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Genome-wide identification of markers for selecting higher oil content in oil palm

机译:全基因组鉴定,用于选择油棕中较高油含量的标记

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Background Oil palm ( Elaeis guineensis , Jacq.) is the most important source of edible oil. The improvement of oil yield is currently slow in conventional breeding programs due to long generation intervals. Marker-assisted selection (MAS) has the potential to accelerate genetic improvement. To identify DNA markers associated with oil content traits for MAS, we performed quantitative trait loci (QTL) mapping using genotyping by sequencing (GBS) in a breeding population derived from a cross between Deli Dura and Ghana Pisifera , containing 153?F1 trees. Results We constructed a high-density linkage map containing 1357 SNPs and 123 microsatellites. The 16 linkage groups (LGs) spanned 1527?cM, with an average marker space of 1.03?cM. One significant and three suggestive QTL for oil to bunch (O/B) and oil to dry mesocarp (O/DM) were mapped on LG1, LG8, and LG10 in a F1 breeding population, respectively. These QTL explained 7.6–13.3% of phenotypic variance. DNA markers associated with oil content in these QTL were identified. Trees with beneficial genotypes at two QTL for O/B showed an average O/B of 30.97%, significantly ( P Conclusions A linkage map with 1480 DNA markers was constructed and used to identify QTL for oil content traits. Pyramiding the identified QTL with beneficial genotypes associated with oil content traits using DNA markers has the potential to accelerate genetic improvement for oil yield in the breeding population of oil palm.
机译:背景技术油棕(Elaeis guineensis,Jacq。)是食用油的最重要来源。由于传统的育种间隔长,目前常规育种计划中油产量的提高缓慢。标记辅助选择(MAS)具有加速遗传改良的潜力。为了鉴定与MAS的油含量性状相关的DNA标记,我们在来自Deli Dura和Ghana Pisifera之间杂交的,包含153?F 的繁殖种群中,使用测序基因分型(GBS)进行了定量性状基因座(QTL)定位。 1 树。结果我们构建了包含1357个SNP和123个微卫星的高密度连锁图谱。 16个连锁群(LGs)跨度为1527?cM,平均标记空间为1.03?cM。在F 1 繁殖种群的LG1,LG8和LG10上分别绘制了一个重要的QTL和三个建议的QTL,用于油串(O / B)和油干中果皮(O / DM)。这些QTL解释了表型差异的7.6–13.3%。确定了与这些QTL中油含量相关的DNA标记。在两个QTL上具有O / B的有益基因型的树的平均O / B为30.97%,显着(P结论构建了具有1480个DNA标记的连锁图谱,并用于鉴定油分性状的QTL。使用DNA标记与含油量性状相关的基因型具有加速油棕育种种群油产量遗传改良的潜力。

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