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Transferable EST-SSR markers for the study of polymorphism and genetic diversity in bread wheat

机译:可转移的EST-SSR标记用于研究面包小麦的多态性和遗传多样性

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摘要

Nearly 900 SSRs (simple sequence repeats) were identified among 15,000 ESTs (expressed sequence tags) belonging to bread wheat ( Triticum aestivum L.). The SSRs were defined by their minimum length, which ranged from 14 to 21 bp. The maximum length ranged from 24 to 87 bp depending upon the length of the repeat unit itself (1-7 bp). The average density of SSRs was one SSR per 9.2 kb of EST sequence screened. The trinucleotide repeats were the most abundant SSRs detected. As a representative sample, 78 primer pairs were designed, which were also used to screen the dbEST entries for Hordeum vulgare and Triticum tauschii (donor of the D-genome of cultivated wheat) using a cut-off E (expectation) value of 0.01. On the basis of in silico analysis, up to 55.12% of the primer pairs exhibited transferability from Triticum to Hordeum, indicating that the sequences flanking the SSRs are not only conserved within a single genus but also between related genera in Poaceae. Primer pairs for the 78 SSRs were synthesized and used successfully for the study of (1) their transferability to 18 related wild species and five cereal species (barley, oat, rye, rice and maize); and (2) polymorphism between the parents of four mapping populations available with us. A subset of 20 EST-SSR primers was also used to assess genetic diversity in a collection of 52 elite exotic wheat genotypes. This was done with a view to compare their utility relative to other molecular markers (gSSRs, AFLPs, and SAMPL) previously used by us for the same purpose with the same set of 52 bread wheat genotypes. Although only a low level of polymorphism was detected, relative to that observed with genomic SSRs, the study suggested that EST-SSRs can be successfully used for a variety of purposes, and may actually prove superior to SSR markers extracted from genomic libraries for diversity estimation and transferability.
机译:在属于面包小麦(Triticum aestivum L.)的15,000个EST(表达的序列标签)中鉴定出近900个SSR(简单的序列重复)。 SSR由其最小长度定义,范围从14到21 bp。最大长度为24至87 bp,具体取决于重复单元本身的长度(1-7 bp)。 SSR的平均密度为每9.2 kb所筛选的EST序列一个SSR。三核苷酸重复是检测到的最丰富的SSR。作为代表性样品,设计了78对引物,这些引物还用于使用截止E值(期望)值为0.01的大麦和黑麦(栽培小麦D基因组的供体)筛选dbEST条目。根据计算机分析,高达55.12%的引物对表现出从小麦到大麦的转移性,表明SSRs侧翼的序列不仅在单个属中保守,而且在禾本科的相关属之间也保守。合成了78个SSR的引物对,并成功用于以下研究:(1)它们对18种相关野生物种和5种谷物物种(大麦,燕麦,黑麦,水稻和玉米)的转移性; (2)我们可以得到的四个作图群体的父母之间的多态性。还使用了20条EST-SSR引物的一个子集来评估52种优良外来小麦基因型中的遗传多样性。这样做是为了比较它们与我们先前出于相同目的使用相同的52种面包小麦基因型而使用的其他分子标记(gSSR,AFLP和SAMPL)的实用性。尽管仅检测到低水平的多态性,但相对于基因组SSR观察到的多态性,该研究表明EST-SSR可以成功用于多种目的,并且实际上可能优于从基因组文库中提取的用于多样性评估的SSR标记和可转让性。

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