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Integration of EST-SSR markers of Medicago truncatula into intraspecific linkage map of lentil and identification of QTL conferring resistance to ascochyta blight at seedling and pod stages

机译:run藜EST-SSR标记整合到小扁豆种内连锁图谱中并鉴定QTL赋予幼苗和豆荚期抗灰霉病抗性

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摘要

Microsatellite markers have been extensively utilised in the leguminosae for genome mapping and identifying major loci governing traits of interest for eventual marker-assisted selection (MAS). The lack of available lentil-specific microsatellite sequences and gene-based markers instigated the mining and transfer of expressed sequence tag simple sequence repeat (EST-SSR)/SSR sequences from the model genome Medicago truncatula, to enrich an existing intraspecific lentil genetic map. A total of 196 markers, including new 15 M. truncatula EST-SSR/SSR, were mapped using a population of 94 F5 recombinant inbred lines produced from a cross between cv. Northfield (ILL5588) × cv. Digger (ILL5722) and clustered into 11 linkage groups (LG) covering 1156.4 cM. Subsequently, the size and effects of quantitative trait loci (QTL) conditioning Ascochyta lentis resistance at seedling and pod/maturity stages were characterised and compared. Three QTL were detected for seedling resistance on LG1 and LG9 and a further three were detected for pod/maturity resistance on LG1, LG4 and LG5. Together, these accounted for 34 and 61% of the total estimated phenotypic variation, respectively, and demonstrated that resistance at the different growth stages is potentially conditioned by different genomic regions. The flanking markers identified may be useful for MAS and for the future pyramiding of potentially different resistance genes into elite backgrounds that are resistant throughout the cropping season.
机译:微卫星标记已在豆科中广泛用于基因组作图和鉴定主要的基因座调控特征,以进行最终的标记辅助选择(MAS)。缺乏可用的小扁豆特异性微卫星序列和基于基因的标记,促使从模型基因组苜蓿苜蓿(Medicago truncatula)挖掘表达的序列标签简单序列重复序列(EST-SSR)/ SSR序列,以丰富现有的种内小扁豆遗传图谱。总共196个标记,包括新的15株截叶短吻梭菌EST-SSR / SSR,使用了从cv之间的杂交产生的94个F5重组自交系进行定位。诺斯菲尔德(ILL5588)×简历挖掘器(ILL5722)并分为11个链接组(LG),覆盖1156.4 cM。随后,定性并比较了数量性状基因座(QTL)调节幼苗和荚果/成熟期抗小球菌抗性的大小和影响。在LG1和LG9上检测到三个QTL的幼苗抗性,在LG1,LG4和LG5上检测到另外三个QTL的豆荚/成熟度。这些加在一起,分别占总估计表型变异的34%和61%,并证明在不同生长阶段的抗性可能受不同基因组区域的调节。鉴定出的侧翼标记可能对MAS有用,并且对于将来可能将不同的抗性基因金字塔化为整个种植季节具有抗性的优良背景可能很有用。

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