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Impact des métaux lourds sur les interactions plante/ver de terre ...

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Référencestel-00486649, <strong>ver</strong>sion 1 - 26 May 2010Satchell, J.E. (1983). Earthworm microbiology. In: Satchell, J.E. (Ed.), Earthworm ecologyfrom Darwin to Vermiculture. Chapman and Hall, London, 351-364.Scheu, S. (1987). The role of substrate feeding earthworms (Lumbricidae) for bioturbation ina beechwood soil. Oecologia 72, 192-196.Scheu, S., Schlitt, N., Tiunov, A.V., Newington J.E., Jones, T.H. (2002). Effects of thepresence and community composition of earthworms on microbial communityfunctioning. Oecologia 133, 254–260.Schnüner J., Rosswall T. (1982). Fluorescein diacetate hydrolysis as a mea<strong>sur</strong>e of totalmicrobial activity in soil and litter. Appl. Environ. Microbiol. 43, 1256-1261.Shah, K. and Nongkynrih, J.M. (2007). Metal hyperaccumulation and bioremediation.Biologia Plantarum 51, 618-634.Shaw, C. and Pawluk, S. (1986). The <strong>de</strong>velopment of soil structure by Octolasion tyrtaeum,Aporrecto<strong>de</strong>a turgida and Lumbricus <strong>terre</strong>stris in parent materials belonging todifferent textural classes. Pedobiologia 29, 327–339.Sheffield, V.C., Beck, J.S., Stone, E.M. and Myers, R.M. (1992). A simple and efficientmethod for attachment of a 40base pair, GC rich sequence to PCR amplified DNA.BioTechniques 12, 386–387.Shen, Z.G., Zhao, F.J., McGrath, S.P. (1997). Uptake and transport of zinc in thehyperaccumulator Thlaspi caeru<strong>les</strong>cens and the non-hyperaccumulator Thlaspiochroleucum. Plant, Cell and Environment 20, 898-906.Sims, R.W., Gerard, B.M. (1985). Earthworm. Keys and notes for i<strong>de</strong>ntification and study onthe species. Brill and Backhuys, London.Singh, O. V., Labana, S., Pan<strong>de</strong>y, G., Budhiraja, R., and Jain R. K. (2003). Phytoremediation:an o<strong>ver</strong>view of metallic ion <strong>de</strong>contamination from soil. Appl. Microbiol. Biotechnol.61, 405-412.Singh, O.V., Labana, S., Pan<strong>de</strong>y, G., Budhiraja, R., and Jain, R.K. (2003). Phytoremediation:an o<strong>ver</strong>view of metallic ion <strong>de</strong>contamination from soil. Appl. Microbiol. Biotechnol.61, 405-412.Smalla, K., Wachtendorf, U., Heuer, H., Liu W., and Forney, L. (1998). Analysis of BIOLOGGN substrate utilization patterns by microbial communities. Appl. Environ. Microbiol.64, 1220–1225.Smith, E., Leeflang, P., and Wernars, K. (1997). Detection of shifts in microbial communitystructure and di<strong>ver</strong>sity in soil caused by copper contamination using amplifiedribosomal DNA restriction analysis. FEMS Microbiol. Ecol. 23, 249-261.141

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