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首页> 外文期刊>Plant Biotechnology Journal >Linkage mapping in the oilseed crop Jatropha curcas L. reveals a locus controlling the biosynthesis of phorbol esters which cause seed toxicity
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Linkage mapping in the oilseed crop Jatropha curcas L. reveals a locus controlling the biosynthesis of phorbol esters which cause seed toxicity

机译:油脂作物麻疹Curcas L中的连接映射揭示了控制源毒性的生物合成的基因座,导致种子毒性

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摘要

Current efforts to grow the tropical oilseed crop Jatropha curcas L. economically are hampered by the lack of cultivars and the presence of toxic phorbol esters (PE) within the seeds of most provenances. These PE restrict the conversion of seed cake into animal feed, although naturally occurring ‘nontoxic’ provenances exist which produce seed lacking PE. As an important step towards the development of genetically improved varieties of J. curcas, we constructed a linkage map from four FSUB2/SUB mapping populations. The consensus linkage map contains 502 codominant markers, distributed over 11 linkage groups, with a mean marker density of 1.8 cM per unique locus. Analysis of the inheritance of PE biosynthesis indicated that this is a maternally controlled dominant monogenic trait. This maternal control is due to biosynthesis of the PE occurring only within maternal tissues. The trait segregated 3 : 1 within seeds collected from FSUB2/SUB plants, and QTL analysis revealed that a locus on linkage group 8 was responsible for phorbol ester biosynthesis. By taking advantage of the draft genome assemblies of J. curcas and Ricinus communis (castor), a comparative mapping approach was used to develop additional markers to fine map this mutation within 2.3 cM. The linkage map provides a framework for the dissection of agronomic traits in J. curcas, and the development of improved varieties by marker-assisted breeding. The identification of the locus responsible for PE biosynthesis means that it is now possible to rapidly breed new nontoxic varieties.
机译:目前努力种植热带油脂作物麻疹CURCAS L.经济上受到缺乏品种和大多数种种子的种子内的毒性佛博酯(PE)的存在。这些PE将种子饼的转化为动物饲料,尽管天然存在的“无毒”杂志,其产生缺乏PE的种子。作为发展遗传改善的J.Curcas品种的重要一步,我们构建了来自四个F 2 映射群的联系地图。共有联系地图含有502个Codominant标志物,分布在11个联动组上,平均标记密度为1.8厘米,每种独特的基因座。 PE生物合成的遗传分析表明这是潜水控制的主要单一性状。这种母体控制是由于仅在母体组织内发生的PE生物合成。在从F <亚沉淀2 植物中收集的种子中分离3:1,并且QTL分析显示连锁组8的轨迹对Phorbol酯生物合成负责。通过利用J. Curcas和Ricinus Communis(Castor)的基因组组件草案,使用比较映射方法来开发额外的标记,以在2.3厘米内的细微映射到细映射。联系地图为J.Curcas进行了解剖,并通过标记辅助繁殖的改善品种的发展提供了解剖农艺性状的框架。负责PE生物合成的轨迹的鉴定意味着现在可以快速繁殖新的无毒品种。

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