全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

亚洲玉米螟6-磷酸葡萄糖异构酶基因(Pgi)全序测定及分析

, PP. 201-209

Keywords: 亚洲玉米螟,Pgi基因,序列分析

Full-Text   Cite this paper   Add to My Lib

Abstract:

为进一步从核酸水平上研究亚洲玉米螟Pgi基因相关特性,采用反转录PCR及RACE等技术对该基因编码序列及DNA全序列进行了测定,与GenBank中其它昆虫Pgi基因相关信息进行比较分析,并构建了系统发育树。结果表明:亚洲玉米螟Pgi基因编码区序列长为1671bp,共编码556个氨基酸;其DNA序列全长为10078bp(短序列为9311bp),由12个外显子与11个内含子镶嵌而成;各外显子长度与鳞翅目大部分昆虫相同,介于95~188bp之间,内含子序列总长度为8407bp(短序列为7640bp),各内含子长度介于418~1547bp之间,且在内含子3、4、5、11上均发现杂合现象。系统发育结果显示,大部分昆虫Pgi基因cDNA严格按物种聚类,除了双翅目的家蝇Muscadomestica与黑森瘿蚊Mayetioladestructor出现一定的交叉现象外,其余没有出现交叉现象。

References

[1]  Belshaw R, Bensasson D. 2006. The rise and falls of introns. Heredity, 96(3): 208-213
[2]  Bradman KR, Korf L. 2008. Longer first introns are a general property of eukaryotic gene structure. PLoS ONE, 3(8): e3093
[3]  Carvalho AB, Clark AG. 1999. Intron size and natural selection. Nature, 401(6751): 344
[4]  Gillespie JH. 1991. The causes of molecular evolution. New York: Oxford University Press
[5]  Haag CR, Saastamoinen M, Marden JH, Hanski I. 2005. A candidate locus for variation in dispersal rate in a butterfly metapopulation. Proceedings of the Royal Society Biological Sciences of the United States of America, 272(1580): 2449-2456
[6]  Haddrill PR, Bachtrog D, Andolfatto P. 2008. Positive and negative selection on noncoding DNA in Drosophila simulans. Molecular Biology and Evolution, 25(9): 1825-1834
[7]  Hanski I, Saccheri I. 2006. Molecular-level variation affects population growth in a butterfly metapopulation. PLoS Biology, 4(5): 719-726
[8]  He M, Haymer DS. 1997. Polymorphic intron sequences detected within and between populations of the oriental fruit fly (Diptera: Tephritidae). Annals of the Entomological Society of America, 90(6): 825-831
[9]  Karl I, Hoffmann KH, Fischer K. 2010. Food stress sensitivity and flight performance across phosphoglucose isomerase enzyme genotypes in the sooty copper butterfly. Population Ecology, 52(2): 307-315
[10]  Karl I, Schmitt T, Fischer K. 2008. Phosphoglucose isomerase genotype affects life-history traits and cold stress resistance in a copper butterfly. Functional Ecology, 22(5): 887-894
[11]  Karl I, Schmitt T, Fischer K. 2009. Genetic differentiation between alpine and lowland populations of a butterfly is related to Pgi enzyme genotype. Ecography, 32(3): 488-496
[12]  Katz LA, Harrison RG. 1997. Balancing selection on electrophoretic variation of phosphoglucose isomerase in two species of field cricket: Gryllus veletis and G. pennsylvanicus. Genetics, 147(2): 609-621
[13]  Li T, Lian ML, Chang LW, Yang JD, Zhang XX, Zhou YN. 2010. Study on occurrence and damage characteristics of Asian corn borer, Ostrinia furnacalis in the field of waxy corn. Chinese Agricultural Science Bulletin, 26(21): 235-242 (in Chinese) [李唐, 连梅力, 常六旺, 杨俊德, 张筱秀, 周运宁. 2010. 糯玉米田亚洲玉米螟发生危害特点调查研究. 中国农学通报, 26(21): 235-
[14]  Li WD, Chen SX, Qin JG. 2002. The distribution of wormhole on the spring corn by Asian corn borer, Ostrinia furnacalis and its relationship with yield loss. Plant Protection, 28(6): 25-28 (in Chinese)[李文德, 陈素馨, 秦建国. 2002. 亚洲玉米螟危害蛀孔在春玉米上的分布及其与产量损失的关系. 植物保护, 28(6): 25-
[15]  Liu N, Wen LP, He KL, Wang ZY, Zhao TC. 2005. The cold hardiness in the different geographic populations of Asian corn borer,Ostrinia furnacalis (Guenée). Journal of Plant Protection, 32(2): 163-168 (in Chinese) [刘宁, 文丽萍, 何康来, 王振营, 赵廷昌. 2005. 不同地理种群亚洲玉米螟抗寒力研究. 植物保护学报, 32(2): 163-
[16]  Luo J, Cheng XY, Yan X, Tao WQ, Holland JD, Xu RM. 2012. Characterizaiton and polymorphism analysis of phosphoglucose isomerase gene in the fall webworm (Hyphantria cunea). Bulletin of Entomological Research, 102(4): 477-488
[17]  Qiao L, Zheng JW, Cheng WN, Li YP. 2008. Impact of 4 different artificial fodders on life span of Asian corn borer, Ostrinia furnacalis (Guenée). Journal of Northwest A & F University (Natural Science Edition), 36(5): 109-112 (in Chinese) [乔利, 郑坚武, 成卫宁, 李怡萍. 2008. 不同饲料配方对亚洲玉米螟生长发育和繁殖的影响. 西北农林科技大学学报(自然科学版), 36(5): 109-
