Bibliografia
1 T. D. Brock, J.M. Martinko, J. Parker , Biology of microrganism, Eight edition, Prentice Hall (1997) 2 C Huang., D. T. Chaleff, M. E. Ruppen., J. Stephens, Cloning genes for Streptomyces cyaneogriseus subsp. noncyanogenus for biosyntesis of antibiotics and methods of use, United States Patent Application (2005) 3 R. A. Maplestone, M.J. Stone, D.H. Williams, The evolutionary role of secondary metabolites, a review, Gene 115, 151-157 (1992) 4 H. R. Tsou, Z. H. Ahmed, J. J. Goodman, D.B. Borders, Biosynthetic origin of the carbon skeleton and oxygens atoms of the LL-F2824α, a potent antiparasitic macrolide, The Journal of Antibiotics, 42, 398- 406(1989) 5A.M. Gomez Lopez, Aproximation a la sintesis del fragmento espiroacetalico de avermectinas y milbemicinas, Facultad de Ciencias. Quimicas Universitad Complutense de Madrid (1992) 6 J.F. Martin, A.L. Demani, Control of antibiotic biosynthesis, Microbiological Reviews, 44, 230-251 (1980) 7 D.W. Zabriskie, W.B. Armiger, P.A. Albano, Trader’s guide to fermentation media formulation, Fourth printing (1994) 8 Wendel JF, Albert VA Phylogenetics of the cotton genus (Gossypium), Character-State Weighted Parsimony Analysis of chloroplast DNA restriction site data and its systematic and biogeographic implications. Systematic Botany 17: 115-143 (1992). 9 Endrizzi JE, Turcotte EL, Kohel R, Genetics, cytology and evolution of Gossypium. Advances in Genetics 23, 271-375(1985). 10 Wendel JF, Olson PD, Stewart JM, Genetic diversity, introgression and independent domestication of Old World cultivated cottons, American Journal of Botany 76, 795-1806 (1989) 11 Gregory SR, Hernandez E, Savoy BR, Cottonseed processing, 793- 819(1999). 12 H. Mena, J. E. P. Santos, J. T. Huber, J. M. Simas, M. Tarazon, and M. C. The Effects of Feeding Varying Amounts of Gossypol from Cottonseed and Cottonseed Meal in Lactating Dairy Cows, J. Dairy Sci. 84, 2231–2239 (2001). 13 Calhoun, M. C., S. W. Kuhlmann, and B. C. Baldwin, Assessing the gossypol status of cattle fed cottonseed products, Proc. Pacific Northwest Animal Nutrition Conference, Portland, OR, 147–157, (1995). 14 Wang, N. G., L. F. Zhou, M. Z. Guan, H. P. Lei, Effect of (−) and (+) gossypol on fertility of male rats. J. Ethnopharmacol. 20, 21–24 (1986) 15 Muntz, K - Deposition of storage proteins, Plant Mol. Biol. 38, 77–99. (1998) 16 Hoffman, L.M., Donaldson, D.D., and Herman, E.M., A modified storage protein is synthesized, processed, and degraded in theseeds of transgenic plants, Plant Mol. Biol. 11, 717–729. (1988) 17 Jung, R., Saalbach, G., Nielsen, N.C., and Muntz, K., Site-specificlimited proteolysis of legumin chloramphenicol acetyl transferase fusions in vitro and in transgenic tobacco seeds. J. Exp. Bot. 44, 343–349. (1993) 18 Philip, R., Darnowski, D.W., Maughan, P.J., and Vodkin, L.O., Processing and localization of bovine _-casein expressed in transgenic soybean seeds under control of a soybean lectin expression cassette. Plant Sci. 161, 323–335 (2001). 