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A winning formula: sustainable control of three stored-product insects through paired combinations of entomopathogenic fungus, diatomaceous earth, and lambda-cyhalothrin

Waqas Wakil; Nickolas G. Kavallieratos; Nikoleta Eleftheriadou; Syed Adnan Haider; Mirza Abdul Qayyum; Muhammad Tahir; Khawaja G. Rasool; Mureed Husain; Abdulrahman S. Aldawood
Environmental Science and Pollution Research · Vol. 31, Issue 10 · pp. 15364-15378 · 2024

Abstract

This research aimed to assess the effectiveness of Metarhizium robertsii , diatomaceous earth (Protect-It), and lambda-cyhalothrin, for the long-term protection of stored wheat against three destructive grain insect pests, Rhyzopertha dominica , Tribolium castaneum , and Trogoderma granarium . Different treatments were applied, both alone and in paired combinations in laboratory and persistence trials. Single treatments exhibited significantly lower mortality rates in comparison to the paired treatments for all tested insect species. Among the single treatments, lambda-cyhalothrin (Lamb) resulted in significantly higher mortality rates in laboratory trials, followed by diatomaceous earth (DE) and M. robertsii (Mr), with insignificant differences between Mr and DE. Evidently, DE exhibited the highest persistence after 120 days of storage for all insect species and initial exposures, although variations in mortality rates among treatments were mostly insignificant. Overall, the most effective treatment in terms of mortality in laboratory, and persistence trials, and progeny production was DE + Lamb, followed by Mr + Lamb, and Mr + DE for all tested insect species. In general, the most susceptible insect species was R. dominica , followed by T. castaneum and T. granarium . This research highlights the effectiveness of M. robertsii , DE, and lambda-cyhalothrin in providing prolonged protection of stored wheat against all the examined grain insect species.

Bibliographic Information

JournalEnvironmental Science and Pollution Research
PublisherSpringer
Publication Date2024-01-31
Publication Year2024
Volume31
Issue10
Pages15364-15378
Document TypeJournal Article
eISSN1614-7499
DOI10.1007/s11356-024-31824-1

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NARA Access Coverage1994-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11356
Publisher PageOpen Publisher Page
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