TY - JOUR
T1 - Effects of pesticides on community composition and activity of sediment microbes - responses at various levels of microbial community organization
AU - Widenfalk, Anneli
AU - Bertilsson, Stefan
AU - Sundh, Ingvar
AU - Goedkoop, Willem
PY - 2008
Y1 - 2008
N2 - A freshwater sediment was exposed to the pesticides captan, glyphosate, isoproturon, and pirimicarb at environmentally relevant and high concentrations. Effects on sediment microorganisms were studied by measuring bacterial activity, fungal and total microbial biomass as community-level endpoints. At the sub-community level, microbial community structure was analysed (PLFA composition and bacterial 16S rRNA genotyping, T-RFLP). Community-level endpoints were not affected by pesticide exposure. At lower levels of microbial community organization, however, molecular methods revealed treatment-induced changes in community composition. Captan and glyphosate exposure caused significant shifts in bacterial community composition (as T-RFLP) at environmentally relevant concentrations. Furthermore, differences in microbial community composition among pesticide treatments were found, indicating that test compounds and exposure concentrations induced multidirectional shifts. Our study showed that community-level end points failed to detect these changes, underpinning the need for application of molecular techniques in aquatic ecotoxicology. (c) 2007 Elsevier Ltd. All rights reserved.
AB - A freshwater sediment was exposed to the pesticides captan, glyphosate, isoproturon, and pirimicarb at environmentally relevant and high concentrations. Effects on sediment microorganisms were studied by measuring bacterial activity, fungal and total microbial biomass as community-level endpoints. At the sub-community level, microbial community structure was analysed (PLFA composition and bacterial 16S rRNA genotyping, T-RFLP). Community-level endpoints were not affected by pesticide exposure. At lower levels of microbial community organization, however, molecular methods revealed treatment-induced changes in community composition. Captan and glyphosate exposure caused significant shifts in bacterial community composition (as T-RFLP) at environmentally relevant concentrations. Furthermore, differences in microbial community composition among pesticide treatments were found, indicating that test compounds and exposure concentrations induced multidirectional shifts. Our study showed that community-level end points failed to detect these changes, underpinning the need for application of molecular techniques in aquatic ecotoxicology. (c) 2007 Elsevier Ltd. All rights reserved.
KW - pesticides
KW - sediment
KW - microbial communities
KW - PLEA
KW - genetic fingerprinting
KW - pesticides
KW - sediment
KW - microbial communities
KW - PLEA
KW - genetic fingerprinting
UR - https://res.slu.se/id/publ/17859
U2 - 10.1016/j.envpol.2007.07.003
DO - 10.1016/j.envpol.2007.07.003
M3 - Journal article
C2 - 17822816
SN - 0269-7491
VL - 152
SP - 576
EP - 584
JO - Environmental Pollution
JF - Environmental Pollution
IS - 3
ER -