Adaptation and population dynamics of Azotobacter vinelandii during aerobic biological treatment of olive-mill wastewater.
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[1] W. Pearson. Rapid and sensitive sequence comparison with FASTP and FASTA. , 1990, Methods in enzymology.
[2] Soil DNA extraction and assessment of the fate of Mycobacterium chlorophenolicum strain PCP-1 in different soils by 16S ribosomal RNA gene sequence based most-probable-number PCR and immunofluorescence , 1997, Biology and Fertility of Soils.
[3] C. Crestini,et al. The biodegradation of recalcitrant effluents from an olive mill by a white-rot fungus. , 1998, Journal of biotechnology.
[4] T. de la Rubia,et al. Phenolic content and antibacterial activity of olive oil waste waters , 1992 .
[5] M. Daniels,et al. Cloning of genes involved in pathogenicity of Xanthomonas campestris pv. campestris using the broad host range cosmid pLAFR1 , 1984, The EMBO journal.
[6] M. de Bertoldi,et al. Evaluating toxicity of immature compost , 1981 .
[7] M. Jacobson,et al. Nucleotide sequence and mutational analysis of the structural genes (anfHDGK) for the second alternative nitrogenase from Azotobacter vinelandii , 1989, Journal of bacteriology.
[8] Fangtao Wu,et al. Growth of Azotobacter vinelandii on Soil Nutrients , 1987, Applied and environmental microbiology.
[9] V. Degrange,et al. Detection and counting of Nitrobacter populations in soil by PCR , 1995, Applied and environmental microbiology.
[10] C. Balis,et al. Olive mill waste as a substrate for nitrogen fixation , 1996 .
[11] A. Ramos-Cormenzana,et al. Studies on antibacterial activity of waste waters from olive oil mills (alpechin) : inhibitory activity of phenolic and fatty acids , 1990 .
[12] A. Ramos-Cormenzana,et al. Growth and nitrogenase activity of Azotobacter vinelandii on soil phenolic acids , 1990 .
[13] A. Evidente,et al. Isolation, spectroscopy and selective phytotoxic effects of polyphenols from vegetable waste waters , 1992 .
[14] R. B. Padilla,et al. Use and treatment of olive mill wastewater: current situation and prospects in Spain , 1992 .
[15] L. M. Nieto,et al. The biological purification of waste products from olive oil extraction , 1993 .
[16] W. G. Cochran,et al. Estimation of bacterial densities by means of the "most probable number". , 1950, Biometrics.
[17] J. Moreno,et al. Growth and nitrogenase activity of Azotobacter vinelandii in chemically-defined media containing glucose and p-hydroxybenzoic acid , 1995 .
[18] A. Rozzi,et al. Treatment and disposal of olive mill effluents , 1996 .
[20] A. G. L. D. Hierro,et al. Estudio del contenido en acidos carboxilicos del alpechin de la aceituna, y evolucion de los mismos. , 1977 .
[21] G. Zervakis,et al. Edible mushrooms from olive oil mill wastes , 1996 .
[22] M. Gómez,et al. Effects of wastewater from olive processing on seed germination and early plant growth of different vegetable species , 1986 .
[23] S. Sayadi,et al. Roles of Lignin Peroxidase and Manganese Peroxidase from Phanerochaete chrysosporium in the Decolorization of Olive Mill Wastewaters. , 1995, Applied and environmental microbiology.
[24] Ana Picado,et al. Acute toxicity evaluation of olive oil mill wastewaters: A comparative study of three aquatic organisms , 1999 .
[25] A. Rescigno,et al. Olive milling wastewater as a medium for growth of fourPleurotus species , 1991, Applied biochemistry and biotechnology.
[26] K. Huss-Danell,et al. Population dynamics of Alnus-infective Frankia in a forest soil with and without host trees , 1994 .
[27] P. Fay,et al. Effects of long-term treatment with acetylene on nitrogen-fixing microorganisms , 1977, Applied and environmental microbiology.
[28] I. Chatzipavlidis,et al. Biochemical and molecular characterization of an Azotobacter vinelandii strain with respect to its ability to grow and fix nitrogen in olive mill wastewater , 1996 .
[29] E. Galli,et al. The Fertilizing Value of Waste Waters from the Olive Processing Industry , 1992 .
[30] P Simonet,et al. Detection and enumeration of bacteria in soil by direct DNA extraction and polymerase chain reaction , 1992, Applied and environmental microbiology.
[31] María José López,et al. Bioremediation of alpechin. , 1995 .
[32] C. Balis,et al. Bio-fertilization of olive oil mills liquid wastes. The pilot plant in Messinia, Greece , 1996 .
[33] J. M. Brice,et al. Respiratory protection of nitrogenase in Azotobacter vinelandii , 1973, FEBS letters.
[34] A. Evidente,et al. Antibacterial polyphenols from olive oil mill waste waters. , 1995, The Journal of applied bacteriology.
[35] R. Poole,et al. Cloning and mutagenesis of genes encoding the cytochrome bd terminal oxidase complex in Azotobacter vinelandii: mutants deficient in the cytochrome d complex are unable to fix nitrogen in air , 1990, Journal of bacteriology.
[36] R. Rennie. A single medium for the isolation of acetylene-reducing (dinitrogen-fixing) bacteria from soils. , 1981, Canadian journal of microbiology.
[37] James P. Martin. Nitrogen Fixation by Free-living Microorganisms , 1976 .
[38] J. González-López,et al. Effect of wastewaters from olive oil mills (alpechin) on Azotobacter nitrogen fixation in soil , 1992 .
[39] M. Yates,et al. Respiration and Nitrogen Fixation in Azotobacter , 1974 .
[40] R. Hardy,et al. The acetylene-ethylene assay for n(2) fixation: laboratory and field evaluation. , 1968, Plant physiology.