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March 29, 2026Agriculture2 citationsOpen Access

From Germplasm to Cup: A Comprehensive Review of the Genetic, Environmental, and Postharvest Determinants of Coffee Quality and Their Interactions

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GYGuibing YangGuangxi Subtropical Crops Research InstituteQCQing-Jing CenGuangxi Subtropical Crops Research InstituteZBZhen-jun BinGuangxi Subtropical Crops Research Institute

Key Points

  • The research aims to explore the different factors affecting coffee quality, emphasizing their complex interactions.
  • Comprehensive literature review on coffee quality determinants.
  • Analysis of the genetic differences between Coffea arabica and Coffea canephora.
  • Examination of environmental conditions such as altitude and shade on coffee quality.
  • Discussion of postharvest processing methods and their impacts on flavor.
  • Identified key genes influencing lipid metabolism vital for coffee flavor.
  • Altitude and shade were found to affect metabolic pathways and sugar accumulation.
  • Postharvest methods like natural and washed processing significantly impact sensory attributes.
  • MYB proteins were highlighted for their role in caffeine and flavor precursor regulation.

Abstract

Premium coffee depends on high-quality beans, influenced by a combination of genetic, environmental, and postharvest factors. This review summarizes the mechanisms underlying coffee bean quality, with an emphasis on the genetic differences between Coffea arabica and Coffea canephora, as well as the integrated roles of environmental conditions, agronomic practices, including nutrient and shade management, and postharvest processing technologies. The allotetraploid genome of C. arabica is influenced by homoeologous exchanges and subgenome-biased expression (such as decreased DXMT activity that reduces caffeine), which contribute to its complex flavor profile. Key lipid metabolism genes, particularly FADS2, play a critical role in regulating lipid metabolism. The effects of altitude (1600–2000 m) and shade influence various metabolic pathways. Cooler temperatures promote sugar accumulation, while excessