The death and lysis of microorganisms in environmental processes
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[1] D. Liu. Resazurin reduction method for activated sludge process control. , 1983, Environmental science & technology.
[2] J. A. Gallant. Stringent control in E. coli. , 1979, Annual review of genetics.
[3] A. L. Koch. DEATH OF BACTERIA IN GROWING CULTURE , 1959, Journal of bacteriology.
[4] H. Pooley. Layered distribution, according to age, within the cell wall of bacillus subtilis , 1976, Journal of bacteriology.
[5] J. Trevors. The measurement of electron transport system (ETS) activity in freshwater sediment , 1984 .
[6] H. Takahashi,et al. COLD SHOCK OF BACTERIA , 1969 .
[7] J. Fry,et al. Response of epiphytic bacteria to the treatment of two aquatic macrophytes with the herbicide paraquat , 1976 .
[8] B. A. Pethica. Lysis by physical and chemical methods. , 1958, Journal of general microbiology.
[9] W. Gujer. THE EFFECT OF PARTICULATE ORGANIC MATERIAL ON ACTIVATED SLUDGE YIELD AND OXYGEN REQUIREMENT , 1980 .
[10] T. Kawamura,et al. Purification and some properties of the endogenous, autolytic N-acetylmuramoylhydrolase of Streptococcus faecium, a bacterial glycoenzyme. , 1983, The Journal of biological chemistry.
[11] F. Harold. Antimicrobial Agents and Membrane Function , 1969 .
[12] E. Padan,et al. The proton electrochemical gradient in Escherichia coli cells. , 1976, European journal of biochemistry.
[13] J Becker-Birck,et al. Simultaneous determination of the total number of aquatic bacteria and the number thereof involved in respiration , 1978, Applied and environmental microbiology.
[14] A. H. Stouthamer,et al. Utilization of energy for growth and maintenance in continuous and batch cultures of microorganisms. A reevaluation of the method for the determination of ATP production by measuring molar growth yields. , 1973, Biochimica et biophysica acta.
[15] F. Busta. Introduction to injury and repair of microbial cells. , 1978, Advances in applied microbiology.
[16] Woods,et al. Determination of bacterial number and biomass in the marine environment , 1977, Applied and environmental microbiology.
[17] J. Monod,et al. Thetechnique of continuous culture. , 1950 .
[18] L. Babiuk,et al. The use of fluorescein isothiocyanate in the determination of the bacterial biomass of grassland soil. , 1970, Canadian journal of microbiology.
[19] B. Rotman,et al. Membrane properties of living mammalian cells as studied by enzymatic hydrolysis of fluorogenic esters. , 1966, Proceedings of the National Academy of Sciences of the United States of America.
[20] M. Salton. The relationship between the nature of the cell wall and the Gram stain. , 1963, Journal of general microbiology.
[21] B. Burnison,et al. Heterotrophic Activity Measured with Radiolabelled Organic Substrates , 1979 .
[22] A. H. Rose. Chemical Microbiology: An Introduction to Microbial Physiology , 1968 .
[23] A. Ryter,et al. Peptidoglycan turnover during growth of a Bacillus megaterium Dap- Lys- mutant , 1979, Journal of bacteriology.
[24] J. Fry,et al. Factors which Influence the Enumeration of Bdellovibrio bacteriovorus in Sewage and River Water , 1973 .
[25] J. Breznak,et al. Viability and Endogenous Substrates Used During Starvation Survival of Rhodospirillum rubrum , 1978, Journal of bacteriology.
[26] S. I. Ahmed,et al. Measurements of electron transport activities in marine phytoplankton , 1975 .
[27] J. Jones,et al. An investigation of errors in direct counts of aquatic bacteria by epifluorescence microscopy, with reference to a new method for dyeing membrane filters. , 1975, The Journal of applied bacteriology.
[28] J. Postgate,et al. The measurement of bacterial viabilities by slide culture. , 1961, Journal of general microbiology.
[29] David Jenkins,et al. The viability and activity of activated sludge , 1971 .
[30] B. Labedan,et al. DNA Transport across Bacterial Membranes , 1982 .
[31] E. L. Schmidt. QUANTITATIVE AUTECOLOGICAL STUDY OF MICROORGANISMS IN SOIL BY IMMUNOFLUORESCENCE , 1974 .
[32] G. L. Jones. Bacterial growth kinetics: measurement and significance in the activated-sludge process , 1973 .
[33] C. G. Sinclair,et al. Model for continuous culture which considers the viability concept , 1970, Biotechnology and bioengineering.
