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References
Abou-Deif MH, Mekki BB, Mostafa EAH, Esmail RM, Khattab SAM (2012). The genetic relationship between proteins, oil and grain yield in some maize hybrids. World J. Agric. Sci. 8:43-50. | ||||
Aliu S, Rusinovci I, Fetahu S, Simeonovska E (2012). Genetic diversity and correlation estimates for grain yield and quality traits in Kosovo local maize (Zea mays L.) populations. Acta Agric. Slov. 99:121-128. Crossref |
||||
Alves BM, Cargnelutti Filho A, Toebe M, Burin C, Silva LP (2014). Variability of grain productivity and energy profile of maize (Zea mays L.) genotypes. J. Cereal Sci. 60:164-171. Crossref |
||||
Ayres M, Ayres Jr M, Ayres DL, Santos AS (2007). BioEstat: aplicações estatísticas nas áreas das ciências biomédicas. Belém: Sociedade Civil Mamirauá 364 pp. | ||||
Barroso LP, Artes R (2003). Análise multivariada. Lavras: UFLA, 151 pp. | ||||
Campos H (1983). Estatística experimental não-paramétrica. 4 ed. Piracicaba: Departamento de Matemática e Estatística - ESALQ, 349 pp. | ||||
Cargnelutti Filho A, Guadagnin JP (2011). Consistência do padrão de agrupamento de cultivares de milho. Cien. Rural. 41:1503-1508. Crossref |
||||
Cargnelutti Filho A, Storck L (2009). Medidas do grau de precisão experimental em ensaios de competição de cultivares de milho. Pesq. agropec. Bras. 44:111-117. | ||||
CONAB (Companhia Nacional de Abastecimento) (2010). Acompanhamento da Safra Brasileira de Grãos 2009/2010 – Sexto Levantamento, Março/2010/ Companhia Nacional de Abastecimento. Brasília - DF: CONAB, 2010. | ||||
Cruz CD (1990). Aplicação de algumas técnicas multivariadas no melhoramento de plantas. Tese de doutorado. Escola Superior de Agricultura Luiz de Queiroz, Piracicaba 188 pp. | ||||
Cruz CD (2013). GENES - a software package for analysis in experimental statistics and quantitative genetics. Acta Sci. Agron. 35:271-276. Crossref |
||||
Cruz CD, Carneiro PCS (2006). Modelos biométricos aplicados ao melhoramento genético.2.ed, v.2. Viçosa: UFV, 585 pp. | ||||
Duvick DN (2005). The contribution of breeding to yield advances in maize (Zea mays L.). Adv Agron. 86:83-145. Crossref |
||||
EMBRAPA - Empresa Brasileira De Pesquisa Agropecuária (2006). Centro Nacional de Pesquisa de Solos. Sistema Brasileiro de Classificação de Solos. Brasília: Embrapa produção de informação, Rio de Janeiro: Embrapa Solos, 306 pp. | ||||
Fancelli AL, Dourado-Neto D (2004). Produção de Milho. Guaíba: 2° Ed. Agropecuária, 360 pp. | ||||
Flint-Garcia SA, Bodnar AL, Scott MP (2009). Wide variability in kernel composition, seed characteristics, and zein profiles among diverse maize inbreds, landraces, and teosinte. Theor. Appl Genet. 119:1129-1142. Crossref |
||||
Hair JF, Black WC, Babin BJ, Anderson RE (2009). Multivariate Data Analysis. 7 ed. Prentice Hall, 816 pp. | ||||
Has V, Has I, Pamfil D, Copandean A (2010). Characterization of turda" maize germplasm for the chemical composition of the grain. Rom. Agric. Res. 27:60-67. | ||||
Idikut L, Atalay AI, Kara SN, Kamalak A (2009). Effect of hybrid on starch, protein and yields of maize grain. J. Anim. Vet. Adv. 8:1945-1947. | ||||
Jompuk C, Cheuchart P, Jompuk P, Apisitwanich S (2011). Improved tryptophan content in maize with opaque-2 gene using marker assisted selection (MAS) in backcross and selfing generations. Kasetsart J. Nat. Sci. 45:666-674. | ||||
Kil DY, Park CS, Son AR, Ji SY, Kim BG (2014). Digestibility of crude protein and amino acids in corn grains from different origins for pigs. Anim. Feed Sci. Technol. 196:68-75. Crossref |
||||
Lawrence TLJ (1972). A review of some aspects on health and performance of variations in the physical form of the diet of the growing pig. I. Cereal processing. Vet. Rec. 91:67-70. | ||||
