期刊文献+

Cry毒素杀虫活性分子改造方法研究进展 被引量:1

Progress on Molecular Modification Methods of Insecticidal Activity of Cry Toxin
下载PDF
导出
摘要 苏云金芽胞杆菌(Bacillus thuringiensis,Bt)产生的Cry毒素为防治害虫提供了一种宝贵的资源。但昆虫中肠蛋白酶的活化作用在不同的昆虫中对Cry毒素的杀虫活性有限制性。分析了几种不同的策略来增加Cry毒素对靶标昆虫的毒性,包括结构域Ⅲ交换、结构域Ⅱ和结构域Ⅲ的突变以及其他突变。此外,还详细阐述了噬菌体展示技术进行毒素优化的方法,毒素优化能够增加Cry毒素对亲本Cry毒素敏感度较低的害虫的杀虫活性,以期为Cry毒素的分子改造和应用提供参考。 Cry toxins produced by Bacillus thuringiensis( Bt) could provide a valuable resource for efficient pest control. But insect midgut proteases could be a limiting step of Cry toxicity in different insect species. This article analyzed several different strategies of improving toxicity against a specific target,including domain Ⅲ swapping,domain Ⅱ and domain Ⅲ mutations and other mutations in Cry toxins. Furthermore,this article also expounded the phage display to optimize toxin,which improved the insecticidal toxicity against pests that show no susceptibility to the parental Cry toxins. The paper was expected to provide reference for molecular modification and application of Cry toxin.
出处 《生物技术进展》 2016年第1期19-24,共6页 Current Biotechnology
基金 国家大学生创新创业计划项目(201510389018) 福建农林大学重点项目建设专项(6112C035005)资助
关键词 苏云金芽胞杆菌 Cry毒素 进化 分子改造 Bacillus thuringiensis cry toxin evolution molecular modification
  • 相关文献

参考文献45

  • 1Bravo A, Likitvivatanavong S, Gill S S, et al.. Bacillus thuringiensis : A story of a successful bioinsecticide [ J 1. Insect Biochem. Mol. Biol., 2011, 41 (7) :423-431.
  • 2Sanahuja G, Banakar R, Twyman R M, et al.. Bacillus thuringiensis : a century of research, development and commercial applications [ J ]. Plant Biotechnol. J., 2011, 9(3):283-300.
  • 3关雄.苏云金芽孢杆菌研究回顾与展望[J].中国农业科技导报,2006,8(6):5-11. 被引量:45
  • 4Carrrol J, Convents D, Van Damme J, et al.. Intramolecular proteolytic cleavage of Bacillus thuringiensis Cry3A d-endotoxin may facilitate its coleopteran toxicity[ J]. J. Invertebr. Pathol., 1997,70: 41-49.
  • 5Waiters F S, Stacy C M, Lee M K, et al.. An engineered chymotrypsin/cathepsin G site in domain I renders Bacillus thuringiensis Cry3A active against western corn rootworm larvae [J]. Appl. Environ. Microbiol., 2008,74: 367-374.
  • 6Hibbard B E, Frank D L, Kurtz R, et al.. Mortality impact of Bt transgenic maize roots expressing eCry3.1Ab, mCry3A, and eCry3, lAb plus mCry3A on western corn rootworm larvae in the field[J]. J. Econ. Entomol., 2011,104: 1584-1591.
  • 7Tabashnik B E, Gassman A J, Crowdwer D W, et al.. Insect resistance to Bt crops: evidence versus theory [ J ]. Nat. Biotechnol., 2008,26: 199-202.
  • 8Bravo A, Soberon M. How to cope with resistance to Bt toxins? [J]. Trends Biotechnol., 2008, 26: 573-579.
  • 9Soberon M, Pardo-Lopez L, Lopez I, et al.. Engineering modified Bt toxins to counter insect resistance [ J ]. Science, 2007,318: 1640-1642.
  • 10Gahan L J, Pauchet Y, Vogel H, et al.. An ABC transporter mutation is correlated with insect resistance to Bacillus thuringiensis CrylAc toxin [ J ]. PLoS Genet., 2010, 6: e1001248.

二级参考文献53

共引文献48

同被引文献31

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部