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J Hazard Mater ; 325: 136-156, 2017 Mar 05.
Article in English | MEDLINE | ID: mdl-27930998

ABSTRACT

Triketones, derived chemically from a natural phytotoxin (leptospermone), are a good example of allelochemicals as lead molecules for the development of new herbicides. Targeting a new and key enzyme involved in carotenoid biosynthesis, these latest-generation herbicides (sulcotrione, mesotrione and tembotrione) were designed to be eco-friendly and commercialized fifteen-twenty years ago. The mechanisms controlling their fate in different ecological niches as well as their toxicity and impact on different organisms or ecosystems are still under investigation. This review combines an overview of the results published in the literature on ß-triketones and more specifically, on the commercially-available herbicides and includes new results obtained in our interdisciplinary study aiming to understand all the processes involved (i) in their transfer from the soil to the connected aquatic compartments, (ii) in their transformation by photochemical and biological mechanisms but also to evaluate (iii) the impacts of the parent molecules and their transformation products on various target and non-target organisms (aquatic microorganisms, plants, soil microbial communities). Analysis of all the data on the fate and impact of these molecules, used pure, as formulation or in cocktails, give an overall guide for the assessment of their environmental risks.


Subject(s)
Herbicides/analysis , Herbicides/chemistry , Ketones/analysis , Ketones/chemistry , Cyclohexanones/analysis , Ecosystem , Ecotoxicology , Environment , Hydrogen-Ion Concentration , Mesylates/analysis , Photochemistry , Plants/drug effects , Risk Assessment , Soil , Soil Microbiology , Sulfones/analysis , Temperature , Water , Water Pollutants, Chemical/chemistry
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