19 T.B.Osborne, G.C.Voorhees, Globulines of cottonseed, J.Am.Chem.Soc., XVI, 778,(1894) 20 A.D. Shoutov, H. Braun, Y.V. Chesnokov, H.Baumlein, A gene encoding a vicilin-likeprotein: evolutionary pathway of seed storage globulins – Eur. J. Biochem 252, 79-89 (1998) 21 J.Baker, C.Steele, L.Dure III, Sequence and characterization of 6 LEA proteins and their genes from cotton. Plant Mol Biol 11: 277-291(1988) 22 C.A.Chlan, K.Borroto, J.A.Kamalay, L.Dure III, Developmental biochemistry of cottonseed embryogenesis and germination. XIX. Sequences and genomic organization of the alpha-globulin (vicilin) genes of cottonseed, Plant Molecular Biology 9/6, 533–546 (1987) 23 A.D.Shutov, I.A.Kakhovskaya, H.Braun, H.Bäumlein ,K.Müntz Legumin- like and vicilin-like seed storage proteins: Evidence for a common single- domain ancestral gene - Journal of Molecular Evolution 41/6 (1995)
24 P.Argos, S.V.L. Narayana, N.C. Nielsen, Structural similarity between legumin and vicilin storage proteins from legumes,EMBO J.2, 1111-1117 (1985) 25 P.E.M Gibbs, K.B.Strongin, A.McPherson, Evolution of legume seed storage proteins 2 a domain common to legumins and vicilins is duplicated in vicilins, Mol. Biol. Evol. 6, 614-623, (1989) 26 L.Dure III, G.A.Galau, Developmental biochemistry of cottonseed embryogenesis and germination. XIII. Regulation of biosynthesis principal storage proteins, Plant Physiol. 68, 187-194 (1981) 27.K. Tanaka, H. Waki, Y. Ido, S. Akita, Y. Yoshida and T. Yoshida, Rapid Commun. Mass Spectrom.,2, 151, (1988) 28 M. Karas, F. Hillenkamp, Anal. Chem., 60, 2299, (1988). 29 R.C. Beavis, B.T. Chait, Rapid Commun. Mass Spectrom. 3, 436, (1989). 30 O. Vorm, P. Roepstorff, M. Mann, Anal. Chem. 66, 3281, (1994). 31 F.Hillenkamp, E. Unsöld. R. Kaufmann. R. Nitsche, Appl. Phys. 8, 341, (1975). 32 R.B. van Breemen, M. Snow. R.J. Cotter, Int.J. Mass Spectrom. Ion Phys., 49, 35, (1983). 33 M.V. Buchanan, R.L. Hettich, Anal. Chem. 65, 245A, (1993). 34 J.A. Castoro, C. Köster. C.L. Wilkins, Anal. Chem. 65, 784 (1993). 35 M. Karas, D. Bachmann, U. Bahr, F. Hillenkamp, Int. J. Mass Spectrom. Ion Proc., 78, 53, (1987). 36 M.Kussmann, E.Nordhoff, H.Rahbek-Nielsen, J. Mass Spectrom,32, 593 (1997). 37 T. Robert, J. McIver, Y. Li, R.L. Hunter. Proc. Natl. Acad. Sci. USA, 91, 4801 (1994). 38 L. Pasa-Tolic, Y. Huang, S. Guan, H.S. Kim. A.G. Marshall, Mass Spectrom. 30, 825 (1995). 39 J. Wu, S.T. Fannin, M.A. Franklin, T.F. Molinski, C.B. Lebrilla, Anal. Chem 67, 3788 (1995).
