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A novel Bacillus thuringiensis Cry9Ea-like protein with high insecticidal activity towards Cydia pomonella larvae.

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BACKGROUND The host specificity of known B. thuringiensis Cry and Vip pesticidal proteins still needs extensive investigation and the proteins currently used in crop protection are not effective against many… Click to show full abstract

BACKGROUND The host specificity of known B. thuringiensis Cry and Vip pesticidal proteins still needs extensive investigation and the proteins currently used in crop protection are not effective against many pest species. Cydia pomonella (L.) is a widespread and economically important pest of apples, very difficult to control since the larvae spend most of their life inside a fruit. Currently, large amounts of broad-spectrum, detrimental synthetic agents are used to combat this herbivore and therefore, biopesticides with high activity against C. pomonella are very much needed. RESULTS The toxicity of B. thuringiensis Cry9Ea along with five distinct pesticidal proteins (Cry1Aa, Cry1Ca, Cry1Ia, Cry2Ab and Vip3Aa) has been determined towards the first instar larvae of C. pomonella. Cry9Ea has much higher activity than the remaining tested proteins (30-1200-fold lower LC50 ) and possibly is the most potent B. thuringiensis pesticidal protein bioassayed against C. pomonella so far. In contrast, Cry9Ea is not toxic towards S. exigua (Hübn.), indicating potentially narrow spectrum of activity. Both insect species show high variability in susceptibility to the remaining Cry/Vip proteins. CONCLUSIONS The obtained results extend the existing knowledge regarding B. thuringiensis insecticidal protein host range and indicate Cry9Ea as a promising candidate for successful biological control of C. pomonella. This article is protected by copyright. All rights reserved.

Keywords: protein; thuringiensis; cry9ea; pomonella; larvae; activity

Journal Title: Pest management science
Year Published: 2020

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