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Field evidence supports former experimental claims on the stimulatory effect of glyphosate on picocyanobacteria communities.
Berman, Manuel Castro; Llames, María E; Minotti, Priscilla; Fermani, Paulina; Quiroga, María V; Ferraro, Marcela A; Metz, Sebastián; Zagarese, Horacio E.
Affiliation
  • Berman MC; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina. Electronic address: manu-10-89@intech.gov.ar.
  • Llames ME; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
  • Minotti P; Institute of Environmental Research and Engineering. Campus Miguelete, 25 de Mayo y Francia, 1650 PB San Martín, Buenos Aires, Argentina.
  • Fermani P; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
  • Quiroga MV; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
  • Ferraro MA; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
  • Metz S; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
  • Zagarese HE; Institute of Biotechnological Research. Av., Intendente Marinos Km. 8,2, 7130 PB Chascomús, Buenos Aires, Argentina.
Sci Total Environ ; 701: 134601, 2020 Jan 20.
Article in En | MEDLINE | ID: mdl-31734485
ABSTRACT
Glyphosate-based herbicides are the most commonly used herbicide worldwide. Although glyphosate is known to be toxic to aquatic organisms, it can also have stimulatory effects on small-size (ø <2 µm) cyanobacteria (Pcy) able to metabolize and degrade glyphosate and AMPA. Several previous experimental studies in micro- and mesocosms reported increases of Pcy abundance in response to glyphosate additions, but comparable field evidence is presently unavailable. We surveyed a large geographical area in order to collect information on Pcy abundance from lakes within the Pampa region (with over three decades of glyphosate usage) and lakes from Patagonia (with virtually no history of glyphosate usage). Fifty-two Pampean lakes and 24 Patagonian lakes were surveyed. We used three indicators of glyphosate impact herbicide concentration, the presence of phosphonate metabolism genes (responsible for glyphosate and AMPA degradation) in environmental DNA samples, and descriptors of land use in the surrounding area of each lake. We addressed three questions (1) is there field evidence of stimulatory effects of glyphosate on picocyanobacteria abundance? (2) is the magnitude of the effects of glyphosate in natural systems comparable to that reported under controlled experimental conditions? and (3), how do the effects of glyphosate compare to the effects of other potential environmental drivers of Pcy biomass? The collected evidence is consistent with the hypothesis that long-term agricultural practices relying on glyphosate-based technologies had important effects on freshwater microbial communities, particularly by promoting increases in picocyanobacteria abundance.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Lakes / Environmental Monitoring / Cyanobacteria / Glycine / Herbicides Language: En Journal: Sci Total Environ Year: 2020 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Lakes / Environmental Monitoring / Cyanobacteria / Glycine / Herbicides Language: En Journal: Sci Total Environ Year: 2020 Document type: Article
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