Boase et al. In Vitro Cellular and developmental Biology. 1998. vol. 34: 46-51.* |
West, et al., “Leafy Coyledon1 Is An Essential Regulator of Late Embryogenesis and Cotyledon Identity in Arabidopsis”; The Plant Cell, vol. 6, 1731-1745 (Dec. 1994). |
Meinke, et al., “Leafy Cotyledon Mutants of Arabidopsis”; The Plant Cell, vol. 6, 1049-1064 (Aug. 1994). |
Baumlein, et al., “The FUS3 Gene of Arabidopsis thaliana is a regulator of gene expression during late embryogenesis,”; The Plant Journal, 6(3):379-387 (1994). |
Becker, et al., “A cDNA encoding a human CCAAT-binding protein cloned by functional complementation in yeast”; Proc. Natl. Acad. Sci. USA, vol. 88:1968-1972 (Mar. 1991). |
Sinha, et al., “Recombinant rat CBF-C, the third subunit of CBF/NFY, allows formation of a protein-DNA complex with CBF-A and CBF-B and with yeast HAP2 and HAP3”; Proc. Natl. Acad. Sci. USA, vol. 92, 1624-1628 (Feb. 1995). |
Li, et al., “Evolutionary variation of the CCAAT-binding transcription factor NF-Y”; Nucleic Acids Res., vol. 20, No. 5, 1087-1091 (Feb. 1992). |
Johnson, et al., “Eukaryotic Transcriptional Regulatory Proteins”; Annu. Rev. Biochem., 58:799-839 (1989). |
Xing, et al. “Mutations in yeast HAP2/HAP3 define a hybrid CCAAT box binding domain”; The EMBO J., vol. 12, No. 12, 4647-4655 (1993). |
McCarty, et al., “The Viviparous-1 Developmental Gene of Maize Encodes a Novel Transcriptional Activator”; Cell, vol. 66, 895-905 (Sep. 1991). |
McCarty, D., “Genetic Control and Integration of Maturation and Germination Pathways in Seed Development”; Annu. Rev. Plant Physiol. Plant Mol. Biol., 46:71-93 (1995). |
Giraudat, J., “Abscisic acid signaling”; Current Opinion in Cell Biology, 7:232-238 (1995). |
Parcy, et al., “Regulation of Gene Expression Programs during Arabidopsis Seed Development: Roles of the AB13 Locus and of Endogenous Abscisic Acid”; The Plant Cell, vol. 6, 1567-1582 (Nov. 1994). |
McCarty, et al., “Molecular Analysis of viviparous-1: An Abscisic Acid-Insensitive Mutant of Maize”; The Plant Cell, vol. 1, 523-532 (May 1989). |
Keith, K., et al. “fusca3: A Heterochronic Mutation Affecting Late Embryo Development in Arabidopsis,” Plant Cell 6:589-600 (May 1994). |
Lotan, T., et al. “Arabidopsis Leafy Cotyledon1 is Sufficient to Induce Embryo Development in Vegetative Cells,” Cell 93:1195-1205 (Jun. 1998). |
LuerBen, H., et al. “Fusca3 encodes a protein with a conserved VP1/ABI3-like B3 domain which is of functional importance for the regulation of seed maturation in Arabidopsis thaliana,” The Plant Journal 15(6):755-764 (1998). |
Parcy, F., et al. “The Abscisic Acid-Insensitive3, Fusca3, and Leafy Cotyledon1 Loci Act in Concert Control Multiple Aspects of Arabidopsis Seed Development,” The Plant Cell 9:1265-1277 (Aug. 1997). |
Suzuki, M., et al. “The Conserved B3 Domain of Viviparous1 Has a Cooperative DNA Binding Activity,” The Plant Cell 9:799-807 (May 1997). |
David W. Meinke, “A Homoeotic Mutant of Arabidopsis thaliana with Leafy Cotyledons,” Science, vol. 258, pp. 1647-1650, Dec. 1992. |
Gregory R. Heck, et al., “AGL15, a MADS Domain Protein Expressed in Developing Embryos,” The Plant Cell, vol. 7, pp. 1271-1282, Aug. 1995. |
Dirk Valvekens, et al., “Agrobacterium tumefaciens-mediated transformation of Arabidopsis thaliana root explants by using kanamycin selection,” Proc. Natl. Acad. Sci. USA, vol. 85, pp. 5536-5540, Aug. 1988. |
Ming-Tsair Chan, et al., “Novel Gene Expression System for Plant Cells Based on Induction α-Amylase Promoter by Carbohydrate Starvation,” The Journal of Biological Chemistry, vol. 269, No. 26, pp. 17635-17641, Jul. 1994. |
H. Shimada, et al., “Antisense regulation of the rice waxy gene expression using a PCR-amplified fragment of the rice genome reduces the amylose content in grain starch,” Theoretical and Applied Genetics, vol. 86, pp. 665-672, Jan. 1993. |