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Volumn 42, Issue 5, 2010, Pages 748-757

Development of pollution-induced community tolerance is linked to structural and functional resilience of a soil bacterial community following a five-year field exposure to copper

Author keywords

Bioavailability; Copper; Metals; Pollution induced community tolerance; Resilience; Resistance; Soil microbial communities; Sustainable agriculture; T RFLP; Toxicity

Indexed keywords

AGRICULTURAL SOILS; BACTERIAL BIOSENSOR; BACTERIAL COMMUNITY; BACTERIAL COMMUNITY STRUCTURE; BACTERIAL SPECIES; COMMUNITY LEVEL PHYSIOLOGICAL PROFILES; COMMUNITY STRUCTURES; COPPER METAL; CU TOLERANCE; DISSOLVED ORGANIC MATTERS; DIVERSITY LEVEL; ECOSYSTEM SERVICES; FIELD EXPERIMENT; FIELD EXPOSURE; FIELD PLOT; IDENTICAL STRUCTURES; LEUCINE INCORPORATION; MANURE-AMENDED SOILS; METAL TOXICITY; MICROBIAL ACTIVITIES; MICROBIAL TOXICITY; PIG MANURES; POLLUTION-INDUCED COMMUNITY TOLERANCE; RESISTANT STRAINS; SOIL BACTERIAL COMMUNITY; SOIL MICROBIAL COMMUNITY; SOIL MICROCOSMS; SOIL RESPIRATION; SUBSTRATE-INDUCED RESPIRATIONS; SUSTAINABLE AGRICULTURE; TERMINAL RESTRICTION FRAGMENT LENGTH POLYMORPHISMS;

EID: 77949270308     PISSN: 00380717     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.soilbio.2010.01.008     Document Type: Article
Times cited : (105)

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