FOOD SCIENCE ›› 2026, Vol. 47 ›› Issue (15): 224-239.doi: 10.7506/spkx1002-6630-20251110-070

• Component Analysis • Previous Articles     Next Articles

Integrated Proteomic and Metabolomic Analysis Reveals Characteristic Differences in Flavor Precursors of Pu’er Coffea arabica Green Beans

YANG Caiyi, WU Xudong, LIU Lijing, LI Xuejun, CHEN Siyi, GAO Wenwen, PHẠM Thị Ngọc Mai, LIU Qing, LI Hong, XU Xiaoyu   

  1. (1. College of Agronomy and Biotechnology, Yunnan Agricultural University, Kunming 650201, China; 2. Technology Innovation Center of the State Administration for Market Regulation (Coffee Quality Infrastructure and Industry Services), Pu’er 665099, China; 3. Yunnan College of Modern Coffee Industry, Yunnan Agricultural University, Kunming 650201, China; 4. Faculty of Biotechnology and Food Technology, Thai Nguyen University of Agriculture and Forestry, Thai Nguyen 252160, Vietnam; 5. Agriculture and Food Division, Commonwealth Scientific and Industrial Research Organisation, Canberra 2601, Australia)
  • Online:2026-08-15 Published:2026-08-24

Abstract: To characterize the differences of flavor precursor substances in Coffea arabica beans from Pu’er, Yunnan, a total of 12 C. arabica germplasm resources from the Pu’er production area were systematically evaluated for genetic diversity and metabolic characteristics of flavor precursor by combining simple sequence repeats (SSR) molecular marker technology, analysis of key quality components, and integrated multi-omics strategies. The results showed that the genetic similarity coefficient of the tested materials was 0.72, and they could be divided into three clusters. Although the overall genetic background was relatively narrow, significant intra-species variation still existed. Quality analysis indicated that the contents of primary metabolites (proteins, lipids, carbohydrates, etc.) and secondary metabolites (caffeine, chlorogenic acid, etc.) differed significantly, and there were synergistic or antagonistic relationships among metabolites. Comparative proteomic and metabolomic analysis of two representative differential Catimor materials, FJ240001 and FJ240024, identified 459 differentially expressed proteins and 146 differentially accumulated metabolites, respectively, which were mainly enriched in primary metabolic pathways such as amino acid, lipid, and carbohydrate metabolism, and nine common pathways including ABC transporters and purine metabolism were also discovered. Random forest analysis selected 30 core biomarkers, and the correlation network revealed functionally independent metabolic modules formed by these markers. This study elucidates the metabolic foundation of flavor precursor formation in Pu’er C. arabica at the molecular level, providing a theoretical basis for targeted quality improvement and germplasm innovation.

Key words: Coffea arabica; flavor precursor substances; genetic diversity; omics; Pu’er

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