7 REFERENCESAgrios, G.N. 2005. Plant Pathology. Fifth ed. Elsevier-Academic Press, San Diego, CA, p. 922.Amann, R.I., Ludwig, W., Schleifer, K-H. 1995. Phylogenetic identification and in situ detection of individual microbial cells without cultivation. Microbiological Reviews 59, 143-169.Arthurson, V. 2008. Proper sanitization of sewage sludge: a critical issue for a sustainable society. Applied and Environmental Microbiology 74, 5267-5275.Bagge, E., Sahlstrom, L., Albihn, A. 2005. The effect of hygienic treatment on the microbial flora of biowaste at biogas plants. Water Research 39, 4879-4886.Bonanomi, G., Antignani, V., Capodilupo, M., Scala, F. 2010. Identifying the characteristics of organic soil amendments that suppress soilborne plant diseases 42, 136-144.Bouallagui, H., Touhami, Y., Cheikh, R.B., Hamdi, M. 2005. Bioreactor performance in anaerobic digestion of fruit and vegetable wastes. Process Biochemistry 40, 989-995.Bryant, M.P., Boone, D.R. 1987. Emended description of strain MST (DSM 800T), the type strain of Methanosarcina barkeri. International Journal of Systematic Bacteriology 37, 169-170.Cabeza, I.O., López, R., Ruiz-Montoya, M., Díaz, M.J. 2013. Maximising municipal solid waste - Legume trimming residue mixture degradation in composting by control parameters optimization. Journal of Environmental Management 128, 266-273.Castaño, R., Borrero, C., Avilés, M. 2011. Organic matter fractions by SP-MAS 13C NMR and microbial communities involved in the suppression of Fusarium wilt in organic growth media. Biological Control 58, 286-293.Ceustermans, A., Coosemans, J., Ryckeboer, J. 2010. Compost microbial activity related to compost stability. In: Insam, H., Franke-Whittle, I., Goberna, M. (Eds.), Microbes at Work - From Wastes to Resources. Springer-Verlag Berlin Heidelberg, pp. 115-134.Chao, A. 1984. Nonparametric-estimation of the number of classes in a population. Scandinavian Journal of Statistics 11, 265-270.Chao, A., Lee, S. 1992. Estimating the number of classes via sample coverage. Journal of the American Statistical Association 87,210-217.Chao, A. Shen, T.J. 2003. Nonparametric estimation of Shannon’s index of diversity when there are unseen species in sample. Environmental and Ecological Statistics 10, 429-443.Chelliapan, S., Wilby, T., Yuzir, A., Sallis, P.J. 2011. Influence of prganic loading on the performance and microbial community structure of an anaerobic stage reactor treating pharmaceutical wastewater. Desalination 271, 257-254.Christen, R. 2008. Global sequencing: A review of current molecular data and new methods available to assess microbial diversity. Microbes and Environments 23, 253¬268.Clemens, J., Cuhls, C. 2003. Greenhouse gas emissions from mechanical and biological waste treatment of municipal waste. Environmental Technology 24, 745-754.Coats, E.R., Ibrahim, I., Briones, A., Brinkman, C.K. 2012. Methane production on thickened, pre-fermented manure. Bioresource Technology 107, 205-212.Cole, C., Sobala, A., Lu, C., Thatcher, S.R., Bowman, A., Brown, J.W.S., Green, P.J., Barton, G.J., Hutvagner, G. 2009. Filtering of deep sequencing data reveal ther existence of abundant Dicer-dependent small RNAs derived from tRNAs. RNA 15, 2147-2160.Colwell, R.K. Estimates: Statistical estimation of species richness and shared species from samples. Version 9, 2011. User’s guide and application published at http://purl.oclc.org/estimatesCosta, R., Gotz, M., Mrotzek, N., Lottmann, J., Berg, G., Smalla, K. 2006. Effects of site and plant species on rhizosphere community structure as revealed by molecular analysis of microbial guilds. FEMS Microbiology Ecology 56, 236-249.Cunha Queda, A.C., Vallini, G., Agnolucci, M., Coelho, C.A., Campos, L., de sousa, R.B. 2002. Microbiological and chemical characterization of composts at different levels of maturity, with evaluation of phytotoxicity and enzymatic activities. In: Insam, H., Riddech, N., Klammer, S. (Eds.), Microbiology of Composting. Springer-Verlag Berlin Heidelberg, pp. 345-355.Danon, M., Franke-Whittle, I.H., Insam, H., Chen, Y., Hadar, Y. 2008. Molecular analysis of bacterial community succession during prolonged compost curing. FEMS Microbiology Ecology 65, 133-144.de Bertoldi, M. 2010. Production and utilization of suppressive compost: Environmental, food and health benefits. In: Insam, H., Franke-Whittle, I., Goberna, M. (Eds.), Microbes at Work - From Wastes to Resources. Springer-Verlag Berlin Heidelberg, pp. 153-170.de Guardia, A., Petiot, C., Rogeau, D., Druilhe, C. 2008. Influence of aeration rate on nitrogen dynamics during