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首页> 外文期刊>BMC Plant Biology >High-density genetic map construction and QTLs analysis of grain yield-related traits in Sesame (Sesamum indicum L.) based on RAD-Seq techonology
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High-density genetic map construction and QTLs analysis of grain yield-related traits in Sesame (Sesamum indicum L.) based on RAD-Seq techonology

机译:基于RAD-Seq技术的芝麻籽粒产量性状高密度遗传图谱构建和QTL分析

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Background Sesame (Sesamum indicum L., 2n?=?26) is an important oilseed crop with an estimated genome size of 369?Mb. The genetic basis, including the number and locations of quantitative trait loci (QTLs) of sesame grain yield and quality remain poorly understood, due in part to the lack of reliable markers and genetic maps. Here we report on the construction of a hitherto most high-density genetic map of sesame using the restriction-site associated DNA sequencing (RAD-seq) combined with 89 PCR markers, and the identification of grain yield-related QTLs using a recombinant inbred line (RIL) population. Result In total, 3,769 single-nucleotide polymorphism (SNP) markers were identified from RAD-seq, and 89 polymorphic PCR markers were identified including 44 expressed sequence tag-simple sequence repeats (EST-SSRs), 10 genomic-SSRs and 35 Insertion-Deletion markers (InDels). The final map included 1,230 markers distributed on 14 linkage groups (LGs) and was 844.46?cM in length with an average of 0.69?cM between adjacent markers. Using this map and RIL population, we detected 13 QTLs on 7 LGs and 17 QTLs on 10 LGs for seven grain yield-related traits by the multiple interval mapping (MIM) and the mixed linear composite interval mapping (MCIM), respectively. Three major QTLs had been identified using MIM with R2?>?10.0% or MCIM with ha2?>?5.0%. Two co-localized QTL groups were identified that partially explained the correlations among five yield-related traits. Conclusion Three thousand eight hundred and four pairs of new DNA markers including SNPs and InDels were developed by RAD-seq, and a so far most high-density genetic map was constructed based on these markers in combination with SSR markers. Several grain yield-related QTLs had been identified using this population and genetic map. We report here the first QTL mapping of yield-related traits with a high-density genetic map using a RIL population in sesame. Results of this study solidified the basis for studying important agricultural traits and implementing marker-assisted selection (MAS) toward genetic improvement in sesame.
机译:背景芝麻(芝麻(Sesamum indicum L.),2n?=?26)是一种重要的油料作物,估计基因组大小为369?Mb。遗传基础,包括芝麻籽粒产量和品质的数量性状基因座(QTL)的数量和位置,仍然知之甚少,部分原因是缺乏可靠的标记和遗传图谱。在这里,我们报道了使用限制酶切位点相关DNA测序(RAD-seq)结合89个PCR标记,构建了迄今为止最高密度的芝麻遗传图谱,并使用了重组自交系鉴定了与谷物产量相关的QTL (RIL)人口。结果从RAD-seq中共鉴定出3,769个单核苷酸多态性(SNP)标记,鉴定出89个多态性PCR标记,包括44个表达的序列标签-简单序列重复(EST-SSR),10个基因组-SSR和35个插入-删除标记(InDels)。最终的图谱包括分布在14个连锁组(LG)上的1,230个标记,长度为844.46?cM,相邻标记之间的平均数为0.69?cM。使用该图和RIL种群,我们分别通过多重区间映射(MIM)和混合线性复合区间映射(MCIM)在7个谷类的13个QTL和10个LG的17个QTL上检测了七个与产量相关的性状。使用R 2 ?> 10.0%的MIM或h a 2 ? 5.0%的MCIM确定了三个主要的QTL。确定了两个共定位的QTL组,部分解释了五个产量相关性状之间的相关性。结论RAD-seq开发了384对新的DNA标记,包括SNP和InDel,并结合这些标记与SSR标记构建了迄今为止最高密度的遗传图谱。使用该种群和遗传图谱已经鉴定了几个与谷物产量相关的QTL。我们在这里报告了使用芝麻的RIL群体的高密度遗传图谱的产量相关性状的第一个QTL定位图。这项研究的结果为研究重要的农业性状和实施标记辅助选择(MAS)以促进芝麻的遗传改良奠定了基础。

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