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鉴定控制番茄果实酸和挥发性物质含量的主要基因座和基因组区域:对风味改良的启示。

Identification of major loci and genomic regions controlling acid and volatile content in tomato fruit: implications for flavor improvement.

机构信息

INRA, UR1052, GAFL, 67 Allée des Chênes Domaine Saint Maurice - CS60094, Montfavet Cedex, 84143, France.

Syngenta, 12 Chemin de l'Hobit, Saint Sauveur, 31790, France.

出版信息

New Phytol. 2017 Jul;215(2):624-641. doi: 10.1111/nph.14615. Epub 2017 Jun 6.

Abstract

Plant metabolites are important to world food security due to their roles in crop yield and nutritional quality. Here we report the metabolic profile of 300 tomato accessions (Solanum lycopersicum and related wild species) by quantifying 60 primary and secondary metabolites, including volatile organic compounds, over a period of 2 yr. Metabolite content and genetic inheritance of metabolites varied broadly, both within and between different genetic groups. Using genotype information gained from 10 000 single nucleotide polymorphism markers, we performed a metabolite genome-wide association mapping (GWAS) study. We identified 79 associations influencing 13 primary and 19 secondary metabolites with large effects at high resolution. Four genome regions were detected, highlighting clusters of associations controlling the variation of several metabolites. Local linkage disequilibrium analysis and allele mining identified possible candidate genes which may modulate the content of metabolites that are of significant importance for human diet and fruit consumption. We precisely characterized two associations involved in fruit acidity and phenylpropanoid volatile production. Taken together, this study reveals complex and distinct metabolite regulation in tomato subspecies and demonstrates that GWAS is a powerful tool for gene-metabolite annotation and identification, pathways elucidation, and further crop improvement.

摘要

由于植物代谢物在作物产量和营养品质方面的作用,它们对世界粮食安全至关重要。在这里,我们通过在 2 年内定量检测 60 种初级和次级代谢物(包括挥发性有机化合物),报告了 300 个番茄品种(番茄属和相关野生种)的代谢组特征。代谢物含量和代谢物的遗传继承在不同遗传群体内部和之间都存在广泛的差异。利用从 10000 个单核苷酸多态性标记获得的基因型信息,我们进行了代谢物全基因组关联分析(GWAS)研究。我们鉴定出了 79 个影响 13 种初级代谢物和 19 种次级代谢物的关联,这些关联具有较大的影响且分辨率较高。检测到 4 个基因组区域,突出了控制多个代谢物变化的关联簇。局部连锁不平衡分析和等位基因挖掘确定了可能的候选基因,这些基因可能调节对人类饮食和水果消费具有重要意义的代谢物的含量。我们精确地描述了两个与果实酸度和苯丙烷类挥发性物质产生有关的关联。总之,这项研究揭示了番茄亚种中复杂而独特的代谢物调控机制,并表明 GWAS 是基因-代谢物注释和鉴定、途径阐明以及进一步作物改良的有力工具。

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