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通过扩增子测序和多聚核苷酸 SNP 基因分型在异源多倍体物种油菜中发现 SNP。

SNP discovery by amplicon sequencing and multiplex SNP genotyping in the allopolyploid species Brassica napus.

机构信息

TraitGenetics GmbH, Am Schwabeplan 1b, D-06466 Gatersleben, Germany.

出版信息

Genome. 2010 Nov;53(11):948-56. doi: 10.1139/G10-079.

Abstract

Oilseed rape (Brassica napus) is an allotetraploid species consisting of two genomes, derived from B. rapa (A genome) and B. oleracea (C genome). The presence of these two genomes makes single nucleotide polymorphism (SNP) marker identification and SNP analysis more challenging than in diploid species, as for a given locus usually two versions of a DNA sequence (based on the two ancestral genomes) have to be analyzed simultaneously during SNP identification and analysis. One hundred amplicons derived from expressed sequence tag (ESTs) were analyzed to identify SNPs in a panel of oilseed rape varieties and within two sister species representing the ancestral genomes. A total of 604 SNPs were identified, averaging one SNP in every 42 bp. It was possible to clearly discriminate SNPs that are polymorphic between different plant varieties from SNPs differentiating the two ancestral genomes. To validate the identified SNPs for their use in genetic analysis, we have developed Illumina GoldenGate assays for some of the identified SNPs. Through the analysis of a number of oilseed rape varieties and mapping populations with GoldenGate assays, we were able to identify a number of different segregation patterns in allotetraploid oilseed rape. The majority of the identified SNP markers can be readily used for genetic mapping, showing that amplicon sequencing and Illumina GoldenGate assays can be used to reliably identify SNP markers in tetraploid oilseed rape and to convert them into successful SNP assays that can be used for genetic analysis.

摘要

油菜(Brassica napus)是一个异源四倍体物种,由两个基因组组成,分别来自甘蓝型油菜(A 基因组)和白菜型油菜(C 基因组)。这两个基因组的存在使得单核苷酸多态性(SNP)标记的鉴定和 SNP 分析比在二倍体物种中更加具有挑战性,因为在给定的基因座上,通常需要同时分析两个 DNA 序列(基于两个祖先基因组)的两个版本,以进行 SNP 的鉴定和分析。从表达序列标签(EST)中分析了 100 个扩增子,以鉴定油菜品种和代表祖先基因组的两个姐妹种中的 SNP。共鉴定出 604 个 SNP,平均每 42bp 就有一个 SNP。可以清楚地区分不同植物品种之间多态性的 SNP 与区分两个祖先基因组的 SNP。为了验证所鉴定 SNP 用于遗传分析的有效性,我们针对其中一些 SNP 开发了 Illumina GoldenGate 检测方法。通过对多个油菜品种和 GoldenGate 检测的作图群体进行分析,我们能够在异源四倍体油菜中识别出多种不同的分离模式。所鉴定的 SNP 标记中的大多数可直接用于遗传作图,表明扩增子测序和 Illumina GoldenGate 检测可用于可靠地鉴定四倍体油菜中的 SNP 标记,并将其转化为成功的 SNP 检测,可用于遗传分析。

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