

Kruglyak, L, “The road to genome-wide association studies.” Nature Reviews Genetics 9, no. Zeng, “Modeling Epistasis of Quantitative Trait Loci Using Cockerham’s Model.” Genetics 160 (2002): 1243-1261. Zeng, and R D Teasdale, “Multiple Interval Mapping for Quantitative Trait Loci.” Genetics 125 (1999): 1203-1216. Zeng, “Multiple Trait Analysis of Genetic Mapping for Quantitative Trait Loci.” Genetics 140 (1995): 1111-1127. Zeng, “Mapping quantitative trait loci with dominant and missing markers in various crosses from two inbred lines.” Genetica 101, no.

Jansen, R C, and P Stam, “High Resolution of Quantitative Traits Into Multiple Loci via Interval Mapping.” Genetics 136 (1994): 1447-1455. Jannink J-L, Lorenz AJ, Iwata H (2010) Genomic selection in plant breeding: from theory to practice. Heffner EL, Sorrells ME, Jannink J-L (2009) Genomic Selection for Crop Improvement. Gazaffi R, Margarido GRA, Pastina MM, et al (2014) A model for quantitative trait loci mapping, linkage phase, and segregation pattern estimation for a full-sib progeny. Gaut, B S, and A D Long, “The Lowdown on Linkage Disequilibrium.” The Plant Cell 15, no. Zeng, “Quantitative Trait Loci Mapping and The Genetic Basis of Heterosis in Maize and Rice.” Genetics 180, no. Garcia, A A F, E A Kido, A N Meza, H M B Souza, L R Pinto, M M Pastina, et al., “Development of an integrated genetic map of a sugarcane (Saccharum spp.) commercial cross, based on a maximum-likelihood approach for estimation of linkage and linkage phases.” Theor. 1 (2002): 43-52.Į Silva LDC, Wang S, Zeng Z-B (2012) Multiple trait multiple interval mapping of quantitative trait loci from inbred line crosses. 3 (1997): 195-219.ĭoerge, R W, “Mapping and Analysis of Quantitative Trait Loci in Experimental Populations.” Nature Reviews Genetics 3, no. Zeng, and B S Weir, “Statistical Issues in the Search for Genes Affecting Quantitative Traits in Experimental Populations.” Statistical Science 12, no. Zeng, “Design III With Marker Loci.” Genetics 143 (1996): 1437-1456.ĭa Costa e Silva, Luciano, and Zhao-Bang Zeng, “Current progress on statistical methods for mapping quantitative trait loci from inbred line crosses.” Journal of biopharmaceutical statistics 20, no. M Gail, K Krickberg, J Samet, A Tsiatis, and W Wong, 1 edn (New York: Springer, 2009).Ĭockerham, C Clark, and Z.-B. Crop Sci 47:1082.īroman, K W, and Ś Sen, A Guide to QTL Mapping with R/qtl. Zeng, “QTL Cartographer Version 1.17.”, 190.īernardo R, Yu J (2007) Prospects for Genomewide Selection for Quantitative Traits in Maize. Os programas computacionais que serão usados serão: R, OneMap, MAPMAKER/EXP, QTLCartographer, R/qtl.īasten, C J, B S Weir, and Z.-B.

Aplicação dos resultados para estudos de heterose, QTL x E, correlação entre caracteres, etc. Mapeamento de QTL's: análise de marcas individuais, mapeamento por intervalo, mapeamento por intervalo composto, mapeamento de múltiplos intervalos, mapeamento usando modelos mistos, mapeamento associativo. Construção de mapas genéticos : teste da segregação mendeliana, análise de ligação multiponto, ordenação dos locos, funções de mapeamento. Serão abordados tópicos que fazem parte da área conhecida como Genética Estatística, descritos a seguir, para todos os tipos de populações de mapeamento (F2, RC, RILs, delineamento III e F1 segregante). Habilitar os alunos para que consigam analisar, interpretar e incorporar a informação fornecida pelos marcadores genéticos em pesquisas de genética e melhoramento.
