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全基因组关联研究鉴定控制拟南芥特化种子代谢物的基因座。

Genome-wide association studies identify loci controlling specialized seed metabolites in Arabidopsis.

机构信息

Central Metabolism, Max Planck Institute of Molecular Plant Physiology, Am Muehlenberg 1, 14476 Potsdam-Golm, Germany.

Center of Plant Systems Biology and Biotechnology, 4000 Plovdiv, Bulgaria.

出版信息

Plant Physiol. 2024 Feb 29;194(3):1705-1721. doi: 10.1093/plphys/kiad511.

Abstract

Plants synthesize specialized metabolites to facilitate environmental and ecological interactions. During evolution, plants diversified in their potential to synthesize these metabolites. Quantitative differences in metabolite levels of natural Arabidopsis (Arabidopsis thaliana) accessions can be employed to unravel the genetic basis for metabolic traits using genome-wide association studies (GWAS). Here, we performed metabolic GWAS on seeds of a panel of 315 A. thaliana natural accessions, including the reference genotypes C24 and Col-0, for polar and semi-polar seed metabolites using untargeted ultra-performance liquid chromatography-mass spectrometry. As a complementary approach, we performed quantitative trait locus (QTL) mapping of near-isogenic introgression lines between C24 and Col-0 for specific seed specialized metabolites. Besides common QTL between seeds and leaves, GWAS revealed seed-specific QTL for specialized metabolites, indicating differences in the genetic architecture of seeds and leaves. In seeds, aliphatic methylsulfinylalkyl and methylthioalkyl glucosinolates associated with the ALKENYL HYDROXYALKYL PRODUCING loci (GS-ALK and GS-OHP) on chromosome 4 containing alkenyl hydroxyalkyl producing 2 (AOP2) and 3 (AOP3) or with the GS-ELONG locus on chromosome 5 containing methylthioalkyl malate synthase (MAM1) and MAM3. We detected two unknown sulfur-containing compounds that were also mapped to these loci. In GWAS, some of the annotated flavonoids (kaempferol 3-O-rhamnoside-7-O-rhamnoside, quercetin 3-O-rhamnoside-7-O-rhamnoside) were mapped to transparent testa 7 (AT5G07990), encoding a cytochrome P450 75B1 monooxygenase. Three additional mass signals corresponding to quercetin-containing flavonols were mapped to UGT78D2 (AT5G17050). The association of the loci and associating metabolic features were functionally verified in knockdown mutant lines. By performing GWAS and QTL mapping, we were able to leverage variation of natural populations and parental lines to study seed specialized metabolism. The GWAS data set generated here is a high-quality resource that can be investigated in further studies.

摘要

植物合成特化代谢物以促进环境和生态相互作用。在进化过程中,植物在合成这些代谢物的潜力上呈现多样化。利用全基因组关联研究(GWAS),可以利用自然拟南芥(Arabidopsis thaliana)品系中代谢物水平的定量差异来揭示代谢特征的遗传基础。在这里,我们对 315 个拟南芥自然品系的种子进行了代谢 GWAS,包括参考基因型 C24 和 Col-0,使用非靶向超高效液相色谱-质谱法研究极性和半极性种子代谢物。作为一种补充方法,我们对 C24 和 Col-0 之间的近等基因导入系进行了特定种子特化代谢物的数量性状位点(QTL)作图。除了种子和叶片之间的共同 QTL 外,GWAS 还揭示了种子特化代谢物的种子特异性 QTL,表明种子和叶片的遗传结构存在差异。在种子中,与包含烯基羟烷基产生 2(AOP2)和 3(AOP3)的 4 号染色体上的 ALKENYL HYDROXYALKYL PRODUCING 基因座(GS-ALK 和 GS-OHP)或包含甲基硫烷基丙二酸合酶(MAM1)和 MAM3 的 5 号染色体上的 GS-ELONG 基因座相关的脂肪族甲硫基烷基葡萄糖硫苷与角叉菜聚糖有关。我们还检测到两种被映射到这些基因座的未知含硫化合物。在 GWAS 中,一些注释的类黄酮(山柰酚 3-O-鼠李糖苷-7-O-鼠李糖苷,槲皮素 3-O-鼠李糖苷-7-O-鼠李糖苷)被映射到透明种皮 7(AT5G07990),该基因编码细胞色素 P450 75B1 单加氧酶。另外三个对应于含槲皮素的类黄酮醇的质量信号被映射到 UGT78D2(AT5G17050)。在敲低突变系中,对基因座和相关代谢特征的关联进行了功能验证。通过进行 GWAS 和 QTL 作图,我们能够利用自然种群和亲本系的变异性来研究种子特化代谢物。这里生成的 GWAS 数据集是一个高质量的资源,可以在进一步的研究中进行调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4630/10904349/194a8e846bd6/kiad511f1.jpg

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