[34] M. Lechevallier,et al. Evaluation of m-T7 agar as a fecal coliform medium , 1984, Applied and environmental microbiology.
[35] A. L. Koch,et al. The adaptive responses of Escherichia coli to a feast and famine existence. , 1971, Advances in microbial physiology.
[36] T. Tsuchido,et al. Involvement of autolysin in cellular lysis of Bacillus subtilis induced by short- and medium-chain fatty acids , 1985, Journal of bacteriology.
[37] G. Hamer,et al. ACTIVITY, DEATH AND LYSIS DURING MICROBIAL GROWTH IN A CHEMOSTAT , 1986 .
[38] Ben Koopman,et al. INT‐Reduction Assays and Control of Sludge Bulking , 1983 .
[39] J F Barrett,et al. Structure, function, and assembly of cell walls of gram-positive bacteria. , 1983, Annual review of microbiology.
[40] David G. Nicholls,et al. Bioenergetics an Introduction to the Chemiosmotic Theory , 1982 .
[41] H. R. Curran,et al. The Importance of Enrichments in the Cultivation of Bacterial Spores Previously Exposed to Lethal Agencies , 1937, Journal of bacteriology.
[42] D. Klein,et al. Starvation effects on Escherichia coli and aquatic bacterial responses to nutrient addition and secondary warming stresses , 1976, Applied and environmental microbiology.
[43] W. Konings,et al. Electrochemical proton gradient and lactate concentration gradient in Streptococcus cremoris cells grown in batch culture , 1982, Journal of bacteriology.
[44] T. Tosa,et al. Transformations of organic compounds by immobilized microbial cells. , 1977, Advances in applied microbiology.
[45] N. V. Van Uden,et al. Yield and maintenance relations of yeast growth in the chemostat at superoptimal temperatures , 1976, Biotechnology and bioengineering.
[46] T. Horiuchi. [Continuous culture of bacteria]. , 1972, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.
[47] J. Hobbie,et al. Direct counts of aquatic bacteria by a modified epifluorescence technique1 , 1975 .
[48] H. Cheung,et al. Absence of correlation between rates of cell wall turnover and autolysis shown by Bacillus subtilis mutants , 1984, Journal of bacteriology.
[49] E. L. Schmidt,et al. The Immunofluorescence Approach in Microbial Ecology , 1980 .
[50] J. Fein. Possible involvement of bacterial autolytic enzymes in flagellar morphogenesis , 1979, Journal of bacteriology.
[51] J. Zeikus,et al. Ultrastructure and extreme heat resistance of spores from thermophilic Clostridium species , 1983, Journal of bacteriology.
[52] Werner Stumm,et al. Fresh Water and Ocean. (Book Reviews: Aquatic Chemistry. An Introduction Emphasizing Chemical Equilibria in Natural Waters) , 1982 .
[53] G. Ordal. Bacterial chemotaxis: biochemistry of behavior in a single cell. , 1985, Critical reviews in microbiology.
[54] H. H. Ramsey. ENDOGENOUS RESPIRATION OF STAPHYLOCOCCUS AUREUS , 1962, Journal of bacteriology.
[55] W. Arnold,et al. Amphotericin B-induced changes in K+ content, viability, and ultrastructure of yeast-phase Histoplasma capsulatum , 1980, Journal of bacteriology.
[56] A. Cundell. Rapid counting methods for coliform bacteria. , 1981, Advances in applied microbiology.
[57] R. Gómez,et al. Heat damage to the chromosome of Escherichia coli K-12 , 1980, Applied and environmental microbiology.
[58] T. D. Brock. Microbial growth rates in nature. , 1971, Bacteriological reviews.
[59] J. Christensen,et al. Respiratory electron transport activities in phytoplankton and bacteria: Comparison of methods1 , 1979 .
[60] R. Colwell,et al. Survival of Aeromonas salmonicida in river water , 1984 .
[61] A. J. Ramsay. Direct counts of bacteria by a modified acridine orange method in relation to their heterotrophic activity , 1978 .
[62] J. Postgate,et al. The survival of starved bacteria. , 1962, Journal of general microbiology.
[63] K. Hellingwerf,et al. Chapter 10 Transport across bacterial membranes , 1981 .
[64] J. Heijenoort,et al. Induction and control of the autolytic system of Escherichia coli , 1982, Journal of bacteriology.
[65] J. Jones,et al. The effect of environmental factors on estimated viable and total populations of planktonic bacteria in lakes and experimental enclosures , 1977 .
[66] G. Stotzky. Activity, ecology, and population dynamics of microorganisms in soil. , 1972, CRC critical reviews in microbiology.
