Toxin stability improvement and toxicity increase against dipteran and lepidopteran larvae of Bacillus thuringiensis crystal protein Cry2Aa
Author | Elleuch, Jihen |
Author | Jaoua, Samir |
Author | Ginibre, Carole |
Author | Chandre, Fabrice |
Author | Tounsi, Slim |
Author | Zghal, Raida Z. |
Available date | 2017-02-19T08:28:35Z |
Publication Date | 2016-03-29 |
Publication Name | Pest Management Science |
Identifier | http://dx.doi.org/10.1002/ps.4261 |
Citation | Elleuch, J., Jaoua, S., Ginibre, C., Chandre, F., Tounsi, S. and Zghal, R. Z. (2016), Toxin stability improvement and toxicity increase against dipteran and lepidopteran larvae of Bacillus thuringiensis crystal protein Cry2Aa. Pest. Manag. Sci., 72: 2240–2246. |
ISSN | 1526-498X |
Abstract | BACKGROUND Bacillus thuringiensis δ-endotoxins are the most widely used biopesticides for controlling economically important crop pests and disease vectors. Improving their efficacy is of great benefit. Here, an improvement in Cry2Aa δ-endotoxin toxicity was attempted via a cry gene over expression system using P20 from B. thuringiensis israelensis. RESULTS The coexpression of Cry2Aa with P20 resulted in a seven fold increase in its production yield in B. thuringiensis. Generated crystals proved to be significantly more toxic (505.207 µg g−1, 1.99 mg L−1 and 1.49 mg L−1) than the P20-lacking control (720.78 µg g−1, 705.69 mg L−1 and 508.51 mg L−1) against Ephestia kuehniella, Aedes aegypti and Culex pipiens larvae respectively. In vitro, processing experiments revealed a P20-mediated protection of Cry2Aa against degradation under larval gut conditions. Thus, P20 could promote the maintenance of a tightly packaged conformation of Cry2Aa toxins in the larval midgut upon correct activation and binding to its membrane receptors. CONCLUSION Based on their resistance against excessive proteolysis, Cry2Aa δ-endotoxins, produced in the presence of P20, could be considered as a successful control agent for E. kuehniella and an effective alternative for mosquito control, implying its possible exploitation in pest management programmes. © 2016 Society of Chemical Industry |
Sponsor | Ministry of Higher Education and Scientific Research |
Language | en |
Publisher | Wiley |
Subject | P20 helper protein Cry2Aa toxin larvicidal activity improvement protection against excessive proteolysis |
Type | Article |
Pagination | 2240-2246 |
Issue Number | 12 |
Volume Number | 72 |
ESSN | 1526-4998 |
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