PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 8, 2026Frontiers in Nutrition0 citationsOpen Access

Cherry microbiota and metabolites with planting altitude of Coffea arabica in Baoshan of China

View Full Paper
XSXiaojing ShenYunnan Agricultural UniversityQWQi WangYibin UniversityJGJing GaoYunnan Agricultural University

Key Points

  • The study aims to analyze how planting altitude affects the microbiota and metabolites in Coffea arabica cherries.
  • Investigated four planting altitudes (1,000 m, 1,200 m, 1,400 m, and 1,600 m).
  • Utilized Illumina-based amplicon sequencing and UPLC-MS/MS for microbiota and metabolite analysis.
  • Analyzed flavor precursors using HPLC method.
  • Significant differences in microbiome characteristics and metabolite profiles across altitudes.
  • Dominant bacterial genera Sphingomonas and Pleomorphomonas showed maximum abundance at 1,400 m.
  • Caffeine, trigonelline, and chlorogenic acid content decreased with increasing planting altitude.

Abstract

The planting altitude of coffee is one of the important influencing factors on coffee quality. The effects of four planting altitudes (1,000 m, AT1; 1,200 m, AT2; 1,400 m, AT3; and 1,600 m, AT4) on the microorganism community and the related metabolites in Coffea arabica cherries were investigated using Illumina-based amplicon sequencing and UPLC-MS/MS technologies, respectively. At tha same time, the contents of main flavor precursor substances (caffeine, trigonelline and chlorogenic acid) were analyzed using HPLC method. The results showed that planting altitude can significant influence the microbiomes’ characteristics and endogenous metabolites of coffee. The dominant bacterial genera, Sphingomonas and Pleomorphomonas were significant differences in four planting altitudes, with the maximum relative abundance in AT3. Cladosporium and Strelitziana were the dominant fungal genera, while Vishniacozyma and Setophoma were also important in AT1, Setophoma and Didymella in AT3. 22 (AT2 vs. AT1), 68 (AT3 vs. AT1), 38 (AT3 vs. AT2), 77 (AT4 vs. AT1), 57 (AT4 vs. AT2), and 116 (AT4 vs. AT3) differentially changed metabolites were found between different planting altitudes, respectively. Moreover, caffeine, trigonelline and chlorogenic acid content was the decreas with planting altitude increased. These changes with planting altitude indicted a potential chance to find more fermentation microorganisms.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Shen et al. (2026) studied this question.

synapsesocial.com/papers/69fd7cd4bfa21ec5bbf05c38https://doi.org/10.3389/fnut.2026.1817512
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Integration of widely targeted metabolomics and the e-tongue reveals the chemical variation and taste quality of Yunnan Arabica coffee prepared using different primary processing methods2024 · 18 citations
  2. 2Exploring the impact of initial moisture content on microbial community and flavor generation in Xiaoqu baijiu fermentation2023 · 59 citations
  3. 3A review on enhancing agricultural intelligence with large language models2025 · 22 citations
  4. 4Microbial Characteristics and Functions in Coffee Fermentation: A Review2024 · 45 citations
  5. 5Effects of harvest season and altitude on the traceability of Fenghuang Dancong tea: Based on stable isotopes and machine learning2025 · 5 citations