Department of Life Sciences and Systems Biology, University of Torino, Viale Mattioli 25, 10125, Torino, Italy.
Department of Agricultural, Forest and Food Sciences, University of Torino, Largo P. Braccini 2, 10095, Grugliasco, Italy.
New Phytol. 2023 Jul;239(1):271-285. doi: 10.1111/nph.18946. Epub 2023 May 11.
Coffee is one of the most traded commodities world-wide. As with 70% of land plants, coffee is associated with arbuscular mycorrhizal (AM) fungi, but the molecular bases of this interaction are unknown. We studied the mycorrhizal phenotype of two commercially important Coffea arabica cultivars ('Typica National' and 'Catimor Amarillo'), upon Funnelliformis mosseae colonisation grown under phosphorus limitation, using an integrated functional approach based on multi-omics, physiology and biochemistry. The two cultivars revealed a strong biomass increase upon mycorrhization, even at low level of fungal colonisation, improving photosynthetic efficiency and plant nutrition. The more important iconic markers of AM symbiosis were activated: We detected two gene copies of AM-inducible phosphate (Pt4), ammonium (AM2) and nitrate (NPF4.5) transporters, which were identified as belonging to the C. arabica parental species (C. canephora and C. eugenioides) with both copies being upregulated. Transcriptomics data were confirmed by ions and metabolomics analyses, which highlighted an increased amount of glucose, fructose and flavonoid glycosides. In conclusion, both coffee cultivars revealed a high responsiveness to the AM fungus along their root-shoot axis, showing a clear-cut re-organisation of the major metabolic pathways, which involve nutrient acquisition, carbon fixation, and primary and secondary metabolism.
咖啡是全球交易量最大的商品之一。与 70%的陆地植物一样,咖啡与丛枝菌根(AM)真菌有关,但这种相互作用的分子基础尚不清楚。我们研究了两种商业上重要的阿拉比卡咖啡品种('Typica National'和'Catimor Amarillo')在低磷条件下丛枝菌根真菌 Funnelliformis mosseae 定殖下的菌根表型,采用基于多组学、生理学和生物化学的综合功能方法。这两个品种在菌根化后表现出很强的生物量增加,即使在真菌定殖水平较低的情况下,也能提高光合作用效率和植物营养。更重要的标志性 AM 共生标记被激活:我们检测到两个 AM 诱导性磷酸盐(Pt4)、铵(AM2)和硝酸盐(NPF4.5)转运体的基因拷贝,它们被鉴定为属于咖啡属的亲种(小粒咖啡和粗壮咖啡),两个拷贝都被上调。转录组学数据得到了离子和代谢组学分析的证实,这些分析突出显示了葡萄糖、果糖和类黄酮糖苷的含量增加。总之,两种咖啡品种在根-茎轴上都表现出对 AM 真菌的高反应性,显示出主要代谢途径的明显重新组织,这些途径涉及养分吸收、碳固定以及初级和次级代谢。