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首页> 外文期刊>BMC Plant Biology >Comparison of SNP and CAPS markers application in genetic research in wheat and barley
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Comparison of SNP and CAPS markers application in genetic research in wheat and barley

机译:SNP和CAPS标记在小麦和大麦遗传研究中的应用比较

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摘要

Barley and bread wheat show large differences in frequencies of Single Nucleotide Polymorphism (SNP) as determined from genome-wide studies. These frequencies have been estimated as 2.4-3 times higher in the entire barley genome than within each diploid genomes of wheat (A, B or D). However, barley SNPs within individual genes occur significantly more frequently than quoted. Differences between wheat and barley are based on the origin and evolutionary history of the species. Bread wheat contains rarer SNPs due to the double genetic ‘bottle-neck’ created by natural hybridisation and spontaneous polyploidisation. Furthermore, wheat has the lowest level of useful SNP-derived markers while barley is estimated to have the highest level of polymorphism. Different strategies are required for the development of suitable molecular markers in these cereal species. For example, SNP markers based on high-throughput technology (Infinium or KASP) are very effective and useful in both barley and bread wheat. In contrast, Cleaved Amplified Polymorphic Sequences (CAPS) are more widely and successfully employed in small-scale experiments with highly polymorphic genetic regions containing multiple SNPs in barley, but not in wheat. However, preliminary ‘in silico’ search databases for assessing the potential value of SNPs have yet to be developed. This mini-review summarises results supporting the development of different strategies for the application of effective SNP and CAPS markers in wheat and barley.
机译:从全基因组研究确定,大麦和面包小麦的单核苷酸多态性(SNP)频率差异很大。据估计,在整个大麦基因组中,这些频率比小麦的每个二倍体基因组(A,B或D)高2.4-3倍。但是,单个基因中的大麦单核苷酸多态性发生的频率明显高于引用的频率。小麦和大麦之间的差异基于该物种的起源和进化史。面包小麦含有较少的SNP,这是由于自然杂交和自发多倍体化产生的双重遗传“瓶颈”。此外,小麦的有用SNP衍生标记水平最低,而大麦的多态性水平最高。在这些谷物品种中开发合适的分子标记物需要不同的策略。例如,基于高通量技术(Infinium或KASP)的SNP标记在大麦和面包小麦中都非常有效和有用。相反,contrast割扩增多态性序列(CAPS)在大麦中具有高度多态性遗传区域且包含多个SNP的小规模实验中得到了更广泛的成功应用,但在小麦中却没有。但是,尚未开发用于评估SNP潜在价值的初步“计算机”搜索数据库。本小型综述总结了支持开发不同策略以在小麦和大麦中应用有效SNP和CAPS标记的结果。

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