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RUAS, Paulo Maurício et al. Maize B chromosome affects the flowering time. Theoretical and Applied Genetics, v. 138, p. 1-17, 2025Tradução . . Disponível em: https://doi.org/10.1007/s00122-025-04862-7. Acesso em: 07 out. 2025.
APA
Ruas, P. M., Mondin, M., Garcia, A. A. F., & Perecin, M. L. R. de A. (2025). Maize B chromosome affects the flowering time. Theoretical and Applied Genetics, 138, 1-17. doi:10.1007/s00122-025-04862-7
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Ruas PM, Mondin M, Garcia AAF, Perecin MLR de A. Maize B chromosome affects the flowering time [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-17.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04862-7
Vancouver
Ruas PM, Mondin M, Garcia AAF, Perecin MLR de A. Maize B chromosome affects the flowering time [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-17.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04862-7
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RIBEIRO, Pedro C. O et al. Prediction of biomass sorghum hybrids using environmental feature-enriched genomic combining ability models in tropical environments. Theoretical and Applied Genetics, v. 138, p. 1-21, 2025Tradução . . Disponível em: https://doi.org/10.1007/s00122-025-04895-y. Acesso em: 07 out. 2025.
APA
Ribeiro, P. C. O., Howard, R., Jarquin, D., Oliveira, I. C. M., Chaves, S. B., Carneiro, P. C. S., et al. (2025). Prediction of biomass sorghum hybrids using environmental feature-enriched genomic combining ability models in tropical environments. Theoretical and Applied Genetics, 138, 1-21. doi:10.1007/s00122-025-04895-y
NLM
Ribeiro PCO, Howard R, Jarquin D, Oliveira ICM, Chaves SB, Carneiro PCS, Souza VF, Schaffert RE, Damasceno CMB, Parrella RAC, Dias KOG, Pastina MM. Prediction of biomass sorghum hybrids using environmental feature-enriched genomic combining ability models in tropical environments [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-21.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04895-y
Vancouver
Ribeiro PCO, Howard R, Jarquin D, Oliveira ICM, Chaves SB, Carneiro PCS, Souza VF, Schaffert RE, Damasceno CMB, Parrella RAC, Dias KOG, Pastina MM. Prediction of biomass sorghum hybrids using environmental feature-enriched genomic combining ability models in tropical environments [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-21.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04895-y
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SILVA, Allison Vieira da et al. 110 years of rice breeding at LSU: realized genetic gains and future optimization. Theoretical and Applied Genetics, v. 138, p. 1-18, 2025Tradução . . Disponível em: https://doi.org/10.1007/s00122-025-04913-z. Acesso em: 07 out. 2025.
APA
Silva, A. V. da, Famoso, A., Linscombe, S., & Fritsche-Neto, R. (2025). 110 years of rice breeding at LSU: realized genetic gains and future optimization. Theoretical and Applied Genetics, 138, 1-18. doi:10.1007/s00122-025-04913-z
NLM
Silva AV da, Famoso A, Linscombe S, Fritsche-Neto R. 110 years of rice breeding at LSU: realized genetic gains and future optimization [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-18.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04913-z
Vancouver
Silva AV da, Famoso A, Linscombe S, Fritsche-Neto R. 110 years of rice breeding at LSU: realized genetic gains and future optimization [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-18.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04913-z
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ARAÚJO, Maurício S et al. GIS-FA: an approach to integrating thematic maps, factor-analytic, and envirotyping for cultivar targeting. Theoretical and Applied Genetics, v. 137, p. 1-23, 2025Tradução . . Disponível em: https://doi.org/10.1007/s00122-024-04579-z. Acesso em: 07 out. 2025.
