紫贻贝EST-SNP的筛选及多态性检测

Development of single nucleotide polymorphism markers for blue mussel(Mytilus galloprovincialis)using expressed sequence tags

  • 摘要: 利用EST 数据库开发SNP是筛选SNP标记的重要途径。本研究利用EST数据库开发紫贻贝的SNP标记,利用QualitySNP软件对紫贻贝已有的19 709条EST序列中含有4条以上同源序列的重叠群进行分析,在含有4条以上同源序列的963个重叠群中,筛选得到候选SNP位点4 833个,SNP的平均频率为129.1 bp,其中C/T和 A/G突变较多,分别占总数的28.8%和27.4%。 根据候选SNP位点设计30组引物,通过等位基因特异性PCR结合溶解曲线分析,在30个野生个体中进行基因分型验证,6组引物(20%)没有扩增产物,10组引物(33%)没有多态性,〖JP2〗14组(47%)引物具有二等位基因多态性,稀有等位基因的频率为0.083~〖JP〗0.446,观测杂合度和期望杂合度的范围分别为0.166 7~0.615 4和0.155 4~0.503 2。序列比对结果显示,14组引物中的12个SNP位点位于基因编码区,并且全部为同义突变。研究结果表明,EST数据库中存在大量的SNP位点,差异熔解曲线法是一种高效便捷的SNP分型方法,所筛选的SNP标记可用于紫贻贝遗传学分析。

     

    Abstract: Single nucleotide polymorphism(SNP)has very broad prospects in the research fields of population genetics of aquacultural species,molecular marker-assisted breeding and biological evolution.The development of SNP markers is normally obtained through genome sequencing,by sequence comparison.However,for the species for which no large-scale genome sequencing has been carried out,using EST database is often an important way for the development of SNP markers.In this study,the SNP genotyping assays and development of SNP markers for blue mussel(Mytilus galloprovincialis)were conducted through expressed sequence tags(ESTs)database mining.Some 19 709 EST sequences of blue mussel from the GenBank were clustered into 2 486 contigs,of which 963 contained four or more ESTs.After manual quality filtering,4 833 putative SNPs were identified from these SNP-containing contigs.The average putative SNP frequency was one per 129.2 bp of contig sequences.C/T and A/G with high frequency account for 28.8% and 27.4%,respectively.31 of the putative SNPs were chosen for validation by allele specific PCR with melting temperature(Tm)-shift analysis,and 14(47%)of them were polymorphic with the minor allele frequency ranging from 0.083 to 0.446.The observed heterozygosity and expected heterozygosity were distributed from 0.166 7 to 0.615 4 and 0.155 4 to 0.503 2,respectively.Six primers(20%)amplified no any product and 10(33%)were monomorphic.BLASTX showed that significant hits for all 14 genotyped SNP-containing contigs,12 of which were located in coding regions and all resulted in a synonymous substitution.The result of present study shows that ESTs could provide effective means for SNP identification in species with limited genome sequence resources,and Tm--shift analysis is a simple,efficient and reliable SNP genotyping method for non-model organisms.

     

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