Otwarty dostęp

Biochemical and Molecular Characterization of Carotenogenic Flavobacterial Isolates from Marine Waters


Zacytuj

Alcantara S. and S. Sanchez. 1999. Influence of carbon and nitrogen sources on Flavobacterium growth and zeaxanthin biosynthesis. J. Ind. Microbiol. Biotechnol. 23: 697–700.10.1038/sj.jim.2900688 Search in Google Scholar

Bauer A.W., M. Kirby, J.C. Sherris and M. Turck. 1966. Antibiotic susceptibility testing by a standardized single disk method. Ame. J. Clin. Pathol. 45: 493–496.10.1093/ajcp/45.4_ts.493 Search in Google Scholar

Bhosale P. and P.S. Bernstein. 2004. β-carotene production by Flavobacterium multivorum in the presence of inorganic salts and urea. J. Ind. Microbiol. Biotechnol. 31: 565–571.10.1007/s10295-004-0187-9 Search in Google Scholar

Bhosale P., A.J. Larson and P.S. Bernstein. 2004. Factorial analysis of tricarboxylic acid cycle intermediates for optimization of zeaxanthin production from Flavobacterium multivorum. J. Appl. Microbiol. 96: 623–629.10.1111/j.1365-2672.2004.02197.x Search in Google Scholar

Bone R.A., J.T. Landrum, Y. Cao, A.N. Howard and F.A. Calderon. 2007. Macular pigment response to a supplement containing meso-zeaxanthin, lutein and zeaxanthin. Nutri Metabol. 4: 12–19. Search in Google Scholar

Carpenter K.L., C. van der Veen, R. Hird, I.F. Dennis, T. Ding and M.J. Mitchinson. 1997. The carotenoids beta-carotene, canthaxanthin and zeaxanthin inhibit macrophage-mediated LDL oxidation. FEBS Lett. 401: 262–266. Search in Google Scholar

Chart H. 1994. Bacterial fractionation and membrane protein characterization, pp. 1–10. In: Chart H. (ed). Methods in practical laboratory bacteriology. CRC Press, Boca Raton.10.1201/9780203747414-1 Search in Google Scholar

Decostere A. 2002. Flavobacterium columnare infections in fish: the agent and its adhesion to the gill tissue. Verh. K. Acad. Geneeskd. Belg. 64: 421–430. Search in Google Scholar

Fautz E. and H. Reichenbach. 1980. A simple test for flexirubintype pigments. FEMS Microbiol. Lett. 8: 87–91.10.1111/j.1574-6968.1980.tb05056.x Search in Google Scholar

Flint K. 1985. A note on a selective agar medium for the enumeration of Flavobacterium species in water. J. Appl. Bacteriol. 59: 561–566.10.1111/j.1365-2672.1985.tb03361.x Search in Google Scholar

Ivanova E.P., Y.A. Alexeeva, S. Flavier, J.P. Wright, N.V. Zhukova, N.M. Gorshkova, V.V. Mikhailov, D.V. Nicolau and R. Christen. 2004. Formosa algae gen. nov., sp. nov., a novel member of the family Flavobacteriaceae. Int. J. Sys. Evol. Microbiol. 54: 705–711. Search in Google Scholar

Ivanova E.P., O.I. Nedashkovskaya, J. Chun and A.M. Lysenko. 2001. Arenibacter gen. nov., new genus of the family Flavobacteriaceae and description of a new species, Arenibacter latericius sp. nov. Int. J. Sys. Evol. Microbiol. 51: 1987–1995. Search in Google Scholar

Johnson E.A. and W.A. Schroeder. 1995. Zeaxanthin-containing compositions produced by Flavobacterium multivorum. US patent 5427783 A. June 27, 1995. Search in Google Scholar

Kim B. S., O.S. Kim, E.Y. Moon and J. Chun. 2010. Vitellibacter aestuarii sp. nov., isolated from tidal-flat sediment, and an emended description of the genus Vitellibacter. Int. J. Sys. Evol. Microbiol. 60: 1989–1992. Search in Google Scholar

Krinsky N.I. 1989. Antioxidant functions of carotenoids. Free Rad Biol Med. 7: 617–635.10.1016/0891-5849(89)90143-3 Search in Google Scholar

