Correlation between structural diversity and catabolic versatility of metal-affected prototrophic bacteria in soil
Tài liệu tham khảo
Anderson, T.-H., Domsch, K.H., 1986. Carbon link between microbial biomass and soil organic matter. In: Megusar, F., Gantar, M. (Eds.), Proceedings of the Fourth International Symposium on Microbial Ecology. Slovene Society for Microbiology, Ljubljana, pp. 467–471
Anderson, 1993, The metabolic quotient for CO2 (qCO2) as a specific activity parameter to assess the effects of environmental conditions, such as pH, on the microbial biomass of forest soils, Soil Biology & Biochemistry, 25, 393, 10.1016/0038-0717(93)90140-7
Andrews, J.H., 1984. Relevance of r- and K-theory to the ecology of plant pathogens. In: Klug, M.J., Reddy, C.A. (Eds.), Current Perspectives in Microbial Ecology. American Society for Microbiology, Washington, pp. 1–7
Atlas, R.M., 1984. Use of microbial diversity measurements to assess environmental stress. In: Klug, M.J., Reddy, C.A. (Eds.), Current Perspectives in Microbial Ecology. American Society for Microbiology, Washington, pp. 540–545
Barkay, 1985, Effect of metal-rich sewage sludge application on the bacterial communities of grasslands, Applied and Environmental Microbiology, 49, 333, 10.1128/AEM.49.2.333-337.1985
Barry, 1990, A general method to generate DNA probes for microorganisms, BioTechnology, 8, 233, 10.1038/nbt0390-233
Bassam, 1991, Fast and sensitive silver staining of DNA in polyacrylamide gels, Annals of Biochemistry, 80, 81
Bowater, 1996, Relationship between Escherichia coli growth and deletions of CTG.CAG repeats in plasmids, Journal of Molecular Biology, 264, 82, 10.1006/jmbi.1996.0625
Brookes, 1984, Effects of metal toxicity on the soze of the soil microbial biomass, Journal of Soil Science, 35, 341, 10.1111/j.1365-2389.1984.tb00288.x
Burkhardt, 1993, Impact of heavy metals on the degradative capabilities of soil bacterial communities, Biology and Fertility of Soils, 16, 154, 10.1007/BF00369419
Chaudri, 1993, Enumeration of indigenous Rhizobium leguminosarum biovar trifolii in soils previously treated with metal-contaminated sewage sludge, Soil Biology & Biochemistry, 25, 301, 10.1016/0038-0717(93)90128-X
Coughtrey, 1979, Litter accumulation in woodlands contaminated by Pb, Zn, Cd and Cu, Oecologia, 39, 51, 10.1007/BF00345996
Fließbach, 1994, Soil microbial biomass and microbial activity in soils treated with heavy metal contaminated sewage sludge, Soil Biology & Biochemistry, 26, 1201, 10.1016/0038-0717(94)90144-9
German Federal Ministry of the Interior, 1982. Novelle zur Verordnung über das Aufbringen von Klärschlamm (AbfKklärV). Bundesgesetzblatt. Bonn, Germany, 28 April, 1982
Karanth, 1979, Regulation of the utilization of 4-hydroxy-benzoate and 4-hydroxycinnamate in batch and continuous cultures of Pseudomonas testosteroni, Archives of Microbiology, 120, 97, 10.1007/BF00409095
Liesack, W., Janssen, P.H., Rainey, F.A., Ward-Rainey, N.L., Stackebrandt, E., 1997. Microbial diversity in soil: the need for a combined approach using molecular and cultivation techniques. In: van Elsas, J.D., Trevors, J.T., Wellington, E.M.H. (Eds.), Modern Soil Microbiology. Marcel Dekker, New York
Magasanik, B., 1961. Catabolite repression. Cold Spring Harbor Symposia on Quantitative Biology, vol. 26. pp. 249–256
Modi, 1991, Plasmid macro-evolution: selection of deletions during adaptation in a nutrient-limited environment, Genetica, 84, 195, 10.1007/BF00127247
Pielou, 1966, The measurement of diversity in different types of biological collections, Journal of Theoretical Biology, 13, 131, 10.1016/0022-5193(66)90013-0
Pochon, J., Tardieux, P., 1962. Techniques d'analyse en Micro biologie du Sol. Editions de la Tourelle, St. Mandé, Seine
Reber, 1973, Comparative studies with two pseudomonads on the sequential degradation of aromatic substances metabolised via different pathways, Archiv für Mikrobiologie, 89, 305, 10.1007/BF00408897
Reber, H.H., 1975. Investigation on the sequential degradation of aromatic substances in pseudomonads. In: Kilbertus, G., Reisinger, O., Mourrey, A., Cancela da Fonseca, J.A. (Eds.), Bio dégradation et Humification. Pierron, Sarreguémines, pp. 466–469
Reber, 1992, Simultaneous estimates of the diversity and the degradative capability of heavy-metal-affected soil bacterial communities, Biology and Fertility of Soils, 13, 181, 10.1007/BF00336277
Ryu, 1938, On the gram-differentiation by the simplest method, Journal of the Japanese Society of Veterinary Science, 17, 31, 10.1292/jvms1922.17.3_205
Salonius, 1981, Metabolic capabilities of forest soil microbial populations with reduced species diversity, Soil Biology & Biochemistry, 13, 1, 10.1016/0038-0717(81)90094-8
Shannon, C.E., Weaver, W., 1969. The Mathematical Theory of Communication, 4th ed. The University of Illinois Press, Urbana
Tyler, G., 1981. Heavy metal in soil biology and biochemistry. In: Paul, E.A., Ladd, J.N. (Eds.), Soil Biochemistry, vol. 5. Dekker, New York, pp. 371–414
Welsh, 1991, Genomic fingerprints produced by PCR with consensus tRNA gene primers, Nucleic Acids Research, 19, 861, 10.1093/nar/19.4.861
Williams, 1988, Loss of the toluene–xylene catabolic genes of TOL plasmid pWWO during growth of Pseudomonas putida on benzoate is due to a selective growth advantage of cured segregants, Journal of General Microbiology, 134, 2039