期刊文献+

亲本数目对鲍养殖群体AFLP标记位点及其遗传结构的影响 被引量:21

The influence of parental stock size on the genetic structure of Haliotis discus
下载PDF
导出
摘要 为了探讨不同的交配亲本数对鲍养殖群体遗传结构的影响,实验中对两个皱纹盘鲍自交群体SS(亲本数少)和LS(亲本数多)及两个皱纹盘鲍(♀)×日本盘鲍(♂)的杂交群体SH(亲本数少)和LH(亲本数多)进行了位点频率和遗传结构的AFLP标记分析。研究表明,自交组中亲本数少的SS群体的总位点数少于LS群体,后者的一些低频位点在前者中丢失,同时群体的位点频率发生漂移,SS的低频位点数目减少而高频位点略有增加。另外统计了各群体的相似指数和杂合度,发现SS群体的相似指数低于LS,而杂合度高于LS群体。在杂交组两群体(SH,LH)中位点数目频率、相似指数和杂合度变化趋势与两自交群体相似。两组结果均表明群体的亲本数减少会引起一些低频位点丢失及位点频率发生漂移,同时亲本数过少会导致群体的杂合度暂时升高。 In order to reveal the influence of stock size on the genetic structure of filial populations, two groups of Haliotis discus hannai(SS with small number of parents, LS with large number of parents) were analyzed using AFLP(amplified fragment length polymorphism) markers. It was found the total number of loci in SS was less than that in LS and some rare loci of LS were lost in SS, Furthermore, the number of low-frequency loci increased, and high-frequency loci slightly decreased in SS compared with LS. The similarity was lower and heterozygosity was higher in SS than in LS. In order to prove above results,another two groups (SH,LH) were also analyzed, which were hybrids of H.discus hannai×H.discus discus.The trends of loci number,loci frequency, similarity and heterozygote in SH and LH were similar to SS and LS.Both results revealed small parental stock size could result in the loss of low-frequency loci and cause low-frequency loci to drift to high-frequency loci, and extremely small stock size could result in temporal increase of heterozygosity.
出处 《水产学报》 CAS CSCD 北大核心 2004年第2期127-132,共6页 Journal of Fisheries of China
基金 国家973项目(G1999012009) 863项目资助(2001AA628050)
关键词 亲本数目 养殖群体 AFLP标记 遗传结构 位点频率 杂合度 皱纹盘鲍 abalone AFLP parent number loci frequency heterozygosity
  • 相关文献

参考文献17

  • 1Patrick M, Rubin V P, Hedgecock D, et al. Genetic effects of artificial propagation: signal from wild and hatchery populations of red abalone in California[J].Aquac,1996,143: 257-266. 被引量:1
  • 2Hedgecock D,Sly F.Genetic drift and effective population sizes of hatchery-propagated stocks of the Pacific oyster,Crassostrea gigas[J].Aquac,1990,88:21-38. 被引量:1
  • 3Smith P J,Conroy A M.Loss of genetic variation in hatchery-produced abalone,Haliotis iris,New Zealand[J].J Mar Freshwater Res,1992,26:81-85. 被引量:1
  • 4Selvamani M J P,Degnan S M,Degnan B M.Microsatellite genotyping of individual abalone larvae: parentage assignment in aquaculture[J].Mar Biotec,2001,3:478-485. 被引量:1
  • 5Ulrich G M,Lareesa L V.AFLP genotyping and fingerprinting[J].Tree,1999,14(10):389-394. 被引量:1
  • 6Pieter V,Rene H,Marjo B,et al.AFLP:a new technique for DNA fingerprinting[J].Nucleic Acids Research,1995,23:4407-4414. 被引量:1
  • 7Buntjer B J.Software Crosscheck 2.8[Z].developed in Wageningen University and Research Center,1999. 被引量:1
  • 8Lynch M.The similarity index and DNA fingerprinting[J].Mol Biol Evol,1990,7:478-484. 被引量:1
  • 9Miller M P.Tools for population genetic analyses (TFPGA1.3):computer software distributed by author[Z].1997. 被引量:1
  • 10Robert T D,John J M.Hard clam,Mercenaria mercennria,broodstocks: genetic drift and loss of tare alleles without reduction in heterzygosity[J].Aquac,1987,60:99-105. 被引量:1

同被引文献390

引证文献21

二级引证文献267

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