40 R.S. Annan, H.J. Köchling, J.A. Hill, K. Biemann, Rapid Commun Mass. Spectrom 6, 298 (1992). 41 J.A. Hill, R.S. Annan, K. Biemann, Rapid Commun Mass Spectrom 5, 395, (1991). 42 R.S. Bardoli, K. Howes, R.G. Vickers, R.H. Bateman, D.V. Harvey, Rapid Commun. Mass Spectrom. 8,585, (1994). 43 V.S.K. Kolli, R. Orlando, Rapid Commun. Mass Spectrom. 10,923, (1996). 44 J.C. Schwartz, M.E. Bier, Rapid Commun. Mass Spectrom. 7, 27, (1993). 45 D.M. Chambers, D.E. Goeringer, S.A. McLuckey, G.L. Glish, Anal. Chem. 65,14, (1993). 46 K. Jonscher, G. Currie, A.L. McCormack, J.R. Yates, Rapid Commun. Mass Spectrom. 7,20,(1993). 47 V.M. Doroshenko, R.J Cotter, Anal. Chem. 67, 2180, (1995). 48 R.S. Brown, J.J. Lennon, Anal. Chem. 67, 1998, (1995). 49 S.M. Colby, T.B. King, J.R. Reilly, Rapid Commun. Mass Spectrom., 8, 865, (1994). 50 R.M. Whittal, L. Li, Anal. Chem. 67, 1950, (1995). 51 M.L. Vestal. P. Juhasz, S.A. Martin, Rapid Commun. Mass Spectrom. 9, 1044, (1995). 52 K. Strupat. M. Karas, F. Hillenkamp, , 111,89, (1991). 53 M. Karas, A. Ingendoh, U. Bahr, F. Hillenkamp, Biomed. Environm. Mass Spectrom. 18, 841, (1989). 54 H.C. Hedrich. K. Isobe, B. Stahl, K. Nokihara, M. Kordel, R.D. Schmid, M. Karas. F. Hillenkamp, F. Spener, Anal. Biochem. 211, 288, (1993). 55 M.C. Huberty, J.E. Vath, W. Yu, S.A. Martin, Anal. Chem. 65, 2791 (1993). 56 M.A. Baldwin. A.L. Burlingame, S.B. Prusiner, Trends in Analytical Chemistry 12, 239 (1993). 57 D.W. Ownby, Z. Hao, K. Schneider, R.C. Beavis, B.T. Chait, A.F. Riggs, Biol. Chem. 268, 13539, (1993).
58 A. Tsarbopoulos, M. Karas, K. Strupat, B.N. Pramanik , T.L. Nagabhushan, F. Hillenkamp, Anal. Chem. 66, 2062 (1994). 59 M. Kussmann, E. Nordhoff, H. Rahbek-Nielsen, S. Haebel, M. Rossel- Larsen, L. Jakobsen, J. Gobom, E. Mirgorodskaya, A. Kroll-Kristensen, L. Palm, P. Roepstorff, J Mass Spectrom, 32, 593-601, (1997) 60 J. Gobom, E. Nordhoff, E. Mirgorodskaya, R. Ekman, P. Roepstorff, J Mass Spectrom, 34, 105-116, (1999) 61 K.R. Clauser, P. Baker, A.L.Burlingame, Anal. Chem.,71, 2871-2882, (1999). 62 W.J. Henzel, J.T. Stults, S.C. Wong, C. Grimley, C. Watanabe, Proc Natl Acad Sci USA,90, 5011-5015, (1993). 63 M. Mann, P. Hojrup, P. Roeppstorff, Biol Mass Spectrom, 22, 338-345, (1993) 64D.J. Pappin, P. Hojrup, A.J. Bleasby, Curr Biol, 3, 327-332, (1993) 65 P. James, M. Quadroni, E. Carafoli, G. Gonnet, Biochem Biophys Res Commun, 195, 58-64, (1993) 66 .R.D. Yates, S: Speicher, P.R. Griffin, T. Hunkapiller, Anal Biochem, 214, 397-408, (1993) 67 M. Wilm, M. Mann, Int J Mass Spectrom Ion Process, 136, 167-180, (1994) 68 M. Wilm, A. Shevchenko, T. Houthaeve, T. Fotsis, S. Breit, L. Schweigerer, M. Mann, Nature, 379, 466-469, (1996) 69 . Wilm, M. Mann, Anal Chem, 68, 1-8, (1996) 70 G. Neubauer, A. King,, J. Rappsilber, C. Calvio, M. Watson, P. Ajuh, J. Sleeman, A. Lamond, M.mann, Nat. Genet.,20, 20-46, (1998) 71 S.F.Altschul, W. Gish, W. Miller, E.W. Myers, D.J.Lipman, J. Mol. Biol., 215, 403-410, (1990) 72 V.Cunsolo, S.Foti, R.Saletti, Mass Spectrometry in the characterization of cereal seed proteins, Eur.J.Mass Spectrom. 10, 359-370 (2004)
73 J. Gobom, E. Nordhoff, E. Mirgorodskaya, R. Ekman, P. Roepstorff, J Mass Spectrom, 34, 105-116, (1999)
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