Effect of poly(3-hydroxybutyrate) (PHB) content on the starvation-survival of bacteria in natural waters
The effect of poly(3-hydroxybutyrate) (PHB) content on the survival of wild-type strains and PHB negative mutants of Bacillus megaterium and Alcaligenes eutrophus in natural waters was studied. The survival strategy of B. megaterium was dominated by the development of resistant forms, but the number...
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1995
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001 | PAPER-3740 | ||
003 | AR-BaUEN | ||
005 | 20230518203312.0 | ||
008 | 190411s1995 xx ||||fo|||| 00| 0 eng|d | ||
024 | 7 | |2 scopus |a 2-s2.0-0028963240 | |
040 | |a Scopus |b spa |c AR-BaUEN |d AR-BaUEN | ||
030 | |a FMECE | ||
100 | 1 | |a Lopez, N.I. | |
245 | 1 | 0 | |a Effect of poly(3-hydroxybutyrate) (PHB) content on the starvation-survival of bacteria in natural waters |
260 | |c 1995 | ||
270 | 1 | 0 | |m Méndez, B.S.; Departamento de Química Biológica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428 Buenos Aires, Argentina |
506 | |2 openaire |e Política editorial | ||
504 | |a Pedrós-Alió, Mas-Castell`a, Mas, Guerrero, Polyhydroxyalkanoate accumulation in planktonic and anaerobic environments (1990) Novel Biodegradable Microbial Polymers, pp. 263-274. , E.A. Dawes, Kluwer Academic Publishers, The Netherlands | ||
504 | |a Steinbüchel, Polyhydroxyalkanoic acids (1991) Biomaterials, pp. 123-213. , D. Byrom, Macmillan Publishers Ltd., Basingstoke, UK | ||
504 | |a Steinbüchel, Hustede, Liebergesell, Pieper, Tim, Valentin, Molecular basis for biosynthesis and accumulation of polyhydroxyalkanoic acids in bacteria (1992) FEMS Microbiol. Rev., 103, pp. 217-230 | ||
504 | |a Matin, Veldhuis, Stegeman, Veenhuis, Selective advantage of a Spirillum sp. in a carbon-limited environment. Accumulation of poly-β-hydroxybutyric acid and its role in starvation (1979) J. Gen. Microbiol., 112, pp. 349-355 | ||
504 | |a Findlay, White, Polymeric beta-hydroxyalkanoates from environmental samples and Bacillus megaterium (1983) Appl. Environ. Microbiol., 45, pp. 71-78 | ||
504 | |a Tal, Okon, Production of the reserve material poly-β-hydroxybutyrate and its function in Azospirillum brasilense (1985) Can. J. Microbiol., 31, pp. 608-613 | ||
504 | |a Malmcrona-Friberg, Tunlid, Marden, Kjelleberg, Odham, Chemical changes in cell envelope and poly-β-hydroxybutyrate during short term starvation of a marine bacterial isolate (1986) Arch. Microbiol., 144, pp. 340-345 | ||
504 | |a Kjelleberg, Albertson, Flardh, Holmquist, Jouper-Jaan, Marouga, Ostling, Weichart, How do non-differentiating bacteria adapt to starvation? (1993) Antonie van Leeuwenhoek, 63, pp. 333-341 | ||
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504 | |a Dawes, Senior, The role and regulation of energy reserve polymers in micro-organisms (1973) Adv. Microb. Physiol., 10, pp. 135-266 | ||
504 | |a Okon, Itzigsohn, Poly-β-hydroxybutyrate metabolism in Azospirillum brasilense and the ecological role of PHB in the rhizosphere (1992) FEMS Microbiol. Rev., 103, pp. 131-141 | ||
504 | |a Braunegg, Sonnleitner, Lafferty, A rapid gas chromatographic method for the determination of poly-3-hydroxybutyric acid in microbial biomass (1978) Eur. J. Microbiol. Biotechnol., 6, pp. 29-37 | ||
504 | |a Brandl, Gross, Lenz, Fuller, Pseudomonas oleovorans as a source of poly-(β-hydoxyal-kanoate) for potential applications biodegradable polyesters (1988) Appl. Environ. Microbiol., 54, pp. 1977-1982 | ||
504 | |a Tao, Vary, Isolation and characterization of a sporulation lacZ fusion mutants of Bacillus megaterium (1991) J. Gen. Microbiol., 137, pp. 797-806 | ||
504 | |a Floccari, Tiscornia, Palmada, Méndez, Enriquecimiento en mutantes de Bacillus megaterium deficientes en la síntesis de poli(3-hidroxibutirato) (1991) Rev. Arg. Microbiol., 23, pp. 14-25 | ||
