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鉴定麻疯树中影响植株生长、产油量和脂肪酸组成的数量性状基因座(QTL)标记

Identification of QTL markers contributing to plant growth, oil yield and fatty acid composition in the oilseed crop Jatropha curcas L.

作者信息

King Andrew J, Montes Luis R, Clarke Jasper G, Itzep Jose, Perez Cesar A A, Jongschaap Raymond E E, Visser Richard G F, van Loo Eibertus N, Graham Ian A

机构信息

Department of Biology, Centre for Novel Agricultural Products, University of York, York, YO10 5DD UK.

Biocombustibles de Guatemala, Guatemala Ciudad, Guatemala.

出版信息

Biotechnol Biofuels. 2015 Sep 25;8:160. doi: 10.1186/s13068-015-0326-8. eCollection 2015.

Abstract

BACKGROUND

Economical cultivation of the oilseed crop Jatropha curcas is currently hampered in part due to the non-availability of purpose-bred cultivars. Although genetic maps and genome sequence data exist for this crop, marker-assisted breeding has not yet been implemented due to a lack of available marker-trait association studies. To identify the location of beneficial alleles for use in plant breeding, we performed quantitative trait loci (QTL) analysis for a number of agronomic traits in two biparental mapping populations.

RESULTS

The mapping populations segregated for a range of traits contributing to oil yield, including plant height, stem diameter, number of branches, total seeds per plant, 100-seed weight, seed oil content and fatty acid composition. QTL were detected for each of these traits and often over multiple years, with some variation in the phenotypic variance explained between different years. In one of the mapping populations where we recorded vegetative traits, we also observed co-localization of QTL for stem diameter and plant height, which were both overdominant, suggesting a possible locus conferring a pleotropic heterosis effect. By using a candidate gene approach and integrating physical mapping data from a recent high-quality release of the Jatropha genome, we were also able to position a large number of genes involved in the biosynthesis of storage lipids onto the genetic map. By comparing the position of these genes with QTL, we were able to detect a number of genes potentially underlying seed traits, including phosphatidate phosphatase genes.

CONCLUSIONS

The QTL we have identified will serve as a useful starting point in the creation of new varieties of J. curcas with improved agronomic performance for seed and oil productivity. Our ability to physically map a significant proportion of the Jatropha genome sequence onto our genetic map could also prove useful in identifying the genes underlying particular traits, allowing more controlled and precise introgression of desirable alleles and permitting the pyramiding or stacking of multiple QTL.

摘要

背景

目前,麻疯树这种油料作物的经济栽培受到部分阻碍,原因是缺乏专门培育的品种。尽管该作物已有遗传图谱和基因组序列数据,但由于缺乏可用的标记-性状关联研究,标记辅助育种尚未实施。为了确定用于植物育种的有益等位基因的位置,我们在两个双亲作图群体中对多个农艺性状进行了数量性状位点(QTL)分析。

结果

作图群体在一系列影响油产量的性状上发生分离,包括株高、茎直径、分枝数、单株种子总数、百粒重、种子含油率和脂肪酸组成。针对这些性状中的每一个都检测到了QTL,并且常常在多年间都能检测到,不同年份间表型变异的解释存在一些差异。在我们记录了营养性状的一个作图群体中,我们还观察到茎直径和株高的QTL共定位,这两个QTL均表现为超显性,表明可能存在一个赋予多效杂种优势效应的位点。通过使用候选基因方法并整合来自最近高质量发布的麻疯树基因组的物理图谱数据,我们还能够将大量参与储存脂质生物合成的基因定位到遗传图谱上。通过将这些基因的位置与QTL进行比较,我们能够检测到一些可能影响种子性状的潜在基因,包括磷脂酸磷酸酶基因。

结论

我们鉴定出的QTL将作为培育具有改良种子和油生产率农艺性能的新麻疯树品种的有用起点。我们将麻疯树基因组序列的很大一部分物理定位到遗传图谱上的能力,也可能有助于鉴定特定性状的潜在基因,从而更可控、精确地导入所需等位基因,并实现多个QTL的聚合或累加。

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