Lovatto PA, Mallmann CA, Ceccantini M, Hauschild L, Storck L, Dilkin P (2006). Relations entre les caractéristiques agronomiques, nutritionnelles et mycotoxicologiques de différents hybrides de maïs. J. Recherche Porcine 38:163-170. | ||||
Mittelmann A, Miranda Filho JB, Nass LL, Lima GJMM, Hara-Klein C, Silva RM (2011). Quantitative variation for grain quality in Brazilian maize populations. Sci. Agric. 68:50-56. Crossref |
||||
Mohammadi SA, Prasanna BM (2003). Analysis of genetic diversity in crop plants - Salient statistical tools and considerations. Crop Sci. 43:1235-1248. Crossref |
||||
Montgomery DC, Peck EA (1982). Introduction to linear regression analysis. New York: John Wiley & Sons 504 pp. | ||||
Moore SM, Stalder KJ, Beitz DC, Stahl CH, Fithian WA, Bregendahl, K (2008). The correlation of chemical and physical corn kernel traits with production performance in broiler chickens and laying hens. Poult. Sci. 87:665–676. Crossref |
||||
Mwololo JK, Mugo S, Tefera T, Munyiri SW (2013). Evaluation of traits of resistance to postharvest insect pests in tropical maize. Int. J. Agric. Crop Sci. 6:926-933. | ||||
Oliboni R, Faria MV, Neumann M, Battistelli GM, Tegoni RG, Resende JTV (2012). Genetic divergence among maize hybrids and correlations with heterosis and combining ability. Acta Sci. Agron. 34:37-44. Crossref |
||||
Osorno JM, Carena MJ (2008). Creating groups of maize genetic diversity for grain quality: implications for breeding. Maydica 53:131-141. | ||||
Pollak LM, Scott MP (2005). Breeding for grain quality traits. Maydica 50:247-257. | ||||
Prasanna BM, Vasal SK, Kassahun B, Singh NN (2001). Quality protein maize. Curr. Sci. 81:1308-1319. | ||||
Resende MDV, Duarte JB (2007). Precisão e controle de qualidade em experimentos de avaliação de cultivares. Pesqui. Agropecu. Trop. 37:182-194. | ||||
Scott AJ, Knott M (1974). A cluster analysis method for grouping means in the analysis of variance. Biometrics 30:507-512. Crossref |
||||
Shewry PR (2007). Improving the protein content and composition of cereal grain. J. Cereal Sci. 46:239-250. | ||||
Silva TA, Pinto RJB, Scapim CA, Mangolin CA, Machado MFPS (2009). Genetic divergence in popcorn genotypes using microsatellites in bulk genomic DNA. Crop Breed. Appl. Biotechnol. 9:31-36. Crossref |
||||
Singh D (1981). The relative importance of characters affecting divergence. Indian J. Genet. Plant Breed. 41:237-245. | ||||
Singh M, Paulsen MR, Tian L, Yao H (2005). Site-specific study of corn protein, oil, and extractable starch variability using NIT spectroscopy. Appl. Engine. Agric. 21:239-251. Crossref |
||||
Sofi PA, Wani SA, Rather AG, Wani SH (2009). Review article: Quality protein maize (QPM): Genetic manipulation for the nutritional fortification of maize. J. Plant Breed. Crop Sci. 1:244-253. | ||||
Steel RGD, Torrie JH, Dickey DA (1997). Principles and procedures of statistics a biometrical approach, 3rd ed. McGraw-Hill, Nova York. | ||||
Storck L, Garcia DC, Lopes SJ, Estefanel V (2011). Experimentação vegetal. Santa Maria: UFSM. 200 pp. | ||||
Subramanian A, Subbaraman N (2010). Hierarchical cluster analysis of genetic diversity in Maize germplasm. Electron J. Plant Breed. 1:431-436. | ||||
Vieira RO, Rodrigues PB, Freitas RTF, Nascimento GAJN, Silva ELS, Hespanhol R (2007). Composição química e energia metabolizável de híbridos de milho para frangos de corte. R. Bras. Zootec. 36:832-838. Crossref |
||||
Vilela FO, Júnior ATA, Pereira MG, Scapim CA, Viana AP, Júnior SPF (2008). Effect of recurrent selection on the genetic variability of the UNB-2U popcorn population using RAPD markers. Acta Sci. Agron. 30:25-30. | ||||
Zhu J, Khan K (2001). Effects of genotype and environment on glutenin polymers and breadmaking quality. Cereal Chem. 78:125-130. Crossref |
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