我国沿海三疣梭子蟹9个野生群体线粒体CR和COⅠ片段比较分析
作者:
基金项目:

上海市重点学科建设项目(Y1101);浙江象山县科技局项目(061301)


Compared Analysis on the Sequences of Mitochondrial CR Gene and COⅠ Gene Fragments of Nine Wild Stocks of Portunus trituberculatus from the Marginal Seas of China
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [38]
  • |
  • 相似文献 [20]
  • |
  • 引证文献
  • | |
  • 文章评论
    摘要:

    通过对我国沿海三疣梭子蟹(Portunus trituberculatus)9个野生群体线粒体DNA控制区(putative control region,CR)基因片段和细胞色素氧化酶亚基Ⅰ(COⅠ)基因片段进行扩增和测序,分别得到长度为530bp和584bp的片段。分析结果表明:CR83条序列A+T平均含量为73.2%,共检测到91个变异位点,83个个体具有66种单倍型(haplotype);COⅠ94条序列A+T平均含量为62.2%,共检测到34个变异位点,94个个体具有34种单倍型(haplotype)。用MEGA3.1软件构建9个群体NJ分子树,聚类结果显示,黄海、东海、渤海6个群体之间的相对遗传距离比较近,聚为一大支,南海3个群体相对遗传距离比较近,聚为一大支。AMOVA分析表明,群体间的遗传分化指数(Fst)为-0.07454~0.27087,其中部分群体间达到显著差异(P<0.05)与极显著差异(P<0.01),说明我国三疣梭子蟹不同野生群体间存在一定遗传分化。

    Abstract:

    Mitochondrial CR gene and COⅠ gene fragments were amplified and sequenced from 9 wild stocks of Portunus trituberculatus in China.Respectively,530 bp and 584 bp long partial gene fragments of the CR gene and the COⅠ gene were obtained.A+T mean contents of the CR sequences and the COⅠ sequences were respectively 73.2% and 62.2%.Moreover,66 haplotypes were identified from 83 samples with 91 variation sites of CR gene and 33 haplotypes were identified from 96 samples with 42 variation sites of COⅠ gene.The genetic distance and cluster analysis showed that genetic distances were nearest among six stocks of Yellow Sea,East China Sea,Bohai Sea,while the genetic distances were nearest among three stocks of South China Sea.The fixation indices (F st) were from -0.074 54 to 0.270 87 between any two stocks and some of them got to significant and great significant level.So these indicated that there were some genetic differentiations in different wild stocks of P.trituberculatus in China.