APA
Araújo, M. S., Chaves, S. F. S., Dias, L. A. S., Ferreira, F. M., Pereira, G. R., Bezerra, A. R. G., et al. (2025). GIS-FA: an approach to integrating thematic maps, factor-analytic, and envirotyping for cultivar targeting. Theoretical and Applied Genetics, 137, 1-23. doi:10.1007/s00122-024-04579-z
NLM
Araújo MS, Chaves SFS, Dias LAS, Ferreira FM, Pereira GR, Bezerra ARG, Alves RS, Heinemann AB, Breseghello F, Carneiro PCS, Krause MD, Costa-Neto G, Dias KO das G. GIS-FA: an approach to integrating thematic maps, factor-analytic, and envirotyping for cultivar targeting [Internet]. Theoretical and Applied Genetics. 2025 ; 137 1-23.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-024-04579-z
Vancouver
Araújo MS, Chaves SFS, Dias LAS, Ferreira FM, Pereira GR, Bezerra ARG, Alves RS, Heinemann AB, Breseghello F, Carneiro PCS, Krause MD, Costa-Neto G, Dias KO das G. GIS-FA: an approach to integrating thematic maps, factor-analytic, and envirotyping for cultivar targeting [Internet]. Theoretical and Applied Genetics. 2025 ; 137 1-23.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-024-04579-z
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GARCIA, Antonio Augusto Franco et al. Heterosis and hybrid breeding. Theoretical and Applied Genetics, v. 138, p. 1-6, 2025Tradução . . Disponível em: https://doi.org/10.1007/s00122-025-04834-x. Acesso em: 07 out. 2025.
APA
Garcia, A. A. F., Frisch, M., Weng, Y., Varshney, R., Sorrells, M., & Fang, D. D. (2025). Heterosis and hybrid breeding. Theoretical and Applied Genetics, 138, 1-6. doi:10.1007/s00122-025-04834-x
NLM
Garcia AAF, Frisch M, Weng Y, Varshney R, Sorrells M, Fang DD. Heterosis and hybrid breeding [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-6.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04834-x
Vancouver
Garcia AAF, Frisch M, Weng Y, Varshney R, Sorrells M, Fang DD. Heterosis and hybrid breeding [Internet]. Theoretical and Applied Genetics. 2025 ; 138 1-6.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-025-04834-x
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BERNARDINO, Karine da Costa et al. Genetic loci associated with sorghum drought tolerance in multiple environments and their sensitivity to environmental covariables. Theoretical and Applied Genetics, v. 137, p. 1-22, 2024Tradução . . Disponível em: https://doi.org/10.1007/s00122-024-04761-3. Acesso em: 07 out. 2025.
APA
Bernardino, K. da C., Guilhen, J. H. S., Menezes, C. B. de, Tardin, F. D., Schaffert, R. E., Bastos, E. A., et al. (2024). Genetic loci associated with sorghum drought tolerance in multiple environments and their sensitivity to environmental covariables. Theoretical and Applied Genetics, 137, 1-22. doi:10.1007/s00122-024-04761-3
NLM
Bernardino K da C, Guilhen JHS, Menezes CB de, Tardin FD, Schaffert RE, Bastos EA, Cardoso MJ, Gazaffi R, Rosa JRBF, Garcia AAF, Guimarães CT, Kochian L, Pastina MM, Magalhaes JV. Genetic loci associated with sorghum drought tolerance in multiple environments and their sensitivity to environmental covariables [Internet]. Theoretical and Applied Genetics. 2024 ; 137 1-22.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-024-04761-3
Vancouver
Bernardino K da C, Guilhen JHS, Menezes CB de, Tardin FD, Schaffert RE, Bastos EA, Cardoso MJ, Gazaffi R, Rosa JRBF, Garcia AAF, Guimarães CT, Kochian L, Pastina MM, Magalhaes JV. Genetic loci associated with sorghum drought tolerance in multiple environments and their sensitivity to environmental covariables [Internet]. Theoretical and Applied Genetics. 2024 ; 137 1-22.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-024-04761-3
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MORAES, Aline da Costa Lima et al. Advances in genomic characterization of Urochloa humidicola: exploring polyploid inheritance and apomixis. Theoretical and Applied Genetics, v. 136, p. 1-17, 2023Tradução . . Disponível em: https://doi.org/10.1007/s00122-023-04485-w. Acesso em: 07 out. 2025.
