期刊文献+

RNA干扰及其对昆虫抗药性相关基因的沉默研究 被引量:4

RNA Interference and Its Applications on Silencing of Insecticide-resistant Genes in Insects
在线阅读 下载PDF
导出
摘要 以不同农药为主的防治策略对棉铃虫和小菜蛾等农业害虫的控制卓有成效,但易产生害虫抗药性问题。害虫抗药性与细胞色素P450酶系、酯酶、钙粘蛋白等酶或受体的生化与分子机理相关。RNA干扰(RNA in-terference,简称RNAi)作为分子生物学领域中功能基因及基因组研究的一种强有力工具,已逐渐用于昆虫抗药性相关基因的敲除研究并鉴定其功能。本文围绕RNAi的作用机理及其对昆虫抗药性相关基因的沉默研究展开综述,旨在为农业害虫及其抗药性治理提供新思路与新途径。 There have been enormous economical losses in agriculture caused by devastating insect pests,such as cotton bollworm Helicoverpa armigera(Hübner) and diamondback moth Plutella xylostella(L.),etc.The pests could be effectively controlled by insecticides,however many kinds of the pests have showed serious resistance to different insecticides.Studies have proved that insect resistance related to the detoxification enzymes or receptors including cytochrome P450 enzymes,esterases and cadherin proteins,etc.Knockout of genes related with resistance in insect pests has been carried out by RNA interference (RNAi) recently,which is a powerful tool in molecular biology for researches on functional genes and genomes.This review focuses on the mechanisms of RNAi and its applications in silencing resistance-related genes in insects in vivo,aiming at providing novel ideas and approaches for insect controlling and resistant management in agricultural pests.
出处 《棉花学报》 CSCD 北大核心 2010年第6期617-624,共8页 Cotton Science
基金 国家自然科学基金(30971943)
关键词 RNA干扰 细胞色素P450酶 酯酶 钙粘蛋白 抗药性 RNA interference cytochrome P450s esterase cadherin protein insecticide resistance
  • 相关文献

参考文献67

  • 1SONODA S,Igaki C.Characterization of acephate resistance in the diamondback moth Plutella xylostella[J].Pestic Biochem Physiol,2010,98(1):121-127.
  • 2XIA Xiao-ming,Wang Kai-yun,Wang Hong-yan.Resistance of Helicoverpa assulta(Guenée)(Lepidoptera:Noctuidae)to fenvalerate,phoxim and methomyl in China[J].Crop Protection,2009,28(2):162-167.
  • 3HEAD G,Savinelli C.Adapting insect resistance management programs to local needs[M]//Onstad D W.Insect resistance management:biology,economic and predictions.New York:Academic Press,2008:89-106.
  • 4WU Koug-ming,Guo Yu-yuan.The evolution of cotton pest management practices in China[J].Annu Rev Entomol,2005,50:31-52.
  • 5SCOTT J G,Kasai S.Evolutionary plasticity of monooxygenase-mediated resistance[J].Pestic Biochem Physiol,2004,78(3):171-178.
  • 6MARTIN T,Chandre F,Ochou O G,et al.Pyrethroid resistance mechanisms in the cotton bollworm Helicoverpa armigera(Lepidoptera:Noctuidae)from West Africa[J].Pestic Biochem Physiol,2002,74(1):17-26.
  • 7SCOTT J G,Wen Zhi-mou.Cytochromes P450 of insects:the tip of the iceberg[J].Pest Management Science,2001,57(10):958-967.
  • 8ZHANG Lan,Shi Jing,Shi Xue-yan,et al.Quantitative and qualitative changes of the carboxylesterase associated with beta-cypermethrin resistance in the housefly,Musca domestica(Diptera:Mnscidae)[J].Comp Biochem Physiol B:Biochem Mol Biol,2010,156(1):6-11.
  • 9KONUS M,U(g)urlu S,(I)scan M.Investigation of the role of glutathione S-transferase isozymes in pyrethroid resistance of Helicoverpa armigera in Turkey[J].Toxicol Lett,2009,189(S1):217-218.
  • 10AHMAD M.Potentiation between pyrethroid and organophosphate insecticides in resistant field populations of cotton boll-worm Helicoverpa armigera(Lepidoptera:Noctuidae)in Pakistan[J].Pestic Biochem Physiol,2008,91(1):24-31.

二级参考文献27

  • 1Nagamatsu Y, Koike T, Miyoshi Y, Shigematsu S, Kogure M, 1998. Cloning, sequencing, and expression of the Bombyx mori receptor for Bacillus thuringiensis inseeieidal CrylA (a) toxin. Biosci. Biotechnol. Biochem., 62(4) : 727 -734.
  • 2Ober KA, Jockusch EL, 2006. The roles of wingless and deeapentaplegie in axis and appendage development in the red flour beetle, Tribolium castaneum. Dev. Biol., 294(2) : 391 -405.
  • 3Rajagopal R, Sivakumar S, Agrawal N, Malhotra P, Bhatnagar RK, 2002. Silencing of midgut aminopeptidase N of Spodoptera litura by double-stranded RNA establishes its role as Bacillus thuringiensis toxin receptor. J. Biol. Chem., 277(49) : 46 849 -46 851.
  • 4Sarfraz M, Keddie BA, 2005. Conserving the efficacy of insecicides against Plutella xylostella (Lepidoptera: Plutellidae). J. Appl. Entomol., 129(3): 149-157.
  • 5Sivakumar S, Rajagopal R, Venkatesh GR, Srivastava A, Bhatnagar RK, 2007. Knockdown of aminopeptidase-N from Helicoverpa armigera larvae and in transfected Sf21 ceils by RNA interference reveals its functional interaction with Bacillus thuringiensis insecticidal protein CrylAc. J. Biol. Chem., 282(10) : 7 312 - 7 319.
  • 6Soberon M, Lopez LP, Lopez I, Gomez I, Tabashnik BE, Bravo A, 2007. Engineering modified Bt toxins to counter inect resistance. Science, 318(5 856): 1 640-1 642.
  • 7Tabashnik BE, 1994. Evolution of resisance to Bacillus thuringiensis. Annu. Rev. Entomol., 39:47 -79.
  • 8Tabashnik BE, Gassmann AJ, Crowder DW, 2008. Insect resistance to Bt crops : Evidence versus theory. Nat. Biotechnol., 26 : 199 - 202.
  • 9Vadlamudi RK, Ji TH, Bulla LA Jr, 1993. A specific binding protein from Mandaca sexta for the ineeticidal toxin of Bacillus thuringiensis subsp, berliner. J. Biol. Chem., 268(17) : 12 334 - 12 340.
  • 10Vadlamudi RK, Weber E, Ji I, Ji TH, Bulla LA Jr, 1995. Cloning and expression of a receptor for an insecticidal toxin of Bacillus thuringiensis. J. Biol. Chem., 270(10) : 5 490 -5 494.

共引文献10

同被引文献87

引证文献4

二级引证文献20

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