利用命名标准DNA样本对现代俄罗斯马铃薯品种进行SSR分析

Q3 Agricultural and Biological Sciences
O. Antonova, N. Klimenko, D. A. Rybakov, N. A. Fomina, V. V. Zheltova, L. Novikova, T. Gavrilenko
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引用次数: 8

摘要

瓦维洛夫全俄植物遗传资源研究所(VIR)考虑到《国际栽培植物命名法》的建议和遗传认证方法,正在开发记录国家品种的新方法。植物标本馆标本所代表的特定品种的命名标准,可作为检验从不同来源获得的品种标本的真实性和一致性的参考。验证需要快速可靠的品种基因分型方法。本文介绍了改进的DNA提取、pcr分析和ssr基因分型方法,使马铃薯品种鉴定无需使用昂贵的试剂盒。利用10个染色体特异性微卫星标记,对66个现代俄罗斯马铃薯品种、11个预栽培品种和育种无性系(分别以命名标准和代用样品为代表)的多态性进行了研究。这77个样本的子集在10个研究的微卫星位点中显示出高水平的多态性。SSR分析共鉴定出73个等位基因;平均每个位点检测到7.3个等位基因,等位基因数从3个(STG0025)到11个(StI046)不等。PIC值为0.544 (STG0025位点)~ 0.836 (StI046位点)。在6个研究位点上发现了该亚群特有的等位基因。SSR位点的高水平多态性使得几乎所有品种都可以明确地识别,除了两个品种的微卫星谱是体细胞无性系变异。利用优化后的8个微卫星标记,对俄罗斯现代马铃薯品种的亲缘关系进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SSR analysis of modern Russian potato varieties using DNA samples of nomenclatural standards
The N.I. Vavilov All-Russian Institute of Plant Genetic Resources (VIR) is developing new approaches to documentation of national cultivars, taking into account recommendations of the International Code of Nomenclature for Cultivated Plants in parallel with methods of genetic certification. The nomenclatural standard of a particular cultivar represented by a herbarium specimen can be used as a reference for verifying authenticity and uniformity of cultivar specimens obtained from various sources. The verification requires fast and reliable methods for cultivar genotyping. This paper presents protocols for modified methods of DNA extraction, PCR-analysis and SSR-genotyping, which allow potato cultivars identification without the use of expensive reagent kits. A set of ten chromosome-specific microsatellite markers was used to study polymorphisms in 66 modern Russian potato cultivars, as well as in 11 pre-cultivars and breeding clones, represented by nomenclatural standards and voucher specimens, respectively. This subset of 77 specimens has demonstrated a high level of polymorphism in ten studied microsatellite loci. The SSR analysis identified 73 alleles; 7.3 alleles per locus were observed on average, the number of which varied from 3 (STG0025 locus) to 11 (locus StI046). The PIC values varied from 0.544 (STG0025 locus) to 0.836 (StI046 locus). The alleles, unique for this subset, were found at six studied loci. The high level of polymorphism at the SSR loci made it possible to unambiguously identify almost every cultivar, with the exception of the expected coincidence of microsatellite profiles of two cultivars, which are somaclonal variants. Using an optimized set of eight microsatellite markers, the genetic relationships of modern Russian potato cultivars were studied.
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来源期刊
Plant breeding and biotechnology
Plant breeding and biotechnology Agricultural and Biological Sciences-Plant Science
CiteScore
2.30
自引率
0.00%
发文量
18
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