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Quantitative Trait Locus (QTL) meta-analysis and comparative genomics for candidate gene prediction in perennial ryegrass (Lolium perenne L.)

机译:多年生黑麦草(Lolium Perenne L.)候选基因预测的定量性状基因座(QTL)荟萃分析和比较基因组学

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Background In crop species, QTL analysis is commonly used for identification of factors contributing to variation of agronomically important traits. As an important pasture species, a large number of QTLs have been reported for perennial ryegrass based on analysis of biparental mapping populations. Further characterisation of those QTLs is, however, essential for utilisation in varietal improvement programs. Results A bibliographic survey of perennial ryegrass trait-dissection studies identified a total of 560 QTLs from previously published papers, of which 189, 270 and 101 were classified as morphology-, physiology- and resistance/tolerance-related loci, respectively. The collected dataset permitted a subsequent meta-QTL study and implementation of a cross-species candidate gene identification approach. A meta-QTL analysis based on use of the BioMercator software was performed to identify two consensus regions for pathogen resistance traits. Genes that are candidates for causal polymorphism underpinning perennial ryegrass QTLs were identified through in silico comparative mapping using rice databases, and 7 genes were assigned to the p150/112 reference map. Markers linked to the LpDGL1, LpPh1 and LpPIPK1 genes were located close to plant size, leaf extension time and heading date-related QTLs, respectively, suggesting that these genes may be functionally associated with important agronomic traits in perennial ryegrass. Conclusions Functional markers are valuable for QTL meta-analysis and comparative genomics. Enrichment of such genetic markers may permit further detailed characterisation of QTLs. The outcomes of QTL meta-analysis and comparative genomics studies may be useful for accelerated development of novel perennial ryegrass cultivars with desirable traits.
机译:背景技术在作物物种中,QTL分析通常用于识别有助于变异的因素,这是一个农艺上重要特征的变化。作为一个重要的牧场种,基于分析母程填写群体的多年生黑麦草报道了大量QTL。然而,这些QTL的进一步表征是必不可少的,以利用品种改善计划。结果多年生黑麦草分析研究的书目调查鉴定了来自先前公布的纸张的总共560 QTL,其中189,270和101分别被分类为形态学,生理学和抵抗/耐受相关基因座。收集的数据集允许随后的Meta-QTL研究和实施跨物种候选基因鉴定方法。进行基于使用生物扫描软件的Meta-QTL分析,以确定用于病原体抗性特征的两个共识区域。通过使用水稻数据库的硅比较映射鉴定了基于多年生黑麦草QTL的因果多态性的候选物的基因,并将7个基因分配给P150 / 112参考图。链接到LPDGL1,LPPH1和LPPIPK1基因的标记分别位于植物尺寸,叶延长时间和标题与日期相关的QTL上,表明这些基因可能与多年生黑麦草中的重要农艺性状相关。结论功能标记对于QTL Meta分析和比较基因组学具有有价值。这种遗传标记的富集可能允许进一步详细描述QTLS。 QTL荟萃分析和比较基因组学研究的结果可用于加速具有理想性状的新型多年生黑胚系的开发。

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