Kumar S., M. Nei, J. Dudley and K. Tamura. 2008. Mega: A biologist-centric software for evolutionary analysis of DNA and protein sequences. Brief Bioinfor. 9: 299–306.10.1093/bib/bbn017256262418417537 Search in Google Scholar

Laemmli U.K. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680–684.10.1038/227680a05432063 Search in Google Scholar

Manh H.D., Y. Matsuo, A. Katsuta, S. Matsuda, Y. Shizuri and H. Kasai. 2008. Robiginitalea myxolifaciens sp. nov., a novel myxol-producing bacterium isolated from marine sediment, and emended description of the genus Robiginitalea. Int. J. Sys. Evol. Microbiol. 58: 1660–1664. Search in Google Scholar

Masetto A., L.B. Flores-Cotera, C. Diaz, E. Langley and S. Sanchez. 2001. Application of a complete factorial design for the production of zeaxanthin by Flavobacterium sp. J. Biosci. Bioeng. 92: 55–58.10.1016/S1389-1723(01)80199-7 Search in Google Scholar

McDougall L.A., W.H. Holzapfel, U. Schillinger, D.E. Feely and J.H. Rupnow. 1994. Scanning electron microscopy of target cells and molecular weight determination for bacteriocin produced by Lactococcus lactis D53. Int. J. Food. Microbiol. 24: 295–308.10.1016/0168-1605(94)90127-9 Search in Google Scholar

Nedashkovskaya O.I., M. Suzuki, M.V. Vysotskii and V.V. Mikhailov. 2003a. Vitellibacter vladivostokensis gen. nov., sp. nov., a new member of the phylum Cytophaga-Flavobacterium-Bacteroides. Int. J. Sys. Evol. Microbiol. 53: 1281–1286. Search in Google Scholar

Nedashkovskaya O.I., M. Suzuki, M.V. Vysotskii and V.V. Mikhailov. 2003b. Arenibacte rtroitsensis sp. nov., isolated from marine bottom sediment. Int. J. Sys. Evol. Microbiol. 53: 1287–1290. Search in Google Scholar

Nedashkovskaya O.I., S.B. Kim, S.K. Han, A.M. Lysenko, V.V. Mikhailov and K.S. Bae. 2004. Arenibacter certesii sp. nov., a novel marine bacterium isolated from the green alga Ulva fenestrata. Int. J. Sys. Evol. Microbiol. 54: 1173–1176. Search in Google Scholar

Nedashkovskaya O.I., S.B. Kim, M. Vancanneyt, C. Snau-waert, A.M. Lysenko, M. Rohde, G.M.Frolova, N.V. Zhukova, V.V. Mikhailov, K.S. Bae and others. 2006a. Formosa agariphila sp. nov., a budding bacterium of the family Flavobacteriaceae isolated from marine environments, and emended description of the genus Formosa. Int. J. Sys. Evol. Microbiol. 56: 161–167. Search in Google Scholar

Nedashkovskaya O.I, M. Vancanneyt,I. Cleenwerck, C. Snau-waert, S.B. Kim, A.M. Lysenko, L.S. Shevchenko, K.H. Lee, M.S. Park, G.M. Frolova and others. 2006b. Arenibacter palladensis sp. nov., a novel marine bacterium isolated from the green alga Ulva fenestrata, and emended description of the genus Arenibacter. Int. J. Sys. Evol. Microbiol. 56: 155–160. Search in Google Scholar

Nedashkovskaya O.I, S.B. Kim, A.M. Lysenko, K.H. Lee, K.S. Bae and V.V. Mikhailov. 2007. Arenibacter echinorum sp. nov., isolated from the sea urchin Strongylocentrotus intermedius. Int. J. Sys. Evol. Microbiol. 57: 2655–2659. Search in Google Scholar

Nematollahi A., A. Decostere, F. Pasmans and F. Haesebrouck. 2003. Flavobacterium psychrophilum infections in salmonid fish. J. Fish Dis. 26: 563–574.10.1046/j.1365-2761.2003.00488.x14653314 Search in Google Scholar

