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2个新的鳞翅目OR83b类化感蛋白基因的克隆和序列分析 被引量:9

Molecular Cloning and Sequence Analysis of Two cDNA Genes of Two New Lepidoptera OR83b Orthologue Chemoreceptors
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摘要 【目的】分离和克隆昆虫触角中一类非常保守的嗅觉受体蛋白基因全序列。【方法】采用简并引物反转录多聚酶链式反应(RT-PCR)和cDNA末端快速扩增(RACE)技术克隆基因,用生物信息学方法对获得的cDNA全序列及推导的氨基酸序列进行分析。【结果】从甜菜夜蛾(Spodoptera exigua Hübner)和斜纹夜蛾[Spodoptera litura(Fabricius)]雄蛾触角中扩增得到2个分别为1906bp和2483bp的OR83类化感蛋白基因的cDNA,开放阅读框(ORF)编码473个氨基酸,命名为SexiOR2和SlitOR2。通过在GenBank中进行序列的同源性比较,发现这2个鳞翅目化感蛋白新序列与已知蛾类昆虫的OR83b类化感蛋白氨基酸序列具较高的同源性。【结论】明确了所获得的2个鳞翅目蛋白新序列属于OR83b类化感蛋白。 [Objective] The aim of this study was to isolate the cDNA full sequence of an unusually highly conserved olfactory receptor (orthologue to the Drosophila melanogaster DOR83b) gene from the antennae of insects. [Method] The olfactory receptor genes were cloned by reverse transcription-polymerase chain reaction (RT-PCR) and rapid amplification of cDNA ends (RACE) methods. Bioinformatics methods were used to further analyze cDNA sequence obtained and putative amino acid sequence. [Result] Two cDNA full sequences of olfactory receptor (OR) gene were amplified from the antennae of male Spodoptera exigua and S. litura, and they were named SexiOR2 and SlitOR2. SexiOR2 and SlitOR2 contained 1 906 bp and 2 483 bp, and with deduced amino acid sequences of 473 residues. The sequence analysis indicated that the deduced amino acid sequences of the cDNA sequences shared high identity with OR83b orthologue chemoreceptor sequences from other previously reported moths. [ Conclusion ] It is inferred that the sequences obtained are cDNA sequences of OR83b orthologue chemoreceptor gene.
出处 《中国农业科学》 CAS CSCD 北大核心 2010年第3期618-625,共8页 Scientia Agricultura Sinica
基金 国家自然科学基金(30800725,30571220) 中央级公益性科研院所基本科研业务费专项资金(农业部环境保护科研监测所)资助项目
关键词 甜菜夜蛾 斜纹夜蛾 嗅觉受体基因 序列分析 Spodoptera exigua Spodoptera litura olfactory receptor gene sequence analysis
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  • 1Malpel S, Merlin C, Francois M C, Jacquin-Joly E. Molecular identification and characterization of two new Lepidoptera chemoreceptors belonging to the Drosophila melanogaster OR83b family. Insect Molecular Biology, 2008, 17(5): 587-596.
  • 2Clyne P J, Warr G G, Freeman M R, Lessing D, Kim J, Carlson J R. A novel family of divergent seven transmembrane proteins: Candidate odorant receptors in Drosophila. Neuron, 1999, 22(2): 327-338.
  • 3Vosshall L B, Amrein H, Morozov P S, Rzhetsky A, Axel R. A spatial map of olfactory receptor expression in the Drosophila antenna. Cell, 1999, 96: 725-736.
  • 4Zwiebel L J, Takken W. Olfactory regulation of mosquito-host interactions. Insect Biochemistry and Molecular Biology, 2004, 34 (7): 645-652.
  • 5Krieger J, Klink O, Mohl C, Raming K, Breer H. A candidate olfactory receptor subtype highly conserved across different insect orders. Journal of Comparative Physiology A, 2003, 189(7): 519-526.
  • 6Hill C A, Fox A N, Pitts R J, Kent L B, Tan P L, Chrystal M A, Ravchik A, Collins F H, Robertson H M, Zwiebel L J. G protein-coupled receptors in Anopheles gambiae. Science, 2002, 298(5591): 176-178.
  • 7Pitts R J, Fox A N, Zwiebel L J. A highly conserved candidate chemoreceptor expressed in both olfactory and gustatory tissues in the malaria vector Anopheles gambiae. Proceedings of the National Academy of Sciences of the United States of America, 2004, 101(14): 5058-5063.
  • 8Mclo A C A, Rutzlcr M, Pitts R I, Zwicbcl L J. Identification of a chemoscnsory receptor from the ycllow fever mosquito, Aedes aegypti that is highly conserved and cxprcsscd in olfactory and gustatory organs. Chemical Senses, 2004, 29(5): 403-410.
  • 9Xia Y, Zwiebel L J. Identification and characterization of an odorant receptor from the West Nile Vires mosquito, Culex quinquefasciatus. Insect Biochemistry and Molecular Biology, 2006, 36 (3): 169-176,.
  • 10Jordan M D, Anderson A, Begum D, Carraher C, Authier A, MarshalllS D G, Kiely A, Gatehouse L N, Greenwood D R, Christie D L, Kralicek A V, Trowell S C, Newcomb R D. Odorant receptors from the light brown apple moth (Epiphyas postvittana) recognize important volatile compounds produced by plants. Chemical Senses,2009, 34(5): 383-394.

二级参考文献22

  • 1深见顺一 上杉康彦 等.农药实验方法--杀虫剂[M].北京:中国农业出版社,1989.9-11.
  • 2[1]Birks SM,Edwards SV,2002.A phylogeny of the megapodes (Aves:Megapodiidae) based on nuclear and mitochondrial DNA sequences.Molecular Phylogenetics and Evolution,23 (3):408-421.
  • 3[2]Chen J,Sun M,Hurst LD,Carmichael GG,Rowley JD,2005.Human antisense genes have unusually short introns:evidence for selection for rapid transcription.Trends in Genetics,21 (4):203-207.
  • 4[3]Clark AG,2001.The search for meaning in noncoding DNA.Genome Research,11:1 319-1 320.
  • 5[4]Comeron JM,2004.Selective and mutational patterns associated with gene expression in humans:Influences on synonymous composition and intron presence.Genetics,167 (3):1 293-1 304.
  • 6[5]Creer S,Pook CE,Malhotra A,Thorpe RS,2006.Optimal intron analyses in the Trimeresurus radiation of Asian pitvipers.Systematic Biology,55 (1):57-72.
  • 7[6]Friesen VL,Congdon BC,Walsh HE,Birt TP,1997.Intron variation in marbled murrelets detected using analyses of single-stranded conformational polymorphisms.Molecular Ecology,6 (11):1 047-1 058.
  • 8[7]Grison-Pige L,Bessiere J M,Turlings TCJ,Kjellberg F,Roy J,Hossaert-McKey MM,2001.Limited intersex mimicry of floral odour in Ficus carica.Functional Ecology,15 (4):551-558.
  • 9[8]Grison L,Edwards AA,Hossaert-McKey M,1999.Interspecies variation in floral fragrances emitted by tropical Ficus species.Phytochemistry,52 (7):1 293-1 299.
  • 10[9]Jiang ZF,Huang DW,Chen LL,Zhen WQ,Fu YG,Peng ZQ,2006.Rampant host switching and multiple female body colour transitions in Philotrypesis (Hymenoptera:Chalcidoidea:Agaonidae).Journal of Evolutionary Biology,19 (4):1 157-1 166.

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