APA
Moraes, A. da C. L., Mollinari, M., Ferreira, R. C. U., Aono, A., Lara, L. A. de C., Pessoa-Filho, M., et al. (2023). Advances in genomic characterization of Urochloa humidicola: exploring polyploid inheritance and apomixis. Theoretical and Applied Genetics, 136, 1-17. doi:10.1007/s00122-023-04485-w
NLM
Moraes A da CL, Mollinari M, Ferreira RCU, Aono A, Lara LA de C, Pessoa-Filho M, Barrios SCL, Garcia AAF, Valle CB do, Souza AP de, Vigna BBZ. Advances in genomic characterization of Urochloa humidicola: exploring polyploid inheritance and apomixis [Internet]. Theoretical and Applied Genetics. 2023 ; 136 1-17.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-023-04485-w
Vancouver
Moraes A da CL, Mollinari M, Ferreira RCU, Aono A, Lara LA de C, Pessoa-Filho M, Barrios SCL, Garcia AAF, Valle CB do, Souza AP de, Vigna BBZ. Advances in genomic characterization of Urochloa humidicola: exploring polyploid inheritance and apomixis [Internet]. Theoretical and Applied Genetics. 2023 ; 136 1-17.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-023-04485-w
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LIN, Feng et al. Breeding for disease resistance in soybean: a global perspective. Theoretical and Applied Genetics, p. 1-100, 2022Tradução . . Disponível em: https://doi.org/10.1007/s00122-022-04101-3. Acesso em: 07 out. 2025.
APA
Lin, F., Chhapekar, S. S., Vieira, C. C., Silva, M. P. da, Rojas, A., Lee, D., et al. (2022). Breeding for disease resistance in soybean: a global perspective. Theoretical and Applied Genetics, 1-100. doi:10.1007/s00122-022-04101-3
NLM
Lin F, Chhapekar SS, Vieira CC, Silva MP da, Rojas A, Lee D, Liu N, Pardo EM, Lee Y-C, Dong Z, Pinheiro JB, Ploper LD, Rupe J, Chen P, Wang D, Nguyen HT. Breeding for disease resistance in soybean: a global perspective [Internet]. Theoretical and Applied Genetics. 2022 ; 1-100.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04101-3
Vancouver
Lin F, Chhapekar SS, Vieira CC, Silva MP da, Rojas A, Lee D, Liu N, Pardo EM, Lee Y-C, Dong Z, Pinheiro JB, Ploper LD, Rupe J, Chen P, Wang D, Nguyen HT. Breeding for disease resistance in soybean: a global perspective [Internet]. Theoretical and Applied Genetics. 2022 ; 1-100.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04101-3
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LIN, Feng et al. Correction to: Breeding for disease resistance in soybean: a global perspective. Theoretical and Applied Genetics, v. 135, p. 3873–3874, 2022Tradução . . Disponível em: https://doi.org/10.1007/s00122-022-04101-3. Acesso em: 07 out. 2025.
APA
Lin, F., Chhapekar, S. S., Vieira, C. C., Silva, M. P. da, Rojas, A., Lee, D., et al. (2022). Correction to: Breeding for disease resistance in soybean: a global perspective. Theoretical and Applied Genetics, 135, 3873–3874. doi:10.1007/s00122-022-04101-3
NLM
Lin F, Chhapekar SS, Vieira CC, Silva MP da, Rojas A, Lee D, Liu N, Pardo EM, Lee Y-C, Dong Z, Pinheiro JB, Ploper LD, Rupe J, Chen P, Wang D, Nguyen HT. Correction to: Breeding for disease resistance in soybean: a global perspective [Internet]. Theoretical and Applied Genetics. 2022 ; 135 3873–3874.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04101-3
Vancouver
Lin F, Chhapekar SS, Vieira CC, Silva MP da, Rojas A, Lee D, Liu N, Pardo EM, Lee Y-C, Dong Z, Pinheiro JB, Ploper LD, Rupe J, Chen P, Wang D, Nguyen HT. Correction to: Breeding for disease resistance in soybean: a global perspective [Internet]. Theoretical and Applied Genetics. 2022 ; 135 3873–3874.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04101-3
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DIAS, Kaio O. G et al. Leveraging probability concepts for cultivar recommendation in multi‑environment trials. Theoretical and Applied Genetics, 2022Tradução . . Disponível em: https://doi.org/10.1007/s00122-022-04041-y. Acesso em: 07 out. 2025.