Nishino H., H. Tokuda, M. Satomi, P. Masuda, P. Bu, M. Onozuka, S. Yamaguchi, Y. Okuda, J. Takayasu, J. Tsuruta and others. 1999. Cancer prevention by carotenoids. Pure. Appl. Chem. 71: 2273–2278.10.1351/pac199971122273 Search in Google Scholar

Park S., K.C. Lee, K.S. Bae and J.H. Yoon. 2014. Vitellibacter soesokkakensis sp. nov., isolated from the junction between the ocean and a freshwater spring and emended description of the genus Vitellibacter. Int. J. Sys. Evol. Microbiol. 64: 588–593. Search in Google Scholar

Rählert N., P.D. Fraser and G. Sandmann. 2009. A crtA-related gene from Flavobacterium P99-3 encodes a novel carotenoid 2-hydroxylase involved in myxol biosynthesis. FEBS Lett. 583: 1605–1610.10.1016/j.febslet.2009.04.02519383499 Search in Google Scholar

Reichenbach H., W. Kohl, A.B. Vetter and H. Achenbach. 1980. Flexirubin-type pigments in Flavobacterium. Arch. Microbiol. 126: 291–293.10.1007/BF00409934 Search in Google Scholar

Roberts R., J. Green and B. Lewis. 2009. Lutein and zeaxanthin in eye and skin health. Clinics. Dermatol. Neutra. Part II. 27: 195–201.10.1016/j.clindermatol.2008.01.01119168000 Search in Google Scholar

Sajilata M.G., R.S. Singhal and M.Y. Kamat. 2008. The Carotenoid Pigment Zeaxanthin – A Review. Compr. Rev. Food Sci. Food Safety. 7: 29–49.10.1111/j.1541-4337.2007.00028.x Search in Google Scholar

Sambrook J. and R.W. Russell. 2001. Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory Press, New York. Search in Google Scholar

Schillinger U., N.M.K. Yousif, L. Sesar and C.M.A.P. Franz. 2003. Use of group-specific and RAPD-PCR analyses for 400 rapid differentiation of Lactobacillus strains from probiotic yogurts. Curr Microbiol. 47: 453–456.10.1007/s00284-003-4067-814756527 Search in Google Scholar

Shindo K., K. Kikuta, A. Suzuki, A. Katsuta, H. Kasai, M.Y. Hirose, Y. Matsuo, N. Misawa and S. Takaichi. 2007. Rare carotenoids, (3R)-saproxanthin and (3R,2’S)-myxol, isolated from novel marine bacteria (Flavobacteriaceae) and their antioxidative activities. Appl. Microbiol. Biotechnol. 74: 1350–1357. Search in Google Scholar

Sowmya R. and N.M. Sachindra. 2011.Carotenoids in aquatic resources: occurrence, recovery, application and biofunctions, pp. 75–118. In: Yamaguchi M. (ed). Carotenoids: Properties, Effects and Diseases. Nova Publishers, USA. Search in Google Scholar

Stafsnes M.H. and P. Bruheim. 2013. Pigmented marine heterotrophic bacteria: occurrence, diversity and characterization of pigmentation, pp. 117–148. In: Kim S.K. (ed). Marine Biomaterials: Characterization, Isolation and Applications.CRC Press, Boca Raton. Search in Google Scholar

Statsoft. 1999. Statistics for windows. Statsoft Inc, Tulsa, USA.10.1016/S1365-6937(99)90376-3 Search in Google Scholar

Sun F., B. Wang, Y. Du, X. Liu, Q. Lai, G. Li, J. Luo and Z. Shao. 2010. Arenibacter nanhaiticus sp. nov., isolated from marine sediment of the South China Sea. Int. J. Sys. Evol. Microbiol. 60: 78–83. Search in Google Scholar

Walia T.M., T. Williamson, A. Kaiser and R. Tewari. 1988. Usefulness of protein patterns, serotyping and plasmid DNA profiles in the epidemiologic finger printing of P. aeruginosa. Eur. J. Clin. Microbiol. Infect Dis. 7: 248–255. Search in Google Scholar

eISSN:
2544-4646
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Microbiology and Virology