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A genome?¢????wide analysis of single nucleotide polymorphism diversity in the world's major cereal crops

机译:对世界主要谷物作物中的单核苷酸多态性多样性进行全基因组分析

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Over 3.5 million expressed sequence tags from the major cereal taxa were used to electronically mine over 176????000 putative single nucleotide polymorphisms (SNPs). The density, distribution and degree of linkage between these SNPs were compared among the different taxa. The frequency of sequence polymorphism was lowest in diploid taxa (rice, barley and sorghum), intermediate in tetraploid maize and highest in allohexaploid wheat and octoploid sugarcane. SNPs were further categorized as either intravarietal (differences between gene family members and homoeologues) or varietal (differences between two varieties), and as either co?¢????segregating or non?¢????co?¢????segregating with neighbouring polymorphisms. Varietal co?¢????segregating SNPs represent the best candidates for molecular markers as they show variation between varieties and have a high probability of being validated, as sequencing errors are unlikely to co?¢????segregate with one another. This elite class of SNPs was most abundant in barley and least abundant in wheat and rice. Despite the large number of observed sequence polymorphisms in allohexaploid wheat, only a fraction of those available are likely to make good molecular markers. In addition, we found that rice SNPs up to 10????kb apart were in linkage disequilibrium (LD), but that high levels of LD attributable to population structure confounded the tracking of LD over greater distances.
机译:来自主要谷物类群的超过350万个表达的序列标签用于电子挖掘超过176?000个推定的单核苷酸多态性(SNP)。比较了不同分类单元中这些SNP之间的密度,分布和连锁程度。序列多态性的频率在二倍体类群(大米,大麦和高粱)中最低,在四倍体玉米中居中,而在异六倍体小麦和八倍体甘蔗中最高。 SNPs进一步分为:品种内(基因家族成员和同系物之间的差异)或品种(两种变体之间的差异),以及共分离或非共分离。与邻近的多态性分离。多样性共分离的SNP代表了分子标记的最佳候选,因为它们显示出不同品种之间的差异,并且由于测序错误不太可能相互分离,因此很有可能被验证。 SNP的这一精英类别在大麦中含量最高,而在小麦和水稻中含量最低。尽管在异源六倍体小麦中观察到大量的序列多态性,但只有少数可获得的序列多态性可能成为良好的分子标记。此外,我们发现相距不超过10kb的水稻SNP在连锁不平衡(LD)中,但是由于种群结构所致的高水平LD混淆了更远距离上LD的追踪。

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