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Maize genetics

Burr, B. et al., Gene mapping with recombinant inbreds in maize. Genetics 118, 519, 1988. [Pg.388]

Munkvold, G.P., Hellmich, R.L. and Showers, W.B., Reduced Fusarium ear rot and symptomless infection in kernels of maize genetically engineered for European corn borer resistance. Phytopathology, 87, 1071, 1997. [Pg.237]

Hipskind, J., Wood, K., and Nicholson, R.L., Localized stimulation of anthocyanin accumulation and delineation of pathogen ingress in maize genetically resistant to Bipolaris maydis race O, Physiol Mol Plant Pathol, 49, 247, 1996. [Pg.128]

Garwood DL. Maize Genet. Coop. News Letter. 1975 49 140. [Pg.81]

T. Helentjaris, Maize Genet. Cooperation News Lett. 62, 104 (1989). [Pg.409]

MaizseGDB http //www.maizegdb.org/ Maize genetics and genomics... [Pg.589]

Italicized mutants are GA-mutants. [Alsb see Maize Genetics Cooperation News Letters, ref. 16]... [Pg.67]

D. Schwartz, Evidence for sister-strand crossing over in maize. Genetics 38, 251-260 (1953). [Pg.34]

Typical goals of g. are the transformation of - pesticide resistance into crops, the resistance against the European com borer into maize (genetically modified - cora), the incorporation of - fatty acid patterns of - coconut into the pattern of - ra-peseed to open another source for lauric oil (- fats and oils), the improvement of crop and vegetable species by adding specific flavor genes. [Pg.121]

McCuntock, B. (1965a). Restoration of Ai gene action by crossing over. Maize Genetics Cooperation News Letter 39, 42-45. [Pg.112]

Nelson, O. E. (1962a). Recombination values for 11 alleles at the Wx locus. Maize Genetics Cooperation News Letter 36, 81-86. [Pg.112]

Peterson, P. A. (1966). Phase variation of regulatory elements in maize. Genetics 54, 249-266. [Pg.112]

Murigneux A. Martinant J.P. Barriere Y. 2004. Nucleotide diversity of the ZmPox3 maize peroxidases gene relationships between a MITE insertion in exon 2 and variation in forage maize digestibility // BMC Genet. V. 5. P. 19. [Pg.217]

Freeling, M. (1973). Simultaneous induction by anaerobiosis or 2,4D or multiple enzymes specified by two unlinked genes differential Adhl-Adh2 expression in maize. Molecular and General Genetics, 127, 215-27. [Pg.176]

Freeling, M. Bennett, D.C. (1985). Maize Adhl. Annual Review of Genetics, 19, 297-323. [Pg.176]

Laszlo, A. St Lawrence, P. (1983). Parallel induction and synthesis of PDC and ADH in anoxic maize roots. Molecular and General Genetics, 192, 110-17. [Pg.178]

Sachs, M.M., Dennis, E.S., Gerlach, W.L. Peacock, W.J. (1986). Two alleles of maize alcohol dehydrogenase I have 3 structural and poly(A) addition polymorphisms. Genetics, 113, 449-67. [Pg.179]

Castleberry, R.M., Crum, C.W. Krull, C.F. (1984). Genetic yield improvement of U.S. maize cultivars under varying fertility and climatic environments. Crop Science, 24, 33-7. [Pg.212]

Association of pigment accumulation with DNA features can inform systematics and applied breeding in crop plants. For carotenoid content among crop plants, maize and tomato are best studied by this technique. Because there is interest in accumulation of various intermediate products in the pathway as well as end products, QTLs were developed for genetic determinates that are not independent of each other. Some QTLs affect multiple pigment contents. [Pg.378]

Wurtzel, E.T., Genomics, genetics, and biochemistry of maize carotenoid biosynthesis, in Recent Advances in Phytochemistry, Romeo, J., Ed., Elsevier, Amsterdam,... [Pg.386]


See other pages where Maize genetics is mentioned: [Pg.854]    [Pg.85]    [Pg.94]    [Pg.96]    [Pg.97]    [Pg.293]    [Pg.65]    [Pg.73]    [Pg.81]    [Pg.497]    [Pg.854]    [Pg.85]    [Pg.94]    [Pg.96]    [Pg.97]    [Pg.293]    [Pg.65]    [Pg.73]    [Pg.81]    [Pg.497]    [Pg.228]    [Pg.168]    [Pg.176]    [Pg.198]    [Pg.201]    [Pg.209]    [Pg.240]    [Pg.243]    [Pg.123]    [Pg.352]    [Pg.355]    [Pg.364]    [Pg.365]    [Pg.371]    [Pg.378]    [Pg.379]    [Pg.379]    [Pg.379]    [Pg.384]   
See also in sourсe #XX -- [ Pg.85 , Pg.94 , Pg.96 ]




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