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中华蜜蜂气味受体基因AcOr170的克隆与序列分析 被引量:4

Cloning and sequencing analysis of Odour receptor 170 in honeybees,Apis cerana cerana
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摘要 本研究采用自行设计的引物对中华蜜蜂Apis cerana cerana雄蜂触角中气味受体基因(Odorant receptors 170)Ac Or170的c DNA序列进行了克隆和序列分析,以探寻中华蜜蜂雄蜂气味受体Ac Or170基因在近缘种昆虫间的进化差异。结果表明:中华蜜蜂雄蜂气味受体基因Ac Or170的c DNA序列总长度为1356 bp,编码区序列长度为1188 bp,共编码396个氨基酸,其分子量为46.272 k Da,等电点8.96,Genbank登录号:KX264359。结构域的分析结果显示,该蛋白具有7tm-6一个保守结构域。经序列比对后发现,Or170的序列在中华蜜蜂、西方蜜蜂和大蜜蜂间的亲缘性很近。 Aprimer for the gene Odour receptor 170 of Apis cerana cerana (AcOrllO) was designed to clone its cDNA sequence in drones. The aim was to compare evolutionary differences between the Apis cerana cerana and other honeybee species. The experimental results showed that the overall sequence of AcOrllO was 1356 bp in length. The coding region length was 1188 bp, encoding 396 amino acids. Its molecular weight was 46.272 kDa, isoelectric point was 8. 96, and the accession ID of Genbank was KX264359. Structural domain analysis indicated that the encoded protein contained a highly conserved structure of 7 tm-6. Sequence alignment showed that genome sequences were highly similar among A. cerana cerana y A. mellifera linnaeus and A. dorsata.
出处 《环境昆虫学报》 CSCD 北大核心 2017年第1期48-54,共7页 Journal of Environmental Entomology
基金 国家自然科学基金(31572469 31602015) 国家蜂产业技术体系资助项目(No.CARS-45-kxj12)
关键词 中华蜜蜂 气味受体 Or170 基因比对 序列分析 Apis cerana cerana odorant receptors Orl70 sequence alignment evolution analysis
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  • 1王桂荣,吴孔明,苏宏华,郭予元.棉铃虫嗅觉受体基因的克隆及组织特异性表达[J].昆虫学报,2005,48(6):823-828. 被引量:16
  • 2李位三,吴树生.蜜蜂种间交尾的干扰是蜂种生存竞争的一种特殊形式[J].养蜂科技,1996(1):4-5. 被引量:4
  • 3Lesniak A, Walczak M, Jezierski T, Sacharczuk M, Gawkowski M, Jaszczak K. Canine olfactory receptor gene polymorphism and its relation to odor detection performance by sniffer dogs. J Hered,2008, 99(5): 518-527.
  • 4Robin S, Tacher S, Rimbault M, Vaysse A, Dreano S, Andre C, Hitte C, Galibert F.Genetic diversity of canine olfactory receptors. BMC Genomics, 2009, 10: 21, 1471-2164.
  • 5Menashe I, Feldmesser E, Lancet D. Genetic Basis of Olfactory Deficits. Genomic Disorders. Humana Press, 2006, 101-113.
  • 6Olender T, Feldmesser E, Atarot T, Eisenstein M, Lancet D. The olfactory receptor universe from whole genome analysis to structure and evolution. Genet Mol Res, 2004, 3(4): 545-553.
  • 7Pilpel Y, Lancet D. The variable and conserved interfaces of modeled olfactory receptor proteins. Protein Science, 1999, 8(5): 969-977.
  • 8Man O, Gilad Y, Lancet D. Prediction of the odorant binding site of olfactory receptor proteins by humanmouse comparisons. Protein Sci, 2004, 13(1): 240-254.
  • 9Serizawa S, Miyamichi K, Sakano H. One neuron-one receptor rule in the mouse olfactory system. Trends Genet, 2004, 20(12): 648-653.
  • 10Gaillard I, Rouquier S, Chavanieu A, Mollard P, Giorgi D. Amino-acid changes acquired during evolution by olfactory receptor 912-93 modify the specificity of odorant recognition. Hum Mol Genet, 2004, 13(7): 771-780.

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