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首页> 外文期刊>Tree Genetics & Genomes >Mapping of quantitative trait loci (QTLs) for oil yield using SSRs and gene-based markers in African oil palm (Elaeis guineensis Jacq.)
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Mapping of quantitative trait loci (QTLs) for oil yield using SSRs and gene-based markers in African oil palm (Elaeis guineensis Jacq.)

机译:使用SSR和基于基因的标记在非洲油棕(Elaeis guineensis Jacq。)中绘制石油产量的数量性状基因座(QTL)

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摘要

The identification of quantitative trait loci (QTLs) based on anchor markers, especially candidate genes that control a trait of interest, has been noted to increase the power of QTL detection. Since these markers can be scored as co-dominant data, they are also valuable for comparing and integrating the QTL linkage maps from diverse mapping populations. To estimate the position and effects of QTLs linked to oil yield traits in African oil palm, co-dominant microsatellites (SSR) and candidate gene-based sequence polymorphisms were applied to construct a linkage map for a progeny showing large differences in oil yield components. The progeny was genotyped for 97 SSR markers, 93 gene-linked markers, and 12 non-gene-linked SNP markers. From these, 190 segregating loci could be arranged into 31 linkage groups while 12 markers remained unmapped. Using the single marker linkage, interval mapping and multiple QTL methods, 16 putative QTLs on seven linkage groups affecting important oil yield related traits such as fresh fruit bunch yield (FFB), ratio of oil per fruit (OF), oil per bunch (OB), fruit per bunch (FB) and wet mesocarp per fruit (WMF) could be identified in the segregating population with estimated values for explained variance ranging from 12.4 % to 54.5 %. Markers designed from some candidate genes involved in lipid biosynthesis were found to be mapped near significant QTLs for various economic yield traits. Associations between QTLs and potential candidate genes are discussed.
机译:已经注意到,基于锚定标记(尤其是控制目标性状的候选基因)的定量性状基因座(QTL)的识别可提高QTL检测的能力。由于这些标记可以作为主要数据进行评分,因此它们对于比较和整合来自不同测绘人群的QTL连锁图也很有价值。为了估计与油性状相关的QTL在非洲油棕中的地位和影响,应用共显性微卫星(SSR)和基于候选基因的序列多态性来构建后代的连锁图,该后代显示出油性成分的巨大差异。对97个SSR标记,93个基因连锁的标记和12个非基因连锁的SNP标记对子代进行基因分型。从这些中,可以将190个分离位点分为31个连锁组,而12个标记仍未定位。使用单标记连锁,区间作图和多种QTL方法,对影响重要的与产量相关性状如新鲜水果束产量(FFB),每果油比(OF),每束果油(OB)的七个重要连锁特征的16个推定QTL ),可以在隔离人群中确定每束水果(FB)和每果湿中果皮(WMF)的估计值,其解释方差在12.4%至54.5%之间。发现从涉及脂质生物合成的一些候选基因设计的标记位于各种经济产量性状的重要QTL附近。讨论了QTL与潜在候选基因之间的关联。

著录项

  • 来源
    《Tree Genetics & Genomes》 |2014年第1期|1-14|共14页
  • 作者

    S. Jeennor; H. Volkaert;

  • 作者单位

    Center for Agricultural Biotechnology, Kasetsart University, Kampangsaen Campus, 73140 Nakhon Pathom, Thailand Center of Excellence on Agricultural Biotechnology (AG-BIO/PERDO-CHE), Bangkok 10900, Thailand;

    Center for Agricultural Biotechnology, Kasetsart University, Kampangsaen Campus, 73140 Nakhon Pathom, Thailand Center of Excellence on Agricultural Biotechnology (AG-BIO/PERDO-CHE), Bangkok 10900, Thailand,National Center for Genetic Engineering and Biotechnology, Thailand Science Park, Pathumthani 12120, Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    QTL; Oil palm; Candidate gene; SNP marker;

    机译:QTL;油棕;候选基因;SNP标记;

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