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Scorpion neurotoxin AaIT-expressing Beauveria bassiana enhances the virulence against Aedes albopictus mosquitoes

机译:蝎子神经毒素表达AaIT球孢白僵菌增强对白纹伊蚊的毒性

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摘要

To improve the insecticidal efficacy of this entomopathogen Beauveria bassiana, the fungus was genetically modified to express an insect-specific scorpion neurotoxin AaIT. The virulence of the recombinant B. bassiana strain (Bb-AaIT) against Aedes albopictus adults (which occurs via penetration through the cuticle during spore germination or by conidia ingestion), and the larvae (by conidia ingestion) was measured with bioassays. The median lethal concentration (LC50) of Bb-AaIT against A. albopictus larvae was 313.3-fold lower on day 4 and 11.3-fold lower on day 10 than that of the wild type (WT). Through conidia feeding or body contact, Bb-AaIT killed 50% of adult female mosquitoes at 3.9- or 1.9-fold reduced concentrations on day 4 and at 2.1- or 2.4-fold reduced concentrations on day 10. Compared with the results for the WT, the median lethal time (LT50) of Bb-AaIT was reduced by 28.6% at 1 × 107 conidia ml−1 and 34.3% at 1 × 106 conidia ml−1 in the larvae bioassay by conidia ingestion, while it decreased 32.3% at 1 × 107 conidia ml−1 by conidia ingestion and 24.2% at 1 × 108 conidia ml−1 by penetrating through the cuticle in the adult bioassay. All the differences were significant. Our findings indicated that Bb-AaIT had higher virulence and faster action than the WT in killing the larval and adult mosquitoes, and therefore, it is valuable for development as a commercial mosquito pesticide.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-017-0422-1) contains supplementary material, which is available to authorized users.
机译:为了提高这种昆虫病原球孢白僵菌的杀虫功效,对真菌进行了基因修饰以表达昆虫特异性蝎子神经毒素AaIT。用生物测定法测量了重组白僵菌菌株(Bb-AaIT)对白纹伊蚊成虫的毒力(在孢子萌发期间或通过分生孢子的摄取通过表皮的穿透)和幼虫(通过分生孢子的摄取)。与野生型(WT)相比,Bb-AaIT对白纹曲霉幼虫的致死浓度(LC50)中位数在第4天降低了313.3倍,在第10天降低了11.3倍。通过分生孢子喂养或身体接触,Bb-AaIT杀死了50%的成年雌性蚊子,第4天浓度降低了3.9或1.9倍,第10天浓度降低了2.1或2.4倍。 ,Bb-AaIT的中位致死时间(LT50)在1×10 7 分生孢子ml -1 时降低了28.6%,在1×10 时降低了34.3%幼虫通过分生孢子摄取法在幼虫生物测定中产生6 分生孢子ml -1 ,而在1×10 7 分生孢子ml -1 时下降32.3%。在成年生物测定法中,通过分生孢子食入并在1×10 8 分生孢子ml -1 中穿透24.2%。所有差异都很大。我们的发现表明,Bb-AaIT在杀灭幼虫和成年蚊子方面比WT具有更高的毒力和更快的作用,因此,它对于作为商业灭蚊剂的开发具有重要的价值。电子补充材料本文的在线版本(doi:10.1186 / s13568-017-0422-1)包含补充材料,授权用户可以使用。

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