P. D.; NASSU, R. T.; MUDADU, M. de A.; OLIVEIRA, P. S. N.; NASCIMENTO, M. L. do; CHAVES, A. S.; ALENCAR, M. M. de; SONSTEGRAD, T. S.; GARRICK, D. J.; REECY, J. M.; COUTINHO, L. L. Genome-wide association study for intramuscular fat deposition and composition in Nellore cattle. BMC Genetics, v. 15, p. 39, 2014 Biblioteca(s): Embrapa Pecuária Sudeste. |
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18. | | OLIVEIRA, P. S. N.; CESAR, A. S. M.; NASCIMENTO, M. L. do; CHAVES, A. S.; TIZIOTO, P. C.; TULLIO, R. R.; LANNA, D. P. D.; ROSA, A. do N.; SONSTEGARD, T. S.; MOURÃO, G. B.; REECY, J. M.; GARRICK, D. J.; MUDADU, M. de A.; COUTINHO, L. L.; REGITANO, L. C. de A. Identification of genomic regions associated with feed efficiency in Nelore cattle. BMC Genetics, v. 15, n. 1, 2014 10 p. Biblioteca(s): Embrapa Pecuária Sudeste. |
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19. | | CESAR, A. S. M.; REGITANO, L. C. de A.; REECY, J. M.; POLETI, M. D.; OLIVEIRA, P. S. N. de; OLIVEIRA, G. B. de; MOREIRA, G. C. M.; MUDADU, M. de A.; TIZIOTO, P. L.; KOLTES, J. E.; Fritz-Waters, E.; KRAMER, L.; GARRICK, D.; BEIKI, H.; GEISTLINGER, L.; MOURÃO, G. B.; ZERLOTINI NETO, A.; COUTINHO, L. L. Identification of putative regulatory regions and transcription factors associated with intramuscular fat content traits. BMC Genomics, v. 19, p. 1-20, 2018. Article number: 499. Na publicação: Luciana C. A. Regitano, Maurício A. Mudadu, Adhemar Zerlotini. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Pecuária Sudeste. |
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20. | | ANDRADE, B. G. N.; DONATONI, F. A. B.; CUADRAT, R. R.; CARDOSO, T. F.; MALHEIROS, J. M.; OLIVEIRA, P. S. N. DE; PETRINI, J.; MOURÃO, G. B.; COUTINHO, L. L.; REECY, J. M.; KOLTES, J. E.; ZERLOTINI NETO, A.; MEDEIROS, S. R. de; BERNDT, A.; PALHARES, J. C. P.; AFLI, H.; REGITANO, L. C. de A. Stool and ruminal microbiome components associated with methane emission and feed efficiency in Nelore beef cattle. Frontiers in Genetics, v. 13, 812828, may, 2022. 12 p. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Pecuária Sudeste. |
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Registros recuperados : 35 | |
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| Acesso ao texto completo restrito à biblioteca da Embrapa Suínos e Aves. Para informações adicionais entre em contato com cnpsa.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Suínos e Aves. |
Data corrente: |
04/10/2019 |
Data da última atualização: |
04/10/2019 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
MOREIRA, G. C. M.; SALVIAN, M.; BOSCHIERO, C.; CESAR, A. S. M.; REECY, J. M.; GODOY, T. F.; LEDUR, M. C.; GARRICK, D.; MOURÃO, G. B.; COUTINHO, L. L. |
Afiliação: |
GABRIEL COSTA MONTEIRO MOREIRA, ESALQ; MAYARA SALVIAN, ESALQ; CLARISSA BOSCHIERO, ESALQ; ALINE SILVA MELLO CESAR, ESALQ; JAMES M. REECY, Iowa State University/Department of Animal Science; THAIS FERNANDA GODOY, ESALQ; MONICA CORREA LEDUR, CNPSA; DORIAN J. GARRICK, Massey University/ School of Agriculture; GERSON BARRETO MOURÃO, ESALQ; LUIZ LEHMMAN COUTINHO, ESALQ. |
Título: |
Genome-wide association scan for QTL and their positional candidate genes associated with internal organ traits in chickens. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
BMC Genomics, v. 20, n. 669, 2019. |
DOI: |
10.1186/s12864-019-6040-3 |
Idioma: |
Inglês |
Conteúdo: |
Abstract Background: Poultry breeding programs have been focused on improvement of growth and carcass traits, however, this has resulted in correlated changes in internal organ weights and increased incidence of metabolic disorders. These disorders can affect feed efficiency or even cause death. We used a high density SNP array (600 K, Affymetrix) to estimate genomic heritability, perform genome-wide association analysis, and identify genomic regions and positional candidate genes (PCGs) associated with internal organ traits in an F2 chicken population. We integrated knowledge of haplotype blocks, selection signature regions and sequencing data to refine the list of PCGs. Results: Estimated genomic heritability for internal organ traits in chickens ranged from low (LUNGWT, 0.06) to high (GIZZWT, 0.45). A total of 20 unique 1 Mb windows identified on GGA1, 2, 4, 7, 12, 15, 18, 19, 21, 27 and 28 were significantly associated with intestine length, and weights or percentages of liver, gizzard or lungs. Within these windows, 14 PCGs were identified based on their biological functions: TNFSF11, GTF2F2, SPERT, KCTD4, HTR2A, RB1, PCDH7, LCORL, LDB2, NR4A2, GPD2, PTPN11, ITGB4 and SLC6A4. From those genes, two were located within haplotype blocks and three overlapped with selection signature regions. A total of 13,748 annotated sequence SNPs were in the 14 PCGs, including 156 SNPs in coding regions (124 synonymous, 26 non-synonymous, and 6 splice variants). Seven deleterious SNPs were identified in TNFSF11, NR4A2 or ITGB4 genes. Conclusions: The results from this study provide novel insights to understand the genetic architecture of internal organ traits in chickens. The QTL detection performed using a high density SNP array covered the whole genome allowing the discovery of novel QTL associated with