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Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Lab to field assessment of the ecotoxicological impact of chlorpyrifos, isoproturon, or tebuconazole on the diversity and composition of the soil bacterial community

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Συγγραφέας
Storck V., Nikolaki S., Perruchon C., Chabanis C., Sacchi A., Pertile G., Baguelin C., Karas P.A., Spor A., Devers-Lamrani M., Papadopoulou E.S., Sibourg O., Malandain C., Trevisan M., Ferrari F., Karpouzas D.G., Tsiamis G., Martin-Laurent F.
Ημερομηνία
2018
Γλώσσα
en
DOI
10.3389/fmicb.2018.01412
Λέξη-κλειδί
chlorpyrifos
DNA 16S
isoproturon
pesticide
tebuconazole
Acidimicrobiales
Acidobacteria
Actinobacteria
amplicon
Article
Bacteroidetes
Chloroflexi
climate
clinical assessment
crop protection
cyanobacterium
DNA extraction
DNA microarray
ecotoxicology
environmental exposure
field experiment
Firmicutes
laboratory
laboratory test
microbial diversity
microcosm
next generation sequencing
nitrogen mineralization
nonhuman
nutrient
precipitation
Proteobacteria
soil microflora
Sphingobacteriales
Frontiers Media S.A.
Εμφάνιση Μεταδεδομένων
Επιτομή
Pesticides are intentionally applied to agricultural fields for crop protection. They can harm non-target organisms such as soil microorganisms involved in important ecosystem functions with impacts at the global scale. Within the frame of the pesticide registration process, the ecotoxicological impact of pesticides on soil microorganisms is still based on carbon and nitrogen mineralization tests, despite the availability of more extensive approaches analyzing the abundance, activity or diversity of soil microorganisms. In this study, we used a high-density DNA microarray (PhyloChip) and 16S rDNA amplicon next-generation sequencing (NGS) to analyze the impact of the organophosphate insecticide chlorpyrifos (CHL), the phenyl-urea herbicide isoproturon (IPU), or the triazole fungicide tebuconazole (TCZ) on the diversity and composition of the soil bacterial community. To our knowledge, it is the first time that the combination of these approaches are applied to assess the impact of these three pesticides in a lab-to-field experimental design. The PhyloChip analysis revealed that although no significant changes in the composition of the bacterial community were observed in soil microcosms exposed to the pesticides, significant differences in detected operational taxonomic units (OTUs) were observed in the field experiment between pesticide treatments and control for all three tested pesticides after 70 days of exposure. NGS revealed that the bacterial diversity and composition varied over time. This trend was more marked in the microcosm than in the field study. Only slight but significant transient effects of CHL or TCZ were observed in the microcosm and the field study, respectively. IPU was not found to significantly modify the soil bacterial diversity or composition. Our results are in accordance with conclusions of the Environmental Food Safety Authority (EFSA), which concluded that these three pesticides may have a low risk toward soil microorganisms. © 2018 Storck, Nikolaki, Perruchon, Chabanis, Sacchi, Pertile, Baguelin, Karas, Spor, Devers-Lamrani, Papadopoulou, Sibourg, Malandain, Trevisan, Ferrari, Karpouzas, Tsiamis and Martin-Laurent.
URI
http://hdl.handle.net/11615/79492
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]
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