Leibniz Institute of Plant Biochemistry, Department of Stress and Developmental Biology, Weinberg 3, 06120 Halle (Saale), Germany.
Sci Rep. 2016 Jul 1;6:29033. doi: 10.1038/srep29033.
Many metabolomics studies focus on aboveground parts of the plant, while metabolism within roots and the chemical composition of the rhizosphere, as influenced by exudation, are not deeply investigated. In this study, we analysed exudate metabolic patterns of Arabidopsis thaliana and their variation in genetically diverse accessions. For this project, we used the 19 parental accessions of the Arabidopsis MAGIC collection. Plants were grown in a hydroponic system, their exudates were harvested before bolting and subjected to UPLC/ESI-QTOF-MS analysis. Metabolite profiles were analysed together with the genome sequence information. Our study uncovered distinct metabolite profiles for root exudates of the 19 accessions. Hierarchical clustering revealed similarities in the exudate metabolite profiles, which were partly reflected by the genetic distances. An association of metabolite absence with nonsense mutations was detected for the biosynthetic pathways of an indolic glucosinolate hydrolysis product, a hydroxycinnamic acid amine and a flavonoid triglycoside. Consequently, a direct link between metabolic phenotype and genotype was detected without using segregating populations. Moreover, genomics can help to identify biosynthetic enzymes in metabolomics experiments. Our study elucidates the chemical composition of the rhizosphere and its natural variation in A. thaliana, which is important for the attraction and shaping of microbial communities.
许多代谢组学研究集中在植物地上部分,而根系内的代谢以及根系分泌物影响下的根际化学组成则没有得到深入研究。在这项研究中,我们分析了拟南芥的分泌物代谢模式及其在遗传多样性品系中的变化。为此,我们使用了拟南芥 MAGIC 集合的 19 个亲本品系。植物在水培系统中生长,在抽薹前收获其分泌物,并进行 UPLC/ESI-QTOF-MS 分析。代谢物图谱与基因组序列信息一起进行了分析。我们的研究揭示了 19 个品系的根系分泌物的独特代谢图谱。层次聚类揭示了分泌物代谢图谱的相似性,这些相似性部分反映了遗传距离。在吲哚类葡糖苷水解产物、羟基肉桂酸胺和类黄酮三糖苷的生物合成途径中,检测到代谢物缺失与无义突变之间的关联。因此,在不使用分离群体的情况下,直接检测到代谢表型和基因型之间的联系。此外,基因组学可以帮助在代谢组学实验中识别生物合成酶。我们的研究阐明了拟南芥根际的化学组成及其自然变异,这对于微生物群落的吸引和塑造很重要。