Soil Microbial and Enzymatic Diversity as Affected by the Presence of Xenobiotics
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-47744-2_12
Reference47 articles.
1. Andreoni V, Cavalca L, Rao MA, Nocerino G, Bernasconi S, Dell’Amico E, Colombo M, Gianfreda L (2004) Bacterial communities and enzyme activities of PAHs polluted soils. Chemosphere 57:401–412
2. Bending GD, Rodríguez-Cruz MS, Lincoln SD (2007) Fungicide impacts on microbial communities in soils with contrasting management histories. Chemosphere 69:82–88
3. Blagodatskaya E, Kuzyakov Y (2013) Active microorganisms in soil: critical review of estimation criteria and approaches. Soil Biol Biochem 67:192–211
4. Brohon B, Delolme C, Gourdon R (2001) Complementarity of bioassays and microbial activity measurements for the evaluation of hydrocarbon-contaminated soils quality. Soil Biol Biochem 33:883–891
5. Cappa F, Suciu N, Trevisan M, Ferrari S, Puglisi E, Cocconcelli PS (2014) Bacterial diversity in a contaminated Alpine glacier as determined by culture-based and molecular approaches. Sci Total Environ 497–498:50–59
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