APA
Dias, K. O. G., Santos, J. P. R. dos, Krause, M. D., Piepho, H. ‑P., Guimarães, L. J. M., Pastina, M. M., & Garcia, A. A. F. (2022). Leveraging probability concepts for cultivar recommendation in multi‑environment trials. Theoretical and Applied Genetics. doi:10.1007/s00122-022-04041-y
NLM
Dias KOG, Santos JPR dos, Krause MD, Piepho H‑P, Guimarães LJM, Pastina MM, Garcia AAF. Leveraging probability concepts for cultivar recommendation in multi‑environment trials [Internet]. Theoretical and Applied Genetics. 2022 ;[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04041-y
Vancouver
Dias KOG, Santos JPR dos, Krause MD, Piepho H‑P, Guimarães LJM, Pastina MM, Garcia AAF. Leveraging probability concepts for cultivar recommendation in multi‑environment trials [Internet]. Theoretical and Applied Genetics. 2022 ;[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-022-04041-y
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BATISTA, Lorena Guimarães et al. Genomic prediction with allele dosage information in highly polyploid species. Theoretical and Applied Genetics, v. 135, p. 723–739, 2022Tradução . . Disponível em: https://doi.org/10.1007/s00122-021-03994-w. Acesso em: 07 out. 2025.
APA
Batista, L. G., Mello, V. H., Souza, A. P. de, & Margarido, G. R. A. (2022). Genomic prediction with allele dosage information in highly polyploid species. Theoretical and Applied Genetics, 135, 723–739. doi:10.1007/s00122-021-03994-w
NLM
Batista LG, Mello VH, Souza AP de, Margarido GRA. Genomic prediction with allele dosage information in highly polyploid species [Internet]. Theoretical and Applied Genetics. 2022 ; 135 723–739.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-021-03994-w
Vancouver
Batista LG, Mello VH, Souza AP de, Margarido GRA. Genomic prediction with allele dosage information in highly polyploid species [Internet]. Theoretical and Applied Genetics. 2022 ; 135 723–739.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-021-03994-w
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PERLO, Virginie et al. Transcriptome changes in the developing sugarcane culm associated with high yield and early-season high sugar content. Theoretical and Applied Genetics, 2022Tradução . . Disponível em: https://doi.org/10.1007/S00122-022-04058-3. Acesso em: 07 out. 2025.
APA
Perlo, V., Margarido, G. R. A., Botha, F. C., Furtado, A., Hodgson-Kratky, K., Correr, F. H., & Henry, R. J. (2022). Transcriptome changes in the developing sugarcane culm associated with high yield and early-season high sugar content. Theoretical and Applied Genetics. doi:10.1007/S00122-022-04058-3
NLM
Perlo V, Margarido GRA, Botha FC, Furtado A, Hodgson-Kratky K, Correr FH, Henry RJ. Transcriptome changes in the developing sugarcane culm associated with high yield and early-season high sugar content [Internet]. Theoretical and Applied Genetics. 2022 ;[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/S00122-022-04058-3
Vancouver
Perlo V, Margarido GRA, Botha FC, Furtado A, Hodgson-Kratky K, Correr FH, Henry RJ. Transcriptome changes in the developing sugarcane culm associated with high yield and early-season high sugar content [Internet]. Theoretical and Applied Genetics. 2022 ;[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/S00122-022-04058-3
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GALLI, Giovanni et al. A novel way to validate UAS-based high-throughput phenotyping protocols using in silico experiments for plant breeding purposes. Theoretical and Applied Genetics, v. 134, p. 715-730, 2021Tradução . . Disponível em: https://doi.org/10.1007/s00122-020-03726-6. Acesso em: 07 out. 2025.