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504 | |a Schubert, Steinbüchel, Schlegel, Cloning of the Alcaligenes eutrophus genes for synthesis of poly-β-hydroxybutyric acid (PHB) and synthesis of PHB in Escherichia coli (1988) J. Bacteriol., 170, pp. 5837-5847 | ||
504 | |a Vary, Garbe, Franzen, Frampton, MP13, a generalized transducing bacteriophage for Bacillus megaterium (1982) J. Bacteriol., 149, pp. 1112-1119 | ||
504 | |a Ostle, Holt, Nile Blue A as a fluorescent stain for poly-β-hydroxybutyrate (1982) Appl. Environ. Microbiol., 44, pp. 238-241 | ||
504 | |a Bohall, Jr., Vary, Transposition of Tn917 in Bacillus megaterium (1986) J. Bacteriol., 167, pp. 716-718 | ||
504 | |a Clewell, Gawron-Burke, Conjugative transposons and the dissemination of antibiotic resistance in streptococci (1988) Annual Review of Microbiology, 40, pp. 635-665 | ||
504 | |a Reznikoff, The Tn5 transposon (1993) Ann. Rev. Microbiol., 47, pp. 945-963 | ||
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504 | |a Slepecky, Law, Synthesis and degradation of poly-β-hydroxybutyric acid in connection with sporulation of Bacillus megaterium (1961) J Bacteriol, 82, pp. 37-42 | ||
504 | |a Recorbet, Givaudan, Steinberg, Bally, Normand, Faurie, Tn5 to assess soil fate of genetically marked bacteria: screening for aminoglycoside-resistence advantage and labelling specificity (1992) FEMS Microbiol. Ecol., 86, pp. 187-194 | ||
504 | |a Garcia-Lara, Martinez, Vilamú, Vives-Rego, Effect of previous growth conditions on the starvation-survival of Escherichia coli in seawater (1993) J. Gen. Microbiol., 139, pp. 1425-1431 | ||
504 | |a Hippe, Abbau und Wiederverwertung von Poly-β-hydroxybuttersäure durch Hydrogenomonas H16 (1967) Arch. Mikrobiol., 56, pp. 248-277 | ||
520 | 3 | |a The effect of poly(3-hydroxybutyrate) (PHB) content on the survival of wild-type strains and PHB negative mutants of Bacillus megaterium and Alcaligenes eutrophus in natural waters was studied. The survival strategy of B. megaterium was dominated by the development of resistant forms, but the number of the wild-type vegetative cells was higher than that of PHB mutant strain. In some environmental conditions the mutant spores needed a heat shock for germination, a fact that suggests, for the first time, that PHB plays a role in this phenomenon. Survival of A. eutrophus wild-type strain in all experiments was higher compared to the PHB mutant, and differences were significant. In raw river water, survival of both species was lower than in sterile river water. © 1995. |l eng | |
536 | |a Detalles de la financiación: This work was supported by grants from the Consejo National de Investigaciones Cientificas y Tecnicas (CONICET, Argentina). N.I.L. has a postdoctoral fellowship from CONICET. | ||
593 | |a Departamento de Química Biológica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428 Buenos Aires, Argentina | ||
593 | |a Cátedra de Microbiología, Facultad de Agronomía, Universidad de Buenos Aires, Buenos Aires, Argentina | ||
593 | |a Institut für Mikrobiologie, Georg-August-Universität Göttingen, Göttingen, Germany | ||
690 | 1 | 0 | |a ENVIRONMENTAL SURVIVAL |
690 | 1 | 0 | |a POLY(3-HYDROXYBUTYRATE) MUTANT |
690 | 1 | 0 | |a SPORE GERMINATION |
690 | 1 | 0 | |a POLY(3 HYDROXYBUTYRIC ACID) |
690 | 1 | 0 | |a ARTICLE |
690 | 1 | 0 | |a BACILLUS MEGATERIUM |
690 | 1 | 0 | |a CONTROLLED STUDY |
690 | 1 | 0 | |a NONHUMAN |
690 | 1 | 0 | |a PRIORITY JOURNAL |
690 | 1 | 0 | |a SPORE GERMINATION |
690 | 1 | 0 | |a SURVIVAL |
690 | 1 | 0 | |a WAUTERSIA EUTROPHA |
690 | 1 | 0 | |a ALCALIGENES |
690 | 1 | 0 | |a BACILLUS MEGATERIUM |
690 | 1 | 0 | |a WAUTERSIA EUTROPHA |
700 | 1 | |a Floccari, M.E. | |
700 | 1 | |a Steinbuchel, A. | |
700 | 1 | |a Garcia, A.F. | |
700 | 1 | |a Mendez, B.S. | |
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