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首页> 外文期刊>PLoS One >Bacillus thuringiensis chimeric proteins Cry1A.2 and Cry1B.2 to control soybean lepidopteran pests: New domain combinations enhance insecticidal spectrum of activity and novel receptor contributions
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Bacillus thuringiensis chimeric proteins Cry1A.2 and Cry1B.2 to control soybean lepidopteran pests: New domain combinations enhance insecticidal spectrum of activity and novel receptor contributions

机译:Bacillus thuringiensis嵌合蛋白Cry1a.2和Cry1b.2控制大豆鳞翅目害虫:新域组合增强活性和新型受体贡献的杀虫谱

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摘要

Two new chimeric Bacillus thuringiensis (Bt) proteins, Cry1A.2 and Cry1B.2, were constructed using specific domains, which provide insecticidal activity against key lepidopteran soybean pests while minimizing receptor overlaps between themselves, current, and soon to be commercialized plant incorporated protectants (PIP’s) in soybean. Results from insect diet bioassays demonstrate that the recombinant Cry1A.2 and Cry1B.2 are toxic to soybean looper (SBL) Chrysodeixis includens Walker, velvetbean caterpillar (VBC) Anticarsia gemmatalis Hubner, southern armyworm (SAW) Spodoptera eridania , and black armyworm (BLAW) Spodoptera cosmioides with LC 50 values 3,448 ng/cm 2 , while Cry1A.2 lacks toxicity against old-world bollworm (OWB) Helicoverpa armigera . Results from disabled insecticidal protein (DIP) bioassays suggest that receptor utilization of Cry1A.2 and Cry1B.2 proteins are distinct from each other and from current, and yet to be commercially available, Bt proteins in soy such as Cry1Ac, Cry1A.105, Cry1F.842, Cry2Ab2 and Vip3A. However, as Cry1A.2 contains a domain common to at least one commercial soybean Bt protein, resistance to this common domain in a current commercial soybean Bt protein could possibly confer at least partial cross resistance to Cry1A2. Therefore, Cry1A.2 and Cry1B.2 should provide two new tools for controlling many of the major soybean insect pests described above.
机译:使用特异性结构域构建两个新的嵌合杆菌菌,Cry1a.2和Cry1b.2,其为杀虫剂活性提供针对关键的鳞翅目豆毒虫的杀虫活性,同时最小化自己,电流和很快是商业化植物的保护剂的保护剂(pip's)在大豆。昆虫饮食生物测定的结果表明,重组Cry1a.2和Cry1b.2对大豆蛹(SBL)Chrysodexis有毒,包括Walker,Velvetbean Caterpillar(VBC)反舰Gemmatalis Hubner,Southern Accesworm(Saw)Spodoptera eridania和Black Chancyworm(Blaw )Spodoptera Cosmioides,LC 50值3,448 ng / cm 2,而Cry1a.2缺乏针对旧世界伯文(OWB)Helicoverpa Armigera的毒性。残疾杀虫蛋白(DIP)生物测定的结果表明Cry1a.2和Cry1b.2蛋白的受体利用彼此不同,并且从电流中不同,但是在大豆中的Bt蛋白如Cry1ac,Cry1a.105, cry1f.842,cry2ab2和vip3a。然而,由于Cry1a.2包含至少一种商业大豆BT蛋白共同的域,在当前商业大豆BT蛋白中对该常见结构域的抗性可能赋予Cry1a2的至少部分横向抗性。因此,Cry1A.2和Cry1B.2应提供两种用于控制上述许多主要大豆害虫的新工具。

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