organ traits. We identified PCGs within the QTL involved in biological processes that may regulate internal organ growth and development. Potential functional genetic variations were identified generating crucial information that, after validation, might be used in poultry breeding programs to reduce the occurrence of metabolic disorders. MenosAbstract Background: Poultry breeding programs have been focused on improvement of growth and carcass traits, however, this has resulted in correlated changes in internal organ weights and increased incidence of metabolic disorders. These disorders can affect feed efficiency or even cause death. We used a high density SNP array (600 K, Affymetrix) to estimate genomic heritability, perform genome-wide association analysis, and identify genomic regions and positional candidate genes (PCGs) associated with internal organ traits in an F2 chicken population. We integrated knowledge of haplotype blocks, selection signature regions and sequencing data to refine the list of PCGs. Results: Estimated genomic heritability for internal organ traits in chickens ranged from low (LUNGWT, 0.06) to high (GIZZWT, 0.45). A total of 20 unique 1 Mb windows identified on GGA1, 2, 4, 7, 12, 15, 18, 19, 21, 27 and 28 were significantly associated with intestine length, and weights or percentages of liver, gizzard or lungs. Within these windows, 14 PCGs were identified based on their biological functions: TNFSF11, GTF2F2, SPERT, KCTD4, HTR2A, RB1, PCDH7, LCORL, LDB2, NR4A2, GPD2, PTPN11, ITGB4 and SLC6A4. From those genes, two were located within haplotype blocks and three overlapped with selection signature regions. A total of 13,748 annotated sequence SNPs were in the 14 PCGs, including 156 SNPs in coding regions (124 synonymous, 26 non-synonymous, and 6 splice variants). Seven deleterious SNPs we... Mostrar Tudo |
Palavras-Chave: |
Deleterious mutations; Genomic heritability; GWAS; Metabolic disorders. |
Thesagro: |
Avicultura; Genética Animal; Genoma; Melhoramento Genético Animal. |
Thesaurus NAL: |
Genomics; Gizzard; Heart; Intestines; Liver; Lungs; Metabolic diseases. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03326naa a2200421 a 4500 001 2112783 005 2019-10-04 008 2019 bl uuuu u00u1 u #d 024 7 $a10.1186/s12864-019-6040-3$2DOI 100 1 $aMOREIRA, G. C. M. 245 $aGenome-wide association scan for QTL and their positional candidate genes associated with internal organ traits in chickens.$h[electronic resource] 260 $c2019 520 $aAbstract Background: Poultry breeding programs have been focused on improvement of growth and carcass traits, however, this has resulted in correlated changes in internal organ weights and increased incidence of metabolic disorders. These disorders can affect feed efficiency or even cause death. We used a high density SNP array (600 K, Affymetrix) to estimate genomic heritability, perform genome-wide association analysis, and identify genomic regions and positional candidate genes (PCGs) associated with internal organ traits in an F2 chicken population. We integrated knowledge of haplotype blocks, selection signature regions and sequencing data to refine the list of PCGs. Results: Estimated genomic heritability for internal organ traits in chickens ranged from low (LUNGWT, 0.06) to high (GIZZWT, 0.45). A total of 20 unique 1 Mb windows identified on GGA1, 2, 4, 7, 12, 15, 18, 19, 21, 27 and 28 were significantly associated with intestine length, and weights or percentages of liver, gizzard or lungs. Within these windows, 14 PCGs were identified based on their biological functions: TNFSF11, GTF2F2, SPERT, KCTD4, HTR2A, RB1, PCDH7, LCORL, LDB2, NR4A2, GPD2, PTPN11, ITGB4 and SLC6A4. From those genes, two were located within haplotype blocks and three overlapped with selection signature regions. A total of 13,748 annotated sequence SNPs were in the 14 PCGs, including 156 SNPs in coding regions (124 synonymous, 26 non-synonymous, and 6 splice variants). Seven deleterious SNPs were identified in TNFSF11, NR4A2 or ITGB4 genes. Conclusions: The results from this study provide novel insights to understand the genetic architecture of internal organ traits in chickens. The QTL detection performed using a high density SNP array covered the whole genome allowing the discovery of novel QTL associated with organ traits. We identified PCGs within the QTL involved in biological processes that may regulate internal organ growth and development. Potential functional genetic variations were identified generating crucial information that, after validation, might be used in poultry breeding programs to reduce the occurrence of metabolic disorders. 650 $aGenomics 650 $aGizzard 650 $aHeart 650 $aIntestines 650 $aLiver 650 $aLungs 650 $aMetabolic diseases 650 $aAvicultura 650 $aGenética Animal 650 $aGenoma 650 $aMelhoramento Genético Animal 653 $aDeleterious mutations 653 $aGenomic heritability 653 $aGWAS 653 $aMetabolic disorders 700 1 $aSALVIAN, M. 700 1 $aBOSCHIERO, C. 700 1 $aCESAR, A. S. M. 700 1 $aREECY, J. M. 700 1 $aGODOY, T. F. 700 1 $aLEDUR, M. C. 700 1 $aGARRICK, D. 700 1 $aMOURÃO, G. B. 700 1 $aCOUTINHO, L. L. 773 $tBMC Genomics$gv. 20, n. 669, 2019.
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