composting. Waste Management 28, 575-587.DeSantis, T.Z., Brodie, E.L., Moberg, J.P., Zubieta, I.X., Piceno, Y.M., Andersen, G.L. 2007. High-density universal 16S rRNA microarray analysis reveals broader diversity than typical clone library when sampling the environment. Microbial Ecology 53, 371¬383.Di Lonardo, M.C., Lombardi, F., Gavasci, R. 2012. Characterization of MBT plants input and outputs: a review. Reviews in Environmental Science and Biotechnology 11, 353-363.Dianez, F., Santos, M., Tello, J.C., 2005. Suppresion of soilborne pathogens by compost, suppresive effects of grape marc compost on phytopathogenics oomycetes. Acta Horticulturae 697, 441-460.Dohrmann, A.B., Baumert, S., Klingebiel, L., Weiland, P., Tebbe, C.C. 2011. Bacterial community structure in experimental methanogenic bioreactors and search for pathogenic clostridia as community members. Applied Microbiology and Biotechnology 89, 1991-2004.Dunbar, J., Barns, S.M., Ticknor, L.O., Kuske, C.R. 2002. Empirical and theoretical bacterial diversity in four Arizona soils. Applied and Environmental Microbiology 68, 3035-3045.EEA Report. 2013. Managing municipal solid waste - a review of achievements in 32 European countries. No. 2/2013. ISBN 978-92-9213-355-9.Ekinci, K., Keener, H.M., Elwell, D.L. 2000. Composting short paper fiber with broiler litter and additives. Compost Science and Utilization, 8, 160-172.Eklind, Y., Beck-Friis, B., Bengtsson, S., Ejlertsson, J., Kirchmann, H., Mathisen, B., Nordkvist, E., Sonesson, U., Svensson, B.H., Torstensson, L. 1997. Chemical characterization of source-separated organic household wastes. Swedish Journal of Agricultural Research 27, 167-178.Elorrieta, M.A., López, M.J., Suárez-Estrella, F., Vargas-García, M.C., Moreno, J. 2002. Composting of different horticultural wastes: Effect of fungal inoculation. In: Insam, H., Riddech, N., Klammer, S. (Eds.), Microbiology of Composting. Springer¬Verlag Berlin Heidelberg, pp. 119-132.Epstein, E. 1996. The Science of Composting. CRC Press, p. 504.Esposito, G., Frunzo, L., Giordano, A., Liotta, F., Panico, A., Pirozzi, F., 2012. Anaerobic co-digestion of organic wastes. Review in Environmental Science and Bio¬Technology 11, 325-341.Fernández-Rodríguez, J., Pérez, M., Romero, L.I. 2013. Comparison of mesophilic and thermophilic dry anaerobic digestion of OFMSW: Kinetic analysis. Chemical Engineering Journal 232, 59-64.Fracchia, L., Dohrmann, A.B., Martinotti, M.G., Tebbe, C.C. 2006. Bacterial diversity in a finished compost and vermicompost: differences revealed by cultivation- independent analyses of PCR-amplified 16S rRNA genes. Applied Microbiology and Biotechnology 71, 942-952.Franke-Whittle, I.H., Knapp, B.A., Fuchs, J., Kaufmann, R., Insam, H. 2009. Application of COMPOCHIP microarray to investigate the bacterial communities of different composts. Microbial Ecology 57, 510-521.Fravel, D., Olivain, C., Alabouvette, C. Fusarium oxysporum and its biocontrol. New Phytologist 157, 493-502.Friedrich, M. W. 2005. Methyl-coenzyme M reductase genes: Unique functional marker for methanogenic and anaerobic methane-oxidising Archaea. Methods in Enzymology, Environmental Microbiology 397, 428-442.Gallego, E., Roca, F.J., Perales, J.F., Sánchez, G., Esplugas, P. 2012. Characterization and determination of the odorous charge in the indoor air of a waste treatment facility through the evaluation of volatile organic compounds (VOCs) using TDGC/MS. Waste Management 32, 2469-2481.Gallert, C.,Winter, J. 2002. Solid and liquid residues as raw materials for biotechnology. Naturwissenschaften 89, 483-496.Gavala, H.N., Yenal, U., Skiadas, I.V., Westermann, P., Ahring, B.K. 2003. Mesophilic and thermophilic anaerobic digestion of primary and secondary sludge. Effect of pre¬treatment at elevated temperature. Water Research 37, 4561-4572.Gibello, A., Vela, A.I., Martín, M., Mengs, G., Alonso, P.Z., Garbi, C., Fernandez- Garayzabal, J.F. 2011. Pseudomonas composti sp. nov., isolated from compost samples. International Journal of Systematic and Evolutionary Microbiology 61, 2962-2966.Goberna, M., Schoen, M.A., Sperl, D., Wett, B., Insam, H. 2010. Mesophilic and thermophilic co-fermentation of cattle excreta and olive mill wastes in pilot anaerobic digesters. Biomass and Bioenergy 34, 340-346.Goris, J., Konstantinidis, K.T., Klappenbach, J.A., Coenye, T., Vandamme, P., Tiedje, J.M. 2007. DNA-DNA hybridization values and their relationship to whole-genome sequence similarities. International Journal of Systematic and Evolutionary Microbiology 57, 81-91.
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