APA
Galli, G., Sabadin, J. F. G., Costa-Neto, G. M. F., & Fritsche-Neto, R. (2021). A novel way to validate UAS-based high-throughput phenotyping protocols using in silico experiments for plant breeding purposes. Theoretical and Applied Genetics, 134, 715-730. doi:10.1007/s00122-020-03726-6
NLM
Galli G, Sabadin JFG, Costa-Neto GMF, Fritsche-Neto R. A novel way to validate UAS-based high-throughput phenotyping protocols using in silico experiments for plant breeding purposes [Internet]. Theoretical and Applied Genetics. 2021 ;134 715-730.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-020-03726-6
Vancouver
Galli G, Sabadin JFG, Costa-Neto GMF, Fritsche-Neto R. A novel way to validate UAS-based high-throughput phenotyping protocols using in silico experiments for plant breeding purposes [Internet]. Theoretical and Applied Genetics. 2021 ;134 715-730.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-020-03726-6
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COSTA, Larissa Carvalho et al. Different loci control resistance to different isolates of the same race of Colletotrichum lindemuthianum in common bean. Theoretical and Applied Genetics, v. 134, p. 543-556, 2021Tradução . . Disponível em: https://doi.org/10.1007/s00122-020-03713-x. Acesso em: 07 out. 2025.
APA
Costa, L. C., Nalin, R. S., Dias, M. A., Ferreira, M. E., Song, Q., Pastor-Corrales, M. A., et al. (2021). Different loci control resistance to different isolates of the same race of Colletotrichum lindemuthianum in common bean. Theoretical and Applied Genetics, 134, 543-556. doi:10.1007/s00122-020-03713-x
NLM
Costa LC, Nalin RS, Dias MA, Ferreira ME, Song Q, Pastor-Corrales MA, Hurtado-Gonzales OP, Souza EA de. Different loci control resistance to different isolates of the same race of Colletotrichum lindemuthianum in common bean [Internet]. Theoretical and Applied Genetics. 2021 ;134 543-556.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-020-03713-x
Vancouver
Costa LC, Nalin RS, Dias MA, Ferreira ME, Song Q, Pastor-Corrales MA, Hurtado-Gonzales OP, Souza EA de. Different loci control resistance to different isolates of the same race of Colletotrichum lindemuthianum in common bean [Internet]. Theoretical and Applied Genetics. 2021 ;134 543-556.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-020-03713-x
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LYRA, Danilo Hottis et al. Modeling copy number variation in the genomic prediction of maize hybrids. Theoretical and Applied Genetics, v. 132, p. 273-288, 2019Tradução . . Disponível em: https://doi.org/10.1007/s00122-018-3215-2. Acesso em: 07 out. 2025.
APA
Lyra, D. H., Galli, G., Alves, F. C., Granato, Í. S. C., Vidotti, M. S., Bandeira e Sousa, M., et al. (2019). Modeling copy number variation in the genomic prediction of maize hybrids. Theoretical and Applied Genetics, 132, 273-288. doi:10.1007/s00122-018-3215-2
NLM
Lyra DH, Galli G, Alves FC, Granato ÍSC, Vidotti MS, Bandeira e Sousa M, Morosini JS, Crossa J, Fritsche-Neto R. Modeling copy number variation in the genomic prediction of maize hybrids [Internet]. Theoretical and Applied Genetics. 2019 ; 132 273-288.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-018-3215-2
Vancouver
Lyra DH, Galli G, Alves FC, Granato ÍSC, Vidotti MS, Bandeira e Sousa M, Morosini JS, Crossa J, Fritsche-Neto R. Modeling copy number variation in the genomic prediction of maize hybrids [Internet]. Theoretical and Applied Genetics. 2019 ; 132 273-288.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-018-3215-2
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DIAS, Kaio Olimpio das Graças et al. Novel strategies for genomic prediction of untested single-cross maize hybrids using unbalanced historical data. Theoretical and Applied Genetics, p. 1-13, 2019Tradução . . Disponível em: https://doi.org/10.1007/s00122-019-03475-1. Acesso em: 07 out. 2025.
