Optimized bacterial host strains of
30 40 40 Methanotrophic bacterial strains are provided that have been optimized for the production of carotenoid compounds through the down-regulation of one or more of the crtN1, ald, crtN2 and crtN3 genes of the carotenoid biosynthetic pathway. The resulting strains lack pigmented Ccarotenoid comp...
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Format | Patent |
Language | English |
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19.06.2007
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Abstract | 30 40 40 Methanotrophic bacterial strains are provided that have been optimized for the production of carotenoid compounds through the down-regulation of one or more of the crtN1, ald, crtN2 and crtN3 genes of the carotenoid biosynthetic pathway. The resulting strains lack pigmented Ccarotenoid compounds, and show an increase in the production of Ccarotenoids. The use of the optimized host strains for the production of the Ccarotenoids canthaxanthin and astaxanthin is also described. |
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AbstractList | 30 40 40 Methanotrophic bacterial strains are provided that have been optimized for the production of carotenoid compounds through the down-regulation of one or more of the crtN1, ald, crtN2 and crtN3 genes of the carotenoid biosynthetic pathway. The resulting strains lack pigmented Ccarotenoid compounds, and show an increase in the production of Ccarotenoids. The use of the optimized host strains for the production of the Ccarotenoids canthaxanthin and astaxanthin is also described. |
Author | Sedkova, Natalia Sharpe, Pamela L Cheng, Qiong Bosak, Melissa D Tao, Luan |
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References | Brend Wieland et al., Genetic and Biochemical Analyses of the Biosynthesis of the Yellow Carotenoid 4,4′-Diaponeurosporene of Staphylococcus aureus, Journal of Bacteriology, vol. 178(24):7719-7726, Dec. 1994. Ivanova et al., Mikrobiologiya, vol. 57(4):600-605, 1988. National Center for Biotechnology Information General Identifier No. 14349229, Accession No: AP003137, Jan. 11, 2003, M. Kuroda et al., Whole Genome Sequencing of Meticillin-Resistant Staphylococcus aureus. National Center for Biotechnology Information General Identifier No. 2224840, Accession No: X73889, Mar. 10, 2001, B. Wieland et al., Genetic and Biochemical Analyses of the Biosynthesis of the Yellow Carotenoid 4,4′-Diaponeurosporene of Staphylococcus aureus. National Center for Biotechnology Information General Identifier No. 46395552, Accession No: AP003365, Apr. 17, 2004, M. Kuroda et al., Whole Genome Sequencing of Meticillin-Resistant Staphylococcus aureus. Cheng et al. (6929928) 20050800 Cheng et al. (6660507) 20031200 (WO 02/18617) 20020300 Teizi Urakami et al., Occurrence of Isoprenoid Compounds in Gram-Negative Methanol-,Methane-, and Methylamine-Utilizing Bacteria, J. Gen. Appl. Microbio., vol. 32:317-341, 1986. Cheng et al. (2002/0102690) 20020800 Koffas et al. (6537786) 20030300 National Center for Biotechnology Information General Identifier No. 57634611, Accession No: NC-002758, Jan. 19, 2005, M. Kuroda et al., Whole Genome Sequencing of Meticillin-Resistant Staphylococcus aureus. Axel Raisig et al., 4,4′-Diapophytoene Desaturase: Catalytic Properties of an Enzyme from the C30 Carotenoid Pathway of Staphylococcus aureus, Journal of Bacteriology, vol. 181(19):6184-6187, Oct. 1999. John J. Kilbane, A Biosystem for Removal of Metal Ions from Water, Gas, Oil, Coal, Enviorn. Biotechnol., 3[Pap. IGT's Int. Symp.], 3rd ed., Meeting Date 1990, Akin, C. and J. Smith, Eds., IGT: Chicago, IL (1991); pp. 207-226. National Center for Biotechnology Information General Identifier No. 29165615, Accession No: NC-002745, Jan. 27, 2005, M. Kuroda et al., Whole Genome Sequencing of Meticillin-Resistant Staphylococcus aureus. Koffas et al. (6689601) 20040200 Brzostowicz et al. (2003/0003528) 20030100 |
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