Armstrong & Green, “Establishment and Maintenance of Friable Embryogenic Maize Callus and the Involvement of L-Proline,” Planta, 164:207-214, 1985. |
Beckmann and Soller, “Restriction Fragment Length Polymorphisms in Plant Genetic Improvement,” Oxfors Surveys of Plant Molecular & Cell Biology, 3:196-250, 1986. |
Conger et al., “Somatic Embryogenesis from Cultured Leaf Segments of Zea mays,” Plant Cell Reports, 6:345-347, 1987. |
Duvick, “Genetic Contributions to Yield Gains of U.S. Hybrid Maize, 1930 to 1980,” Genetic Contributions to Yield Gains of Five Major Crop Plants: Proceedings of a Symposium sponsored by Div. C-1, Crop Science Society of America, Dec. 2, 1981 in Atlanta, Georgia; W.R. Fehr, Crop Science Society of America and American Society of Agronomy, Madison, Wisconsin, pp. 15-47. |
Edallo et al., “Chromosomal Variation and Frequency of Spontaneous Mutation Associated with in vitro Culture and Plant Regeneration in Maize,” Maydica, 26:39-56, 1981. |
Fehr (ed.), Principles of Cultivar Development, vol. 1: Theory and Technique, pp. 360-376, 1987. |
Gaillard et al., “Optimization of maize microspore isolation and culture condition for reliable plant regeneration,” Plant Cell Reports, 10(2):55, 1991. |
Gerdes and Tracy, “Diversity of historically important sweet corn inbredsas estimated by rflp's, morphology, isozymes, and pedigree,” Crop Science, 34(1):26-33, 1994. |
Gordon-Kamm et al., “Transformation of maize cells and regeneration of fertile transgenic plants,” The Plant Cell, 2:603-618, 1990. |
Green & Phillips, “Plant regeneration from tissue cultures of maize,” Crop Science, 15:417-421, 1975. |
Green & Rhodes, “Plant regeneration in tissue cultures of maize,” Maize for Biological Research, ed. W.F. Sheridan, A Special Publication of the Plant Molecular Biology Association, pp. 367-372, 1982. |
Hallauer et al., “Corn Breeding,” Corn and Corn Improvement, eds., Sprague et al., Madison, Wisconsin, Ch. 8, pp. 463-564, 1988. |
Larson & Hanway, “Corn Production,” Corn and Corn Improvement, ed. G.F. Sprague, No. 18 in Agronomy Series, American Society of Agronomy, Inc., Madison, Wisconsin, pp. 625-669, 1977. |
Meghji et al., “Inbreeding depression, inbred and hybrid grain yields, and other traits of maize genotypes representing three eras,” Crop Science, 24:545-549, 1984. |
Pace et al., “Anther culture of maize and the visualization of embryogenic microspores by fluorescent microscopy,” Theoretical and Applied Genetics, 73:863-869, 1987. |
Phillips et al., “Cell/tissue culture and in vitro manipulation,” Corn and Corn Improvement, eds., Sprague et al., Ch. 5, pp. 345-387, 1988. |
Poehlman & Sleper (eds), Breeding Field Crops, 4th Ed., pp. 172-175, 1995. |
Poehlman, Breeding Field Crops, 3rd ed., AVI Publishing Company, Westport, Connecticut, pp. 469-481, 1987. |
Rao et al., “Somatic embryogenesis in glume callus cultures,” Maize Genetics Cooperation Newsletter, vol. 60, 1986. |
Rhodes et al., Genetically transformed maize plants from protoplasts, Science, 240:204-207, 1988. |
Rieger et al., Glossary of Genetics and Cytogenetics, Classical and Molecular, Springer-Verlag, Berlin, p. 116, 1976. |
Smith and Smith, “Restriction fragment length polymorphisms can differentiate among U.S. maize hybrids,” Crop Sci, 31:893-899, 1991. |
Sprague & Eberhart, “Corn Breeding,” Corn and Corn Improvements, ed. G.F. Sprague, No. 18 in Agronomy Series, American Society of Agronomy, Inc., Madison, Wisconsin, pp. 305-323, 1977. |
Troyer, “A retrospective view of corn genetic resources,” Journal of Heredity, 81:17-24, 1990. |
Wright, “Commercial hybrid seed,” Hybridization of Crop Plants, Fehr et al., eds. Am. Soc. of agron.-Crop Sci. Soc. of Am., Madison, Wisconsin, Ch. 8, pp. 161-176, 1980. |
Wych, “Production of hybrid seed corn,” Corn and Corn Improvement, eds., Sprague et al, editors, Madison, Wisconsin, Ch. 9, pp. 565-607, 1988. |
Plant Variety Protection Certification Application No. 8300148. |