APA
Dias, K. O. das G., Piepho, H. P., Guimaraes, L. J. M., Guimaraes, P. E. O., Parentoni, S. N., Pinto, M. O., et al. (2019). Novel strategies for genomic prediction of untested single-cross maize hybrids using unbalanced historical data. Theoretical and Applied Genetics, 1-13. doi:10.1007/s00122-019-03475-1
NLM
Dias KO das G, Piepho HP, Guimaraes LJM, Guimaraes PEO, Parentoni SN, Pinto MO, Noda RW, Magalhaes JV, Guimaraes CT, Garcia AAF, Pastina MM. Novel strategies for genomic prediction of untested single-cross maize hybrids using unbalanced historical data [Internet]. Theoretical and Applied Genetics. 2019 ; 1-13.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-019-03475-1
Vancouver
Dias KO das G, Piepho HP, Guimaraes LJM, Guimaraes PEO, Parentoni SN, Pinto MO, Noda RW, Magalhaes JV, Guimaraes CT, Garcia AAF, Pastina MM. Novel strategies for genomic prediction of untested single-cross maize hybrids using unbalanced historical data [Internet]. Theoretical and Applied Genetics. 2019 ; 1-13.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-019-03475-1
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FRISTCHE-NETO, Roberto e AKDEMIR, Deniz e JANNINK, Jean-Luc. Accuracy of genomic selection to predict maize single-crosses obtained through different mating designs. Theoretical and Applied Genetics, v. 131, n. 5, p. 1153-1162, 2018Tradução . . Disponível em: https://doi.org/10.1007/s00122-018-3068-8. Acesso em: 07 out. 2025.
APA
Fristche-Neto, R., Akdemir, D., & Jannink, J. -L. (2018). Accuracy of genomic selection to predict maize single-crosses obtained through different mating designs. Theoretical and Applied Genetics, 131( 5), 1153-1162. doi:10.1007/s00122-018-3068-8
NLM
Fristche-Neto R, Akdemir D, Jannink J-L. Accuracy of genomic selection to predict maize single-crosses obtained through different mating designs [Internet]. Theoretical and Applied Genetics. 2018 ; 131( 5): 1153-1162.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-018-3068-8
Vancouver
Fristche-Neto R, Akdemir D, Jannink J-L. Accuracy of genomic selection to predict maize single-crosses obtained through different mating designs [Internet]. Theoretical and Applied Genetics. 2018 ; 131( 5): 1153-1162.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-018-3068-8
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PÉREZ VEGA, Elena et al. Genetic mapping of two genes conferring resistance to powdery mildew in common bean (Phaseolus vulgaris L.). Theoretical and Applied Genetics, v. 126, p. 1503-1512 : + Supplementary materials ( S1-S10), 2014Tradução . . Disponível em: https://doi.org/10.1007/s00122-013-2068-y. Acesso em: 07 out. 2025.