    参考文献
    [1] 戴爱云,杨思谅,宋玉枝等.中国海洋蟹类.北京:海洋出版社,1986,194~196.
    [2] 孙颖民,宋志乐,严瑞深等.三疣梭子蟹生长的初步研究.生态学报,1984,4(1):57~64.
    [3] 薛俊增,堵南山,赖伟.中国三疣梭子蟹Portunustri tuberculatus M iers的研究.东海海洋,1997,15(4):60~65.
    [4] 薛俊增,堵南山,赖伟.三疣梭子蟹活体胚胎发育的观察.动物学杂志,1998,33(6):45~49.
    [5] 宋海棠,丁跃平,许源剑.浙江北部近海三疣梭子蟹生殖习性研究.浙江水产学院学报,1988,7(1):39~46.
    [6] 李太武,苏秀榕.三疣梭子蟹消化系统的组织学研究.辽宁师范大学学报(自然科学版),1994,17(1):22~28.
    [7] 余红卫,朱冬发,韩宝芹.三疣梭子蟹不同组织同工酶的分析.动物学杂志,2005,40(1):84~87.
    [8] 朱冬发,余红卫,王春琳.三疣梭子蟹个体发育早期的同工酶谱变化.水产学报,2005,29(6):751~756.
    [9] 王国良,金珊,李政等.三疣梭子蟹养殖群体同工酶的组织特异性及生化遗传分析.台湾海峡,2005,24(4):474~480.
    [10] 高保全,刘萍,李健等.三疣梭子蟹野生群体同工酶的遗传多态性分析.水产学报,2007,31(1):1~6.
    [11] 郭天慧,孔晓瑜,陈四清等.三疣梭子蟹线粒体DNA 16SrRNA和CO基因片段序列的比较研究.中国海洋大学学报,2004,34(1):230~236.
    [12] Warrior R,Gall J.The mit ochondrial DNA of H ydra at tenuataand Hydra littoralis consists of two linear mol ecules.Arch Sci,1985,38:439~445.
    [13] Raimond R,Marcade I,Bouchon D,et al.Organization of thelarge mitochondrial genome in the isopod Armadillidiumvulgare.Genetics,1999,151:203~210.
    [14] Wolst enholme D R.Animal mitochondrial DNA:structure andevolution.International Review of Cytology,1992,141:173~216.
    [15] Hal lerman E M.Populat ion Genetics:Principle andA pplications for Fisheries Scientist.Bethesda,MD:AmericanFisheries Societ y,2003,59~100.
    [16] Yamauechi M M,Miya M U,Nishida M.Completemitochondrial DNA sequence of t he swimming crab,Portunustri tuberculatus(Crustacea:Decapoda:Brachyura).Gene,2003,311:129~135.
    [17] Folmer O,Black M,Hoeh W,et al.DNA primers foramplificat ion of mitochondrial cytochrome c oxidase subunit Ifrom diverse metazoan invert ebrates.Mol M ari ne BiolBiotechnol,1994,3:294~299.
    [18] Hall T A.BioEdit:a user friendly biological sequenceal ignment editor and analysis program forw indows 95 98 NT.N ucl Acid Symp Ser,1998,41:95~98.
    [19] Thompson J D,G ibson T J,Plewniak F,et al.The Clustal Xwindows interface:flexible strat egies for mult iple sequenceal ignment aided by quality analysis t ools.N ucleic AcidsResearch,1997,25:4 876~4 882.
    [20] Rozas J,Sanche delBarrio J C,Messenguer X,et al.DnaSp,DNA polymorphism analyses by the coalescent and othermethods.Bioinf ormatics,2003,19:2 496~2 497.
    [21] Kumar S,Tamura K,Nei M.MEGA 3:Int egrat ed software formolecular evolutionary genetics analysis and sequenceal ignment.Brief ings in Bioinf ormatics,2004,5(2):150~163
    [22] Excof fier L,Laval G,Schneider S.Arlequin ver.3 01:Anintegrated software package for population genet ics dat aanalysis.Evolutionary Bioinf ormatics Online,2005,1:47~50.
    [23] Place A R,Feng X J,Steven C R,et al.Genetic markers inblue crabs(Calli nectes sapidus)):Complet e mit ochondrialgenome sequence and charact erization of genetic variation.Journal of Experimental M arine Biology and Ecology,2005,319:15~27.
    [24] Miller A D,Murphy N P,Burridge C P,et al.Complet emitochondrial DNA sequences of t he D ecapod Crust aceansPseudocarcinus gigas(Menippidae)and Macrobrachiumrosenbergii(Palaemonidae).Marine Biotechnology,2005,7(4):339~349.
    [25] Sun H Y,Zhou K Y,Song D X.Mitochondrial genome of theChinese mitten crab Eri ocheir japonica sinenesis(brachyuran:Thoraacotremata:Grapsoidea)reveals a novel gene order andtwo target regions of gene rearrangements.Gene,2005,349:207~217.
    [26] 张秀梅,高天翔,王溪宏.冲绳日本绒螯蟹线粒体DNA12S rRNA序列的研究.湛江海洋大学学报,2000,20(2):11~15.
    [27] Kocher T D,Thomas W K,Meyer A,et al.Dynamics ofmitochondrial DNA evolution in animals:Amplificat ion andsequencing w ith conserved primers.PNAS,1989,86:619~620
    [28] St ephen A K,Dawn S W.Phylogeography and systemat ics ofthe mud turt le,Kinosternon baurii.The Revolution in Biology,2001,3:797~801.
    [29] 姜永杰,周发林,黄建华等.深圳海域斑节对虾野生种群线粒体控制区序列的多态性分析.南方水产,2006,2(1):54~57.
    [30] Tzeng T D,Yeh S Y,Hui C F.Population genet ic structure ofthe kuruma prawn(Penaeus japoni cus)in East Asia inf erredfrom mitochondrial DNA sequences.Marine Science,2004,61:913~920.
    [31] Quan J X,Zhuang Z M,Deng J Y,et al.Low genet ic variat ionof Penaeus chinensis as reveal ed by mit ochondrial DNA COIand 16S RNA gene sequences.Bi ochemical Genetics,2001,39:279~284.
    [32] Gusm o J,Lazoski C,Sol Cava A M.A new species ofPenaeus(Crustacea:Penaeidae)revealed by allozyme andcytochrome oxidase I analyses.Marine Bi ology,2000,137:435~446.
    [33] Lambeck K,Esat T M,Potter E K.Links between climat e andsea levels for the past three million years.N ature,2002,419:199~206.
    [34] Wang P X.Response of Western Pacific marginal seas toglacial cycles:paleoceanographic and sedimentologicalfeatures.Marine Geology,1999,156:5~39
    [35] Voris H K.Maps of Pleistocene sea levels in Southeast Asia:shorelines,river syst ems and t ime duration.J Biogeogr,2000,27:1 153~1 167.
    [36] 李成华,李太武,宋林生等.福建南北泥蚶种内分化的RAPD分析.动物学研究,2003,25(5):362~366
    [37] 潘宝平,宋林生,卜文俊等.青蛤两个易于群体的遗传多样性与分化研究.水生生物学报,2005,29(4):372~378.
    [38] Slatkin M.Gene flow and the geographic structure of naturalpopulation.Science,1987,236:787~792.
    引证文献
    引证文献 [4]
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

冯冰冰,李家乐,牛东红,陈琳,郑岳夫,郑凯宏.2008.我国沿海三疣梭子蟹9个野生群体线粒体CR和COⅠ片段比较分析.动物学杂志,43(2):28-36.

复制
文章指标
  • 点击次数:2474
  • 下载次数: 2609
  • HTML阅读次数: 0
  • 引用次数: 0
历史
  • 收稿日期:2007-09-26
  • 最后修改日期:2008-01-05