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Evaluation of Plant-Derived Natural Pesticides and their Environmental Impact

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Résumé fourni par la source

The widespread reliance on synthetic chemical pesticides since the Green Revolution has secured unprecedented agricultural productivity but at considerable cost to environmental integrity and human health. This comprehensive evaluation critically examines plant-derived botanical pesticides as sustainable alternatives, moving beyond simplistic "natural equals safe" assumptions to provide a nuanced evidence-based assessment. Botanicals—including neem oil (azadirachtin), pyrethrins, essential oils, and emerging compounds—offer several genuine advantages: rapid biodegradation (half-lives of hours to days for most compounds), selective toxicity targeting arthropod-specific physiological processes (ecdysone antagonism, octopamine receptor modulation), diverse modes of action that impede resistance evolution, and favorable mammalian safety profiles. However, the review identifies five critical caveats frequently overlooked in promotional narratives. First, persistence varies dramatically by compound and soil context; rotenone and nicotine exhibit half-lives of 28–60 days, approaching synthetic pesticide persistence, while rapid degradation of pyrethrins and essential oils necessitates frequent reapplication. Second, non-target effects on beneficial organisms—including reduced parasitization rates in Trichogramma wasps (30–60%), impaired foraging and learning in honeybees, suppressed soil dehydrogenase activity (20–40%), and earthworm reproductive toxicity—though generally milder than synthetics, are not negligible. Third, the "land use dilemma" emerges when scaling production: one kilogram of azadirachtin requires approximately 0.5 hectares of neem plantation, raising questions about displacing food crops or natural habitats. Fourth, life cycle assessments reveal that energy-intensive extraction (5–10 kWh per liter of essential oil) and synthetic co-formulants (constituting 50–95% of formulated products) can undermine claimed environmental benefits. Fifth, regulatory frameworks designed for single-molecule synthetics are ill-suited to complex, variable botanical extracts. Emerging innovations—green nanoemulsions enabling controlled release and extended residual activity (14 days vs. 2–3 days for conventional formulations), synergistic consortia combining botanicals with microbial biocontrol agents (achieving 30–50% greater efficacy than either alone), and valorization of agro-industrial waste streams (citrus peels, oilseed cakes, spent distillation biomass)—offer transformative pathways to overcome current limitations. The review concludes that botanicals, when properly formulated, integrated within IPM frameworks, and evaluated through context-specific life cycle and ecotoxicological assessment, represent a vastly preferable alternative to synthetic pesticides, though they are not a universal panacea. Responsible adoption requires moving beyond binary "natural vs. synthetic" thinking toward nuanced, systems-based decision-making that accounts for soil conditions, non-target species sensitivity, production footprints, and formulation chemistry.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Evaluation of Plant-Derived Natural Pesticides and their Environmental Impact
Date Crossref
31/08/2026
Éditeur
Oriental Scientific Publishing Company
Type
journal-article

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Sujets associés

Insect Pest Control StrategiesInsect Utilization and EffectsPesticide Exposure and Toxicity

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