APA
Pérez Vega, E., Trabanco, N., Campa, A., & Ferreira, J. J. (2014). Genetic mapping of two genes conferring resistance to powdery mildew in common bean (Phaseolus vulgaris L.). Theoretical and Applied Genetics, 126, 1503-1512 : + Supplementary materials ( S1-S10). doi:10.1007/s00122-013-2068-y
NLM
Pérez Vega E, Trabanco N, Campa A, Ferreira JJ. Genetic mapping of two genes conferring resistance to powdery mildew in common bean (Phaseolus vulgaris L.) [Internet]. Theoretical and Applied Genetics. 2014 ; 126 1503-1512 : + Supplementary materials ( S1-S10).[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-013-2068-y
Vancouver
Pérez Vega E, Trabanco N, Campa A, Ferreira JJ. Genetic mapping of two genes conferring resistance to powdery mildew in common bean (Phaseolus vulgaris L.) [Internet]. Theoretical and Applied Genetics. 2014 ; 126 1503-1512 : + Supplementary materials ( S1-S10).[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-013-2068-y
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ABNT
OBLESSUC, Paula Rodrigues et al. Increasing the density of markers around a major QTL controlling resistance to angular leaf spot in common bean. Theoretical and Applied Genetics, v. 126, n. 10, p. 2451-2465, 2013Tradução . . Disponível em: https://doi.org/10.1007/s00122-013-2146-1. Acesso em: 07 out. 2025.
APA
Oblessuc, P. R., Perseguini, J. M. K. C., Baroni, · R. M., Chiorato, A. F., Carbonell, S. A. M., Mondego, J. M. C., et al. (2013). Increasing the density of markers around a major QTL controlling resistance to angular leaf spot in common bean. Theoretical and Applied Genetics, 126( 10), 2451-2465. doi:10.1007/s00122-013-2146-1
NLM
Oblessuc PR, Perseguini JMKC, Baroni · RM, Chiorato AF, Carbonell SAM, Mondego JMC, Vidal RO, Camargo LEA, Benchimol‑Reis LL. Increasing the density of markers around a major QTL controlling resistance to angular leaf spot in common bean [Internet]. Theoretical and Applied Genetics. 2013 ; 126( 10): 2451-2465.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-013-2146-1
Vancouver
Oblessuc PR, Perseguini JMKC, Baroni · RM, Chiorato AF, Carbonell SAM, Mondego JMC, Vidal RO, Camargo LEA, Benchimol‑Reis LL. Increasing the density of markers around a major QTL controlling resistance to angular leaf spot in common bean [Internet]. Theoretical and Applied Genetics. 2013 ; 126( 10): 2451-2465.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-013-2146-1
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
SABADIN, P. K et al. Studying the genetic basis of drought tolerance in sorghum by managed stress trials and adjustments for phenological and plant height differences. Theoretical and Applied Genetics, v. 124, n. 8, p. 1389-1402, 2012Tradução . . Disponível em: https://doi.org/10.1007/s00122-012-1795-9. Acesso em: 07 out. 2025.
APA
Sabadin, P. K., Molosetti, M., Boer, M. P., Tardin, F. D., Santos, F. G., Guimarães, C. T., et al. (2012). Studying the genetic basis of drought tolerance in sorghum by managed stress trials and adjustments for phenological and plant height differences. Theoretical and Applied Genetics, 124( 8), 1389-1402. doi:10.1007/s00122-012-1795-9
NLM
Sabadin PK, Molosetti M, Boer MP, Tardin FD, Santos FG, Guimarães CT, Gomide RL, Andrade CL, Albuquerque PEP, Caniato FF, Mollinari M, Margarido GRA, Oliveira BF, Schaffert RE, Garcia AAF, van Eeuwijk FA, Mgalhaes JV. Studying the genetic basis of drought tolerance in sorghum by managed stress trials and adjustments for phenological and plant height differences [Internet]. Theoretical and Applied Genetics. 2012 ; 124( 8): 1389-1402.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-012-1795-9
Vancouver
Sabadin PK, Molosetti M, Boer MP, Tardin FD, Santos FG, Guimarães CT, Gomide RL, Andrade CL, Albuquerque PEP, Caniato FF, Mollinari M, Margarido GRA, Oliveira BF, Schaffert RE, Garcia AAF, van Eeuwijk FA, Mgalhaes JV. Studying the genetic basis of drought tolerance in sorghum by managed stress trials and adjustments for phenological and plant height differences [Internet]. Theoretical and Applied Genetics. 2012 ; 124( 8): 1389-1402.[citado 2025 out. 07 ] Available from: https://doi.org/10.1007/s00122-012-1795-9