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High throughput SNP discovery and genotyping in grapevine (Vitis vinifera L.) by combining a re-sequencing approach and SNPlex technology

机译:通过将重测序方法与SNPlex技术相结合在葡萄(葡萄)中进行高通量SNP发现和基因分型

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摘要

BackgroundSingle-nucleotide polymorphisms (SNPs) are the most abundant type of DNA sequence polymorphisms. Their higher availability and stability when compared to simple sequence repeats (SSRs) provide enhanced possibilities for genetic and breeding applications such as cultivar identification, construction of genetic maps, the assessment of genetic diversity, the detection of genotype/phenotype associations, or marker-assisted breeding. In addition, the efficiency of these activities can be improved thanks to the ease with which SNP genotyping can be automated. Expressed sequence tags (EST) sequencing projects in grapevine are allowing for the in silico detection of multiple putative sequence polymorphisms within and among a reduced number of cultivars. In parallel, the sequence of the grapevine cultivar Pinot Noir is also providing thousands of polymorphisms present in this highly heterozygous genome. Still the general application of those SNPs requires further validation since their use could be restricted to those specific genotypes.
机译:背景技术单核苷酸多态性(SNP)是DNA序列多态性中最丰富的类型。与简单序列重复(SSR)相比,它们的更高可用性和稳定性为遗传和育种应用提供了更大的可能性,例如品种鉴定,遗传图谱构建,遗传多样性评估,基因型/表型关联性检测或标记辅助配种。此外,由于可以轻松实现SNP基因分型的自动化,因此可以提高这些活动的效率。葡萄中的表达序列标签(EST)测序项目可用于在计算机上检测数量减少的品种内部和之中的多个假定的序列多态性。同时,葡萄品种黑比诺(Pinot Noir)的序列也提供了这种高度杂合基因组中存在的数千种多态性。这些SNP的一般应用仍然需要进一步验证,因为它们的使用可能会局限于那些特定的基因型。

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