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转 Vip3A 和 Cry1Ac 双价基因棉对鳞翅目害虫具有广谱杀虫活性。

Transgenic cotton coexpressing Vip3A and Cry1Ac has a broad insecticidal spectrum against lepidopteran pests.

机构信息

Fujian Provincial Key Laboratory of Insect Ecology, Key Laboratory of Integrated Pest Management for Fujian-Taiwan Crops, Ministry of Agriculture, Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian, China; The State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

J Invertebr Pathol. 2017 Oct;149:59-65. doi: 10.1016/j.jip.2017.08.001. Epub 2017 Aug 4.

Abstract

Although farmers in China have grown transgenic Bt-Cry1Ac cotton to resist the major pest Helicoverpa armigera since 1997 with great success, many secondary lepidopteran pests that are tolerant to Cry1Ac are now reported to cause considerable economic damage. Vip3AcAa, a chimeric protein with the N-terminal part of Vip3Ac and the C-terminal part of Vip3Aa, has a broad insecticidal spectrum against lepidopteran pests and has no cross resistance to Cry1Ac. In the present study, we tested insecticidal activities of Vip3AcAa against Spodoptera litura, Spodoptera exigua, and Agrotis ipsilon, which are relatively tolerant to Cry1Ac proteins. The bioassay results showed that insecticidal activities of Vip3AcAa against these three pests are superior to Cry1Ac, and after an activation pretreatment, Vip3AcAa retained insecticidal activity against S. litura, S. exigua and A. ipsilon that was similar to the unprocessed protein. The putative receptor for this chimeric protein in the brush border membrane vesicle (BBMV) in the three pests was also identified using biotinylated Vip3AcAa toxin. To broaden Bt cotton activity against a wider spectrum of pests, we introduced the vip3AcAa and cry1Ac genes into cotton. Larval mortality rates for S. litura, A. ipsilon and S. exigua that had fed on this new cotton increased significantly compared with larvae fed on non-Bt cotton and Bt-Cry1Ac cotton in a laboratory experiment. These results suggested that the Vip3AcAa protein is an excellent option for a "pyramid" strategy for integrated pest management in China.

摘要

尽管中国农民自 1997 年以来成功地种植了转 Bt-Cry1Ac 棉花来抵抗主要害虫棉铃虫,但现在许多对 Cry1Ac 具有耐受性的次要鳞翅目害虫已造成相当大的经济损失。Vip3AcAa 是一种嵌合蛋白,其 N 端部分来自 Vip3Ac,C 端部分来自 Vip3Aa,对鳞翅目害虫具有广谱杀虫活性,与 Cry1Ac 没有交叉抗性。在本研究中,我们测试了 Vip3AcAa 对斜纹夜蛾、甜菜夜蛾和粘虫的杀虫活性,这些害虫对 Cry1Ac 蛋白相对耐受。生物测定结果表明,Vip3AcAa 对这三种害虫的杀虫活性优于 Cry1Ac,并且经过激活预处理后,Vip3AcAa 对斜纹夜蛾、甜菜夜蛾和粘虫的杀虫活性与未处理的蛋白相似。还使用生物素化的 Vip3AcAa 毒素鉴定了该嵌合蛋白在三种害虫的刷状缘膜泡(BBMV)中的假定受体。为了拓宽 Bt 棉花对更广泛害虫的活性,我们将 vip3AcAa 和 cry1Ac 基因引入棉花。在实验室实验中,与食用非 Bt 棉花和 Bt-Cry1Ac 棉花的幼虫相比,食用这种新棉花的斜纹夜蛾、粘虫和甜菜夜蛾幼虫的死亡率显著增加。这些结果表明,Vip3AcAa 蛋白是中国综合害虫管理“金字塔”策略的一个极好选择。

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