The conservation of natural enemies, such as the parasitoid Palmistichus elaeisis, is essential to ensure its survival and functionality in agroecosystems. Preliminary studies evaluating the impacts of insecticides are crucial to support the inclusion of this species in future biological control programs targeting cotton pests. In this study, adult females of P. elaeisis were exposed to dry residues of the insecticides acephate, cartap, chlorfenapyr, deltamethrin, and malathion on cotton leaves at concentrations of 10, 25, 50, and 100% of the recommended field dose, with distilled water serving as the control. Mortality was assessed 24 hours after exposure. The natural mortality of the parasitoid was below 5%, and the insecticides exhibited wide variation in toxicity. Cartap caused minimal mortality (0–3.3%) and was classified as non-toxic (IOBC Class 1), indicating it was the least harmful compound. Deltamethrin caused low mortality at reduced doses (0–10%), classified as non-toxic to slightly harmful (IOBC Classes 1–2); however, it reached 100% mortality at the field dose, becoming highly toxic (Class 4). Acephate and chlorfenapyr caused high mortality (75–100%), classified as moderately to highly toxic (Classes 3–4), with relative toxicities 20 and 48.6 times higher than cartap, respectively. Malathion caused 100% mortality at all concentrations, being highly toxic (Class 4). Toxicity was strongly dose-dependent, and even at sublethal levels, acephate, chlorfenapyr, and malathion remained harmful. These results indicate that cartap is the most suitable option for integrated pest management in cotton due to its low toxicity to the parasitoid. In contrast, the other insecticides pose significant risks to its conservation.
Keywords:
endoparasitoid; integrated pest management; lepidoptera pests; toxicity