[67] F. D. King,et al. The measurement of respiratory electron-transport-system activity in marine zooplankton , 1975 .
[68] J. Preiss. Bacterial glycogen synthesis and its regulation. , 1984, Annual review of microbiology.
[69] Ernest Frederick Gale,et al. The Molecular basis of antibiotic action , 1972 .
[70] D. Pramer,et al. Factors Influencing the Plate Method for Determining Abundance of Bacteria in Sea Water.∗ † , 1957, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[71] J. Linton,et al. A preliminary study on growth yields in relation to the carbon and energy content of various organic growth substrates , 1978 .
[72] R. Deibel,et al. New medium for rapid screening and enumeration of Clostridium perfringens in foods , 1978, Applied and environmental microbiology.
[73] P. Väätänen. Effects of Composition of Substrate and Inoculation Technique on Plate Counts of Bacteria in the Northern Baltic Sea , 1977 .
[74] J. Steenvoorden,et al. A modified procedure for the TTC-dehydrogenase test in activated-sludge , 1974 .
[75] F. Young,et al. Dynamic interactions between cell wall polymers, extracellular proteases and autolytic enzymes. , 1970, Biochemical and biophysical research communications.
[76] J. Linton,et al. An in situ assessment of the specific lysis rate in continuous cultures of Methylococcus sp. (NCIB 11083) grown on methane , 1978 .
[77] A. Russell. Chapter 3G – Ethylenediaminetetra-acetic Acid , 1971 .
[78] S. Y. Newell,et al. Modification of the Gelatin-Matrix Method for Enumeration of Respiring Bacterial Cells for Use with Salt-Marsh Water Samples , 1984, Applied and environmental microbiology.
[79] W. Hugo. The mode of action of antibacterial agents. , 1967, The Journal of applied bacteriology.
[80] R. E. Buchanan. Life Phases in a Bacterial Culture , 1918 .
[81] Casida Le. Microorganisms in unamended soil as observed by various forms of microscopy and staining. , 1971 .
[82] D. Tempest,et al. The status of YATP and maintenance energy as biologically interpretable phenomena. , 1984, Annual review of microbiology.
[83] P. Mitchell. CHEMIOSMOTIC COUPLING IN OXIDATIVE AND PHOTOSYNTHETIC PHOSPHORYLATION , 1966, Biological reviews of the Cambridge Philosophical Society.
[84] J. Carlsson,et al. Oxygen tolerance of anaerobic bacteria isolated from necrotic dental pulps. , 1977, Acta odontologica Scandinavica.
[85] Russell Ad. Potential sites of damage in micro-organisms exposed to chemical or physical agents. , 1984 .
[86] S. Sedgwick,et al. Evidence for indirect production of DNA strand scissions during mild heating of Escherichia coli. , 1972, Journal of general microbiology.
[87] L. Daneo-Moore,et al. Influence of Macromolecular Biosynthesis on Cellular Autolysis in Streptococcus faecalis , 1972, Journal of bacteriology.
[88] A. M. Paton,et al. The observation and enumeration of micro-organisms in fluids using membrane filtration and incident fluorescence microscopy. , 1975, The Journal of applied bacteriology.
[89] R. R. Colwell,et al. Viable but Non-Culturable Vibrio cholerae and Related Pathogens in the Environment: Implications for Release of Genetically Engineered Microorganisms , 1985, Bio/Technology.
[90] L. Glaser,et al. Relation between cell wall turnover and cell growth in Bacillus subtilis , 1977, Journal of bacteriology.
[91] T. L. Babayan,et al. Autolysis in Yeasts , 1985, 1985.
[92] J. Vosjan,et al. Measuring respiratory electron-transport-system activity in marine sediment , 1977 .
[93] S. Razin,et al. Lysis of Mycoplasma, bacterial protoplasts, spheroplasts and L-forms by various agents. , 1963, Journal of general microbiology.
[94] R. Y. Morita,et al. Survival of a Psychrophilic Marine Vibrio Under Long-Term Nutrient Starvation , 1977, Applied and environmental microbiology.
[95] S. Strugger. Fluorescence microscope examination of bacteria in soil. , 1948, Canadian journal of research.
[96] K. Magnusson,et al. Disintegration of cells and protein recovery , 1973 .
[97] G. Bitton,et al. Malachite green-INT (MINT) method for determining active bacteria in sewage , 1983, Applied and environmental microbiology.
[98] R. Daley. Direct epifluorescence enumeration of native aquatic bacteria: Uses, limitations, and comparative accuracy , 1979 .
