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Жизнь микробов в экстремальных условиях - Кашнер Д.

Кашнер Д. Жизнь микробов в экстремальных условиях — М.: Мир, 1981. — 521 c.
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Silverman M. P., Ehrlich И. L. (1964). Microbial formation and degradation of minerals, Adv. Appl. Microbiol., 6, 153—206.
Singer P. C., Stumm W. (1970). Acidic mine drainage: the rate-determining step, Science, 167, 1121—1123.
Singleton R., Amelunxen R. E. (1973). Proteins from thermophilic microorganisms, Bacteriol. Rev., 37, 320—342.
Skinner F. A. (1968). Limits of microbial existence, Proc. R. Soc., Ser. B. Biol. Sci., 171, 77—89.
Sletten 0., Skinner С. E. (1948). Fungi capable of growing in strongly acid media and in concentrated copper sulfate solutions, J. Bacteriol., 56, 679— 681.
Smith P. F.t Langworthy T. A., Mayberry W. R. (1973a). Lipids of mycoplasmas, Ann N. Y. Acad. Sci., 225, 22—27.
Smith P. F., Langworthy 'T. A., Mayberry W. R., Floughland A. E. (1973b). Characterization оГ the membranes of Thermoplasma acidophilum, J. Bacteriol., 116, 1019—1028.
Smith P. F„ Langworthy T. A., Smith M. R. (1975). Polypeptide nature of growth requirement in yeast extract for Thermoplasma acidophilum, J. Bacteriol., 124, 884—892.
Smith G. G., Ruwart M. J., Haag A. (1974). Lipid phase transitions in membrane vesicles from Thermoplasma acidophila, FEBS Lett., 45, 96—98.
Souza К¦ A., Deal P. H., Mack tl. M., Turnbill E. E. (1974). Growth and reproduction of microorganisms under extremely alkaline conditions, Appl. Microbiol., 28, 1066—1068.
Starkey R. L., Waksman S. A. (1943). Fungi tolerant to extreme acidity and high concentrations of copper sulfate, J. Bacteriol., 45, 509—519.
Stotsky G. (1972). Activity, ecology and population dynamics оГ microorganisms in soil. In: Critical Reviews in Microbiology (A. I. Laskin and Ii. Lechc-valier, eds.), CRC Press, Cleveland.
Sugiyama Т., Smith P. F., Langworthy T. A., Mayberry W. R. (1974). Immunological analysis of glycolipids and lipopolysaccharides derived from various mycoplasmas, Infect. Immun., 10, 1273—1279.
Suzuki I. (1965). Oxidation of elemental sulfur by an enzyme system of Thiobacillus thiooxidans, Biochim. Biophys. Acta, 104, 359—371.
Tabita R., Silver М., Lundgren D. G. (1969). The rhodanasc enzyme of Ferrobacillus ferrooxidans (Thiobacillus ferrooxidans), Can. J. Biochem., 47,. 1141—1145.
Thimann К. V. (1963). The Life of Bacteria (2nd ed.), Macmillan Co., New York.
Thomas J. A., Cole R. E., Langworthy T. A. (1976). Intracellular pH measurements with a spectroscopic probe generated in situ, Fed. Proc., 35, 1455.
Touvinen О. H., Kelly D. P. (1972). Biology of Thiobacillus ferrooxidans in relation to the microbiological leaching of sulfide ores, Z. Allg. Mikrobiol., 12, 311—346.
Uchino F., Doi S. (1967). Acido-thermophilic bacteria from thermal waters,. Agric. Biol. Chem., 31, 817—822.
Valient у ne J. R. (1963). Environmental biophysics and microbial ubiquity, Ann. N. Y. Acad. Sci., 108, 342—352.
VanderWerf C. A. (1961). Acids, Bases, and the Chemistry of the Covalent
Bond. In: Selected Topics in Modern Chemistry (H. H. Sisler and
C. A. VanderWerf, eds.), pp. 33—39, Reinhold, New York.
Vedder A. (1934). Bacillus alcalophilus n. sp., benevens enkele ervaringen met sterk alcalische voedingsbodems, Antonie van Leeuwenhoek, 1, 141—147.
Vestal J. R., Lundgren D. G., Milner К. C. (1973). Toxic and immunological differences among lipopolysaccharides from Thiobacillus ferrooxidans grown autotrophically and heterotrophically, Gan. J. Microbiol., 19, 1335—1339.
Vishniac W., Santer M. (1957). The Thiobacilli, Bacteriol., Rev., 21, 195—213.
Waddell W. J., Bates R. G. (1969). Intracellular pH, Physiol. Rev., 49, 285—329.
Waddell W. /., Butler Т. C. (1959). Calculation of intracellular pH from the distribution of 5,5-dimethyl-2,4-oxazolidinedione (DMO). Application to skeletal muscle of the clog, J. Clin. Invest., 38, 720—729.
Waksman S. A., Jkffe J. S. (1922).' Microorganisms concerned in the soil. II. Thiobacillus thiooxidans, a new sulTur-oxidizing organism isolated from the soil, J. Bacteriol., 7, 239—256.
Walsh F„ Mitchell R. (1972a). An acid-tolerant iron-oxidizing Metallogenium, J. Gen. Microbiol., 72, 369—376.
Walsh F., Mitchell R. (1972b). A pli-dependent succession of iron bacteria, Environ. Sci. Technol., 6, 809—812.
Wang W. S., Lundgren D. G. (1968). Peptidoglycan of a chemolithotrophic bacterium, Ferrobacillus ferrooxidans, J. Bacteriol., 95, 1851—1856.
Wang W. S., Korczynski M. S., Lundgren D. G. (1970). Cell envelope of an iron-oxidizing bacterium: structure of lipopolysaccharide and peptidoglycan, J. Bacteriol., 104, 556—565.
Weiss R. L. (1973). Attachment of bacteria to sulfur in extreme environments, J. Gen. Microbiol., 77, 501—507.
Weiss R. L. (1974). Subunit cell wall of Sulfolobus acidocaldarius, J. Bacteriol.,
118, 275—284.
Wiame J. M„ Harpigtiy R„ Dothey R. G. (1959). A new type of Acetobacter: Acetobacter acidophilum prov. sp,, J. Gen. Microbiol., 20, 165—172.
Wiley W. R., Stokes I. C. (1962). Requirement of an alkaline pH and ammonia for substrate oxidation by Bacillus pasteurii, J. Bacteriol., 84, 730—734.
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