[18]  Rank N, Dahlhoff E. 2002. Allele frequency shifts in response to climate change and physiological consequences of allozyme variation in a montane insect. Evolution, 56(11): 2278-2289
[19]  Saastamoinen M, Ikonen S, Hanski I. 2009. Significant effects of Pgi genotype and body reserves on lifespan in the Glanville fritillary butterfly. Proceedings of the Royal Society Biological Sciences, Series B: Biological Science, 276(1660): 1313-1322
[20]  Shabalina SA, Spiridonov NA. 2004. The mammalian transcriptome and the function of non-coding DNA sequences. Genome Biology, 5(4): 105
[21]  更多...
[22]  Song LQ, Shi J, Wang ZY, He KL, Cong B. 2012. Effects of the Asian corn borer injury on the incidence of Fusarium ear rot caused by Fusarium verticillioides at different developmental stages of corn ear. Plant Protection, 38(6): 50-53 (in Chinese) [宋立秋, 石洁, 王振营, 何康来, 丛斌. 2012. 亚洲玉米螟为害对玉米镰孢穗腐病发生程度的影响. 植物保护, 38(6): 50-
[23]  Song YY, Zhou DR, He KL. 1999. Studies on mass rearing of Asian corn borer: development of a satisfactory non-agar semi-artificial diet and its use. Journal of Plant Protection, 26(4): 324-328 (in Chinese) [宋彦英, 周大荣, 何康来. 1999. 亚洲玉米螟无琼脂半人工饲料的研究与应用. 植物保护学报, 26(4): 324-
[24]  Tu XY, Xia QW, Chen C, Chen YS, Kuang XJ, Xue FS. 2011. Geographic variation in body weight and size of the Asian corn borer, Ostrinia furnacalis Guenée (Lepidoptera: Pyralidae). Acta Entomologica Sinica, 54(2): 143-148 (in Chinese) [涂小云, 夏勤雯, 陈超, 陈元生, 匡先钜, 薛芳森. 2011. 亚洲玉米螟体重和体型的地理变异. 昆虫学报, 54(2): 143-
[25]  Wang BQ, DePasse JM, Watt WB. 2012. Evolutionary genomics of Colias phosphoglucose isomerase (PGI) introns. Journal of Molecular Evolution, 74(1/2): 96-111
[26]  Wang ZY, Lu X, He KL, Zhou DR. 2000. Review of history, present situation and prospect of the Asian maize borer research in China. Journal of Shenyang Agricultural University, 31(5): 402-412 (in Chinese) [王振营, 鲁新, 何康来, 周大荣. 2000. 我国研究亚洲玉米螟历史、现状与展望. 沈阳农业大学学报, 31(5): 402-
[27]  Watt WB. 1977. Adaptation at species loci. I. Natural selection on [LL] phosphoglucose isomerase of Colias butterflies: biochemical and population aspects. Genetics, 87(1): 177-194
[28]  Watt WB. 1992. Eggs, enzymes, and evolution: natural genetic variants change insect fecundity. Proceedings of the National Academy of Sciences of the United States of America, 89(22): 10608-10612
[29]  Watt WB. 2003. Mechanistic studies of butterfly adaptations.//Boggs CL, Watt WB, Ehrlich PR. Ecology and evolution taking flight: butterflies as model systems. Chicago (IL): University of Chicago Press, pp. 319-352
[30]  Watt WB, Carter PA, Donohue K. 1986. Females’ choice of “good genotypes” as mates is promoted by an insect mating system. Science, 233(4769): 1187-1190
[31]  Watt WB, Dean AM. 2000. Molecular-functional studies of adaptive genetic variation in prokaryotes and eukaryotes. Annual Review of Genetics, 34: 593-622
[32]  Wheat CW. 2010. Phosphoglucose isomerase (Pgi) performance and fitness effects among arthropods and its potential role as an adaptive marker in conservation genetics. Conservation Genetics, 11(2): 387-397
[33]  Wheat CW, Haag CR, Marden JH, Hanski I, Frilander MJ. 2010. Nucleotide polymorphism at a gene (Pgi) under balancing selection in a butterfly metapopulation. Molecular Biology and Evolution, 27(2): 267-281
[34]  Wright SI, Andolfatto P. 2008. The impact of natural selection on the genome: emerging patterns in Drosophila and Arabidopsis. Annual Review of Ecology, Evolution, and Systematics, 39: 193-213
[35]  Zheng C, Ovaskainen O, Hanski I. 2009. Modelling single nucleotide effects in phosphoglucose isomerase on dispersal in the Glanville fritillary butterfly: coupling of ecological and evolutionary dynamics. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences, 364(1523): 1519-1532
[36]  Zhu LC, Zhang Y, Zhang W, Yang SH, Chen JQ, Tian DC. 2009. Patterns of exon-intron architecture variation of genes in eukaryotic genomes. BMC Genomics, 10: 47#

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133