Dix et al. Euphytica 85(1-3):29-34, 1995.* |
Sidorov et al. Theor. Appl. Genet. 88(3-4): 525-529, 1994.* |
Van Grinsven et al. pp. 859-866 In: Genetic Manip. Plant Breed., Horn, W., ed., 1986.* |
Perl et al. Plant Mol. Biol. 19:815-823 (No. 5), 1992.* |
Chasan, R. Plant Cell 4(1):1-2, Jan. 1992.* |
McBride et al. Amplifications of a chimeric bacillus gene in chloroplasts leads to an extraordinary level of an insecticidal protein in tobacco. Biotechnology 13:362-365 (1995). |
Sheen et al. Green-fluorescent protein as a new vital marker in plant cells. The Plant Journal 8(5):777-784 (1995). |
Sidorov et al. Stable chloroplast transformation in potato: use of green fluorescent protein as a plastid marker. The Plant Journal 19(2):209-216 (1999). |
Staub et al. High-yield production of a human therapeutic protein in tobacco chloroplasts. Nature Biotechnology 18:333-338 (2000). |
Horsch, et al., “A simple and general method for transferring genes into plants” Science 227, 1229-1231 (1985). |
Klein, et al., “Transformation of microbes, plants and animals by particle bombardment” Bio/Technology 10, 286-291 (1992). |
Padgette, et al., “Bacterial expression and isolation of Petunia hybrida 5-enol-pyruvylshikimate-3-phosphate synthase” Archives of Biochemistry and Biophysics 258(2), 564-573 (1987). |
Stalker, et al., “A single amino acid substitution in the enzyme 5-enolpyruvylshikimate-3-phosphate synthase confers resistance to the herbicide glyphosate” The Journal of Biological Chemistry 260(8), 4724-4728 (1985). |
Stalker, et al., “Purification and properties of a nitrilase specific for the herbicide bromoxynil and corresponding nucleotide sequence analysis of the bxn gene” The Journal of Biological Chemistry 263(13), 6310-6314 (1988). |
Penaloza-Vazquez, et al., “Expression of the hygromycin B phosphotransferase gene confers tolerance to the herbicide glyphosate” Plant Cell Reports 14, 482-487 (1995). |
DeBlock et al., “Engineering herbicide resistance in plants by expression of a detoxifying enzyme” The EMBO Journal 6(9), 2513-1518 (1987). |
Sathasivan, et al., “Nucleotide sequence of a mutant acetolactate synthase gene from an imidazolinone-resistant Arabidopsis thaliana var. Columbia” Nucleic Acids Research 18(8), 2188-2193 (1990). |
Misawa, et al., “Expression of an Erwinia phytoene desaturase gene not only confers multiple resistance to herbicides interfering with carotenoid biosynthesis but also alters xanthophyII metabolism in transgenic plants” The Plant Journal 6(4), 481-489 (1994). |
Misawa, et al., “Functional expression of the Erwinia uredovora carotenoid biosynthesis gene crtl in transgenic plants showing an increase of β-carotene biosynthesis activity and resistance to the bleaching herbicide norflurazon” The Plant Journal 4(5), 833-840 (1993). |
Padgette, et al., Herbicide-Resistant Crops, Chapter 4, CRC Press, Inc., 53-88 (1996). |
Gray, et al., “Reducing transgene escape routes” Nature 392, 653-654 (1998). |
Goodman, et al., Pharmacological Basis of Therapeutics, 8th edition, Sectin XV, Pergaman Press 1332-1360 (1990). |
Worrell, et al., “Expression of a maize sucrose phosphate synthase in tomato alters leaf carbohydrate partitioning” The Plant Cell 3, 1121-1130 (1991). |
Klann, et al., “Tomato fruit acid invertase complementary DNA” Plant Physiology 99, 351-353 (1992). |
Crameri, et al., “Improved green fluorescent protein by molecular evolution using DNA shuffling” Nature Biotechnology 14, 315-319 (1996). |
Hood, et al., “The hypervirulences of Agrbacterium tumefaciens A281 is encoded in a region of pTiBo542 outside of T-DNA” Journal of Bacteriology 168(3), 1291-1301 (1986). |
Holton, T., “Petal-specific gene expression in Petunia hybrida” PhD dissertation: The Russell Grimwade School of Biochemistry, University of Melbourne, 1-137 Mar. 1992. |
Shinozaki, et al., “The complete nucleotide sequence of the tobacco chloroplast genome: its gene organization and expression” The EMBO Journal 5(9), 2043-2049 (1986). |
Zoubenko, et al., “Efficient targeting of foreign genes into the tobacco plastid genome” Nucleic Acids Research 22(19), 3819-3824 (1994). |
Sanford, et al., “Optimizing the biolistic process for different biological applications” Methods in Enzymology 217, 483-509 (1993). |
Ye, et al., “Optimization of delivery of foreign DNA into higher-plant chloroplast” Plant Molecular Biology 15, 809-819 (1990). |
Blowers, et al., “Studies on Chlamydomonas chloroplast transformation: Foreign DNA can be stably maintained in the chromosome” The Plant Cell 1, 123-132 (1989). |
McBride, et al., “Controlled expression of plastid transgenes in plants based on a nuclear DNA-encoded and plastid-targeted T7 RNA polymerase” Proceedings of the National Academy of Sciences of the USA 91, 7301-7305 (1994). |
Daniell, et al., “Foreign gene expression in chloroplasts of higher plants mediated by tungsten particle bombardment” Methods in Enzymology 217, 536-557 (1993). |
Svab, et al., “High-frequency plastid transformation in tobacco by selection for a chimeric aadA gene” Proceedings of the National Academy of Sciences of the USA 90, 913-917 (1993). |
Svab, et al., “Stable transformation of plastids in higher plants” Proceedings of the National Academy of Sciences of the USA 87, 8526-8530 (1990). |
Staub, et al., “Accumulation of D1 polypeptide in tobacco plastids is regulated via the untranslated region of the psbA mRNA” The EMBO Journal 12(2), 601-606 (1993). |
Daniell, et al., “Uptake and expression of bacterial and cyanobacterial genes by isolated cucumber etioplasts” Proceedings of the National Academy of Sciences of the USA 84, 6349-6353 (1987). |
Herrera-Estrella, et al., “Expression of chimaeric genes transferred into plant cells using a Ti-plasmid-derived vector” Nature 303, 209-213 (1983). |
DeBlock, et al., “Chloroplast transformation by Agrobacterium tumefaciens” The EMBO Journal 4(6), 1367-1372 (1985). |
Herrera-Estrella, et al., “Light-inducible and chloroplast-associated expression of a chimaeric gene introduced into Nicotianatabacum using a Ti plasmid vector” Nature 310, 115-120 (1984). |
Maliga, et al., “Towards plastid transformation in flowering plants” Tibtech 11, 101-107 (1993). |
Boynton, et al., “Chloroplast transformation in Chlamydomonas with high velocity microprojectiles” Science 240, 1534-1538 (1988). |
Sathasivan, et al., “Nucleotide sequence of a mutant acetolactate synthase gene from an imidazolinone-resistant Arabidopsis thaliana var. Columbia” Nucleic Acids Research 18(8), 2188 (1990). |
Siemering, et al., “Mutations that suppress the thermosensitivity of green fluorescent protein” Current Biology 6(12), 1653-1663 (1996). |
Salopek, et al., “Greening of non-transformed and Agrobacterium rhizogenes transformed adventitious potato roots” Biologia (Bratislava) 53(1), 127-132 (1998). |