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A genetic-physical map of the Rhodobacter capsulatus carotenoid biosynthesis gene cluster

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Summary

We used the interposon mutagenesis technique to map a cluster of Rhodobacter capsulatus genes that are responsible for the biosynthesis of carotenoids, membrane pigments that protect living organisms from photooxidations. Fifteen interposons define 7 genes (crtA, crtI, crtB, crtC, crtD, crtE and crtF) in an approximately 8 kb of the chromosome. This cluster is flanked by genes affecting bacteriochlorophyll biosynthesis. Based on the analysis of the phenotypes of the insertional mutants and the results of complementation analyses, we present a genetic and physical map of this region. Our data indicate that, with the possible exception of crtI and crtB, all genes analyzed are organized as single transcriptional units. We used nuclease S1 protection analysis to study the influence of oxygen on the regulation of expression of 4 genes (crtA, crtI, crtC and crtE). Under anaerobic conditions, mRNA levels for crtA, crtC and crtE are elevated and a new crtE transcript is detected.

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References

  • Bauer CE, Young DA, Marrs BL (1988) Analysis of the Rhodobacter capsulatus puf operon. J Biol Chem 263:4820–4827

    Google Scholar 

  • Belasco JG, Beatty JT, Adams CW, von Gavain A, Cohen SN (1985) Differential expression of photosynthetic genes in Rhodopseudomonas capsulata results from segmental differences in stability within the polycistronic rxcA transcript. Cell 40:171–181

    Google Scholar 

  • Bolivar F, Rodrigez RL, Betlach MC, Boyer HW (1977) Construction and characterization of new cloning vehicles. I. Ampicillinresistant derivatives of the plasmid pMB9. Gene 2:75–82

    Google Scholar 

  • Boyer HW, Roulland-Dussoix D (1969) A complementation analysis of the restriction and modification of DNA in E. coli. J Mol Biol 41:459–463

    Google Scholar 

  • Clark WG, Davidson E, Marrs BL (1984) Variation of levels of mRNA coding for antenna and reaction center polypeptides in Rhodopseudomonas capsulata in response to changes in oxygen concentration. J Bacteriol 157:945–948

    Google Scholar 

  • Ditta G, Stanfield S, Corbin D, Helinski D (1980) Broad host range cloning system for gram-negative bacteria: construction of a gene bank of Rhizobium meliloti. Proc Natl Acad Sci USA 77:7347–7354

    Google Scholar 

  • Dörge B, Klug G, Drews G (1987) Formation of the B800-850 antenna pigment-protein complex in the strain GK2 of Rhodobacter capsulatus defective in carotenoid synthesis. Biochim Biophys Acta 892:68–74

    Google Scholar 

  • Frey J, Krisch HM (1985) Ω mutagenesis in Gram-negative bacteria: a selectable interposon which is strongly polar in a wide range of bacterial species. Gene 36:143–150

    Google Scholar 

  • Giuliano G, Pollock D, Scolnik PA (1986) The gene crtI mediates the conversion of phytoene into colored carotenoids in Rhodopseudomonas capsulata. J Biol Chem 261:12925–12928

    Google Scholar 

  • Goodwin TW (1971) Biosynthesis. In: Isler O, Gutman H, Solms U (eds) Carotenoids. Birkhauser, Basel, pp 577–636

    Google Scholar 

  • Krinsky NI (1971) Function. In: Isler O, Gutman H, Solms U (eds) Carotenoids. Birkhauser, Basel, pp 669–716

    Google Scholar 

  • Maniatis T, Fritsch EF, Sambrook J (1982) Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory Press, New York

    Google Scholar 

  • Marrs BL (1981) Mobilization of the genes for photosynthesis from Rhodopseudomonas capsulata by a promiscuous plasmid. J Bacteriol 146:1003–1012

    Google Scholar 

  • Prentki P, Krisch M (1984) In vitro insertional mutagenesis mutagenesis with a selectable DNA fragment. Gene 29:303–313

    Google Scholar 

  • Scolnik PA, Haselkorn R (1984) Activation of extra copies of genes coding for nitrogenase in Rhodopseudomonas capsulata. Nature 307:289–292

    Google Scholar 

  • Scolnik PA, Marrs BL (1987) Genetic research with photosynthetic bacteria. Annu Rev Microbiol 41:703–726

    Google Scholar 

  • Scolnik PA, Walker MA, Marrs BL (1980) Biosynthesis of carotenoids derived from neurosporene in Rhodopseudomonas capsulata. J Biol Chem 255:2427–2432

    Google Scholar 

  • Taylor DP, Cohen SN, Clark WG, Marrs BL (1983) Alignment of the genetic and restriction maps of the photosynthetic region of the Rhodopseudomonas capsulata chromosome by a conjugation-mediated marker rescue technique. J Bacteriol 154:580–590

    Google Scholar 

  • Yen HC, Marrs BL (1976) Map of genes for carotenoid and bacteriochlorophyll biosynthesis in Rhodopseudomonas capsulata. J Bacteriol 126:619–629

    Google Scholar 

  • Yen HC, Hu NT, Marrs BL (1979) Characterization of the Gene Transfer Agent made by an overproducer mutant of Rhodopseudomonas capsulata. J Mol Biol 131:157–168

    Google Scholar 

  • Youvan DC, Hearst JE, Marrs BL (1983) Isolation and characterization of enhanced fluorescent mutants of Rhodopseudomonas capsulata. J Bacteriol 154:748–755

    Google Scholar 

  • Zhu YS, Hearst JE (1986) Regulation of expression of genes for light harvesting (LH-I, LH-II), reaction center (RC-L, M, H), bacteriochlorophyll and carotenoid biosynthesis in Rhodobacter capsulatus in response to light and oxygen. Proc Natl Acad Sci USA 38:7613–7617

    Google Scholar 

  • Zsebo KM, Hearst JE (1984) Genetic-physical mapping of a photosynthetic gene cluster from R. capsulata. Cell 37:937–947

    Google Scholar 

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Communicated by H. Hennecke

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Giuliano, G., Pollock, D., Stapp, H. et al. A genetic-physical map of the Rhodobacter capsulatus carotenoid biosynthesis gene cluster. Molec. Gen. Genet. 213, 78–83 (1988). https://doi.org/10.1007/BF00333401

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  • DOI: https://doi.org/10.1007/BF00333401

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