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将杀虫蛋白 Vip3Aa1 整合到金龟子绿僵菌中,通过表皮和经口感染增强了对斜纹夜蛾幼虫的真菌毒力。

Integration of insecticidal protein Vip3Aa1 into Beauveria bassiana enhances fungal virulence to Spodoptera litura larvae by cuticle and per Os infection.

机构信息

College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, People's Republic of China.

出版信息

Appl Environ Microbiol. 2010 Jul;76(14):4611-8. doi: 10.1128/AEM.00302-10. Epub 2010 May 21.

Abstract

The entomopathogenic fungus Beauveria bassiana acts slowly on insect pests through cuticle infection. Vegetative insecticidal proteins (Vip3A) of Bacillus thuringiensis kill lepidopteran pests rapidly, via per os infection, but their use for pest control is restricted to integration into transgenic plants. A transgenic B. bassiana strain (BbV28) expressing Vip3Aa1 (a Vip3A toxin) was thus created to infect the larvae of the oriental leafworm moth Spodoptera litura through conidial ingestion and cuticle adhesion. Vip3Aa1 ( approximately 88 kDa) was highly expressed in the conidial cytoplasm of BbV28 and was detected as a digested form ( approximately 62 kDa) in the larval midgut 18 and 36 h after conidial ingestion. The median lethal concentration (LC(50)) of BbV28 against the second-instar larvae feeding on cabbage leaves sprayed with conidial suspensions was 26.2-fold lower than that of the wild-type strain on day 3 and 1.1-fold lower on day 7. The same sprays applied to both larvae and leaves for their feeding reduced the LC(50) of the transformant 17.2- and 1.3-fold on days 3 and 7, respectively. Median lethal times (LT(50)s) of BbV28 were shortened by 23 to 35%, declining with conidial concentrations. The larvae infected by ingestion of BbV28 conidia showed typical symptoms of Vip3A action, i.e., shrinkage and palsy. However, neither LC(50) nor LT(50) trends differed between BbV28 and its parental strain if the infection occurred through the cuticle only. Our findings indicate that fungal conidia can be used as vectors for spreading the highly insecticidal Vip3A protein for control of foliage feeders such as S. litura.

摘要

球孢白僵菌通过表皮感染缓慢作用于昆虫害虫。苏云金芽孢杆菌的营养杀虫蛋白(Vip3A)通过口服感染迅速杀死鳞翅目害虫,但它们的用途仅限于整合到转基因植物中。因此,创建了表达 Vip3Aa1(一种 Vip3A 毒素)的转基因球孢白僵菌菌株(BbV28),通过孢子摄入和表皮附着感染斜纹夜蛾幼虫。Vip3Aa1(约 88 kDa)在 BbV28 的孢子细胞质中高度表达,并在孢子摄入后 18 和 36 小时在幼虫中肠中检测为消化形式(约 62 kDa)。BbV28 对以喷洒孢子悬浮液的白菜叶为食的第二代幼虫的半数致死浓度(LC(50))在第 3 天比野生型菌株低 26.2 倍,在第 7 天低 1.1 倍。对于同时在幼虫和叶子上喷洒以进行取食的相同喷雾,转化体的 LC(50)在第 3 天和第 7 天分别降低了 17.2 倍和 1.3 倍。BbV28 的中位致死时间(LT(50))缩短了 23%至 35%,随孢子浓度下降而下降。通过摄入 BbV28 孢子感染的幼虫表现出 Vip3A 作用的典型症状,即收缩和麻痹。然而,如果感染仅通过表皮发生,则 BbV28 和其亲本菌株的 LC(50)和 LT(50)趋势没有差异。我们的研究结果表明,真菌孢子可以用作传播高杀虫性 Vip3A 蛋白的载体,用于控制斜纹夜蛾等食叶动物。

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