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在对特种作物的种群和种质资源库进行基因分型和评估遗传多样性时,单链构象多态性(SSCP)标记为微卫星提供了一种有用的替代方法。

SSCP markers provide a useful alternative to microsatellites in genotyping and estimating genetic diversity in populations and germplasm collections of plant specialty crops.

作者信息

Kuhn David N, Motamayor Juan Carlos, Meerow Alan W, Borrone James W, Schnell Raymond J

机构信息

USDA-ARS Subtropical Horticultural Research Station, Miami, FL, USA.

出版信息

Electrophoresis. 2008 Oct;29(19):4096-108. doi: 10.1002/elps.200700937.

Abstract

For well-studied plant species with whole genome sequence or extensive EST data, SNP markers are the logical choice for both genotyping and whole genome association studies. However, SNP markers may not address the needs of researchers working on specialty crops with limited available genomic information. Microsatellite markers have been frequently employed due to their robustness, but marker development can be difficult and may result in few polymorphic markers. SSCP markers, such as microsatellites, are PCR-based and scored by electrophoretic mobility but, because they are based on SNPs rather than length differences, occur more frequently and are easier to develop than microsatellites. We have examined how well correlated the estimation of genetic diversity and genetic distance are in a population or germplasm collection when measured by 13 highly polymorphic microsatellite markers or 20 SSCP markers. We observed a significant correlation in pairwise genetic distances of 82 individuals in an international cacao germplasm collection (Mantel test Rxy=0.59, p<0.0001 for 10 000 permutations). Both sets of markers could distinguish each individual in the population. These data provide strong support for the use of SSCP markers in the genotyping of plant species where development of microsatellites would be difficult or expensive.

摘要

对于那些具有全基因组序列或大量EST数据且已被充分研究的植物物种而言,单核苷酸多态性(SNP)标记是基因分型和全基因组关联研究的合理选择。然而,SNP标记可能无法满足那些研究可用基因组信息有限的特色作物的研究人员的需求。微卫星标记因其稳健性而经常被采用,但其标记开发可能很困难,并且可能产生较少的多态性标记。单链构象多态性(SSCP)标记,如微卫星标记,基于聚合酶链式反应(PCR),通过电泳迁移率进行评分,但由于它们基于单核苷酸多态性而非长度差异,比微卫星标记出现得更频繁且更易于开发。我们研究了在一个群体或种质资源库中,当用13个高度多态性的微卫星标记或20个SSCP标记进行测量时,遗传多样性估计值与遗传距离之间的相关性有多高。我们在一个国际可可种质资源库中的82个个体的成对遗传距离中观察到显著相关性(Mantel检验,对于10000次排列,Rxy = 0.59,p < 0.0001)。两组标记都可以区分群体中的每个个体。这些数据为在微卫星开发困难或昂贵的植物物种基因分型中使用SSCP标记提供了有力支持。

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