[99] R M Macnab,et al. Proton chemical potential, proton electrical potential and bacterial motility. , 1980, Journal of molecular biology.
[100] E. Dassa,et al. The energy-dependent degradation of guanosine 5'-diphosphate 3'-diphosphate in Escherichia coli. Lack of correlation with ATP levels in vivo and role of the transmembrane proton gradient. , 1980, European journal of biochemistry.
[101] A. Cozzone. How do bacteria synthesize proteins during amino acid starvation , 1981 .
[102] W. Bowden. Comparison of two direct-count techniques for enumerating aquatic bacteria , 1977, Applied and environmental microbiology.
[103] W. Konings. Generation of metabolic energy by end-product efflux , 1985 .
[104] R. Macnab,et al. Bacterial motility and the bacterial flagellar motor. , 1984, Annual review of biophysics and bioengineering.
[105] S. Pirt. The maintenance energy of bacteria in growing cultures , 1965, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[106] A. Matin,et al. Effect of starvation on cytoplasmic pH, proton motive force, and viability of an acidophilic bacterium, Thiobacillus acidophilus , 1983, Journal of bacteriology.
[107] R. Bell,et al. Heat injury and recovery of Streptococcus faecium associated with the souring of chub-packed luncheon meat. , 1984, Journal of Applied Bacteriology.
[108] K. E. Stevenson,et al. RECOVERY OF THERMALLY INJURED Saccharomyces cerevisiae: EFFECTS OF MEDIA AND STORAGE CONDITIONS , 1978 .
[109] K. Salonen. The estimation of bacterioplankton numbers and biomass by phase contrast microscopy , 1977 .
[110] T. Kawamura,et al. The autolytic peptidoglycan hydrolases of Streptococcus faecium. , 1985, Annales de l'Institut Pasteur. Microbiologie.
[111] J. Bright,et al. Amino Acid Assimilation and Electron Transport System Activity in Attached and Free-Living Marine Bacteria , 1983, Applied and environmental microbiology.
[112] R. Neihof,et al. Improved Method for Determination of Respiring Individual Microorganisms in Natural Waters , 1982 .
[113] K. Doxtader. Methods for Studying the Ecology of Soil Microorganisms , 1974 .
[114] D. E. F. Harrison,et al. Transient and oscillatory states of continuous culture , 1974 .
[115] R. Lahoz,et al. Lytic enzymes in autolysis of Botrytis cinerea , 1983 .
[116] C. Breuil,et al. Composition of Methanospirillum hungatii GP1 during growth on different media. , 1980, Canadian journal of microbiology.
[117] F. J. Ryan,et al. Bacterial mutation in a stationary phase and the question of cell turnover. , 1959, Journal of general microbiology.
[118] White Dc,et al. In situ determination of metabolic activity in aquatic environments. , 1984 .
[119] R. Y. Morita. Starvation-Survival of Heterotrophs in the Marine Environment , 1982 .
[120] H. Pooley. Turnover and spreading of old wall during surface growth of Bacillus subtilis , 1976, Journal of bacteriology.
[121] James S. Maki,et al. Comparison of Two Direct-Count Methods for Determining Metabolizing Bacteria in Freshwater , 1981, Applied and environmental microbiology.
[122] D. Herbert,et al. The continuous culture of bacteria; a theoretical and experimental study. , 1956, Journal of general microbiology.
[123] A. Tomasz,et al. Attachment of pneumococcal autolysin to wall teichoic acids, an essential step in enzymatic wall degradation , 1984, Journal of bacteriology.
[124] W. Chesbro,et al. Very slow growth of Escherichia coli , 1979, Journal of bacteriology.
[125] Akademii︠a︡ medit︠s︡inskikh nauk Sssr,et al. Techniques for the Assessment of Microbial Production and Decomposition in Fresh Waters , 1972 .
[126] J. Heijenoort,et al. N-Acetyimuramoyl-l-alkaline Amidase of Escherichia coli K12 , 1983 .
[127] T. Bauchop,et al. The growth of micro-organisms in relation to their energy supply. , 1960, Journal of general microbiology.
[128] A. Sharpe,et al. Improved bacterial recovery by membrane filters in the presence of food debris , 1984, Applied and environmental microbiology.
[129] L. Jolliffe,et al. The energized membrane and cellular autolysis in Bacillus subtilis , 1981, Cell.
[130] G. Shockman,et al. Cellular lysis of Streptococcus faecalis induced with triton X-100 , 1978, Journal of bacteriology.
[131] C.P.L. Grady,et al. A model for the bio-oxidation process which incorporates the viability concept , 1974 .
[132] G. Lenhard. Die Dehydrogenaseaktivität des Bodens als Maß für die Mikroorganismentätigkeit im Boden , 1956 .
[133] H. Bührer. Verbesserte Acridinorangemethode zur Direktzählung von Bakterien aus Seesediment , 1977 .
[134] R. Gómez,et al. Repair of thermal damage to the Escherichia coli nucleoid , 1981, Journal of bacteriology.
[135] J. Fein,et al. Autolytic enzyme-deficient mutants of Bacillus subtilis 168 , 1976, Journal of bacteriology.
[136] H. Kaback,et al. Involvement of the proton electrochemical gradient in genetic transformation in Escherichia coli. , 1981, Biochemical and biophysical research communications.
[137] Jd Buck,et al. The Plate Count in Aquatic Microbiology , 1979 .
[138] Mackey Bm. Lethal and sublethal effects of refrigeration, freezing and freeze-drying on micro-organisms , 1984 .
[139] W. Konings,et al. Generation of an electrochemical proton gradient in bacteria by the excretion of metabolic end products , 1979 .
[140] F. Young,et al. Regulation of Bacterial Cell Walls: Turnover of Cell Wall in Staphylococcus aureus , 1974, Journal of bacteriology.
[141] T. Matsuyama. Staining of living bacteria with rhodamine 123 , 1984 .
[142] C. Furusaka,et al. GROWTH OF BACTERIA IN THE HEAT-KILLED CELL SUSPENSIONS OF THE SAME BACTERIA , 1968 .
[143] B. Moseley. Radiation damage and its repair in non-sporulating bacteria. , 1984, Society for Applied Bacteriology symposium series.
[144] G. Hamer,et al. Aerobic thermophilic sludge treatment some biotechnological concepts , 1985 .
[145] V. Skulachev,et al. The proton pump is a molecular engine of motile bacteria , 1978, Nature.
[146] Jacques Monod,et al. LA TECHNIQUE DE CULTURE CONTINUE THÉORIE ET APPLICATIONS , 1978 .
[147] K. Koike,et al. The Survival of Bacteria under Starvation Conditions: a Mathematical Expression of Microbial Death , 1985 .
[148] C. Forsberg,et al. Role of Autolysins in the Killing of Bacteria by Some Bactericidal Antibiotics , 1971, Journal of bacteriology.
[149] V. Cabelli,et al. Membrane filter procedure for enumeration of Aeromonas hydrophila in fresh waters , 1979, Applied and environmental microbiology.
[150] L. Meyer-Reil,et al. Autoradiography and Epifluorescence Microscopy Combined for the Determination of Number and Spectrum of Actively Metabolizing Bacteria in Natural Waters , 1978, Applied and environmental microbiology.
[151] D. Herbold,et al. Bacillus subtilis N-acetylmuramic acid L-alanine amidase. , 1975, The Journal of biological chemistry.
[152] A Hurst,et al. Bacterial injury: a review. , 1977, Canadian journal of microbiology.
[153] A. Tomasz,et al. Biological consequences of the replacement of choline by ethanolamine in the cell wall of Pneumococcus: chanin formation, loss of transformability, and loss of autolysis. , 1968, Proceedings of the National Academy of Sciences of the United States of America.
[154] H. Rogers. Bacterial growth and the cell envelope. , 1970, Bacteriological reviews.
[155] J. Hobbie,et al. Use of nuclepore filters for counting bacteria by fluorescence microscopy , 1977, Applied and environmental microbiology.
[156] T. Tamaoki,et al. Reversible dissociation of Escherichia coli ribosomes by hydrogen peroxide. , 1968, Biochimica et biophysica acta.
[157] D. Tempest. The biochemical significance of microbial growth yields: A reassessment , 1978 .
[158] C. Laane,et al. The involvement of the membrane potential in nitrogen fixation by bacteroids of Rhizobium leguminosarum , 1979, FEBS letters.
[159] K Kogure,et al. A tentative direct microscopic method for counting living marine bacteria. , 1979, Canadian journal of microbiology.
[160] W. de Boer,et al. Cell wall turnover in growing and nongrowing cultures of Bacillus subtilis , 1982, Journal of bacteriology.
[161] R. B. Hespell,et al. Inhibitory effects of titanium (III) citrate on enumeration of bacteria from rumen contents , 1984, Applied and environmental microbiology.
[162] E. Padan,et al. Escherichia coli intracellular pH, membrane potential, and cell growth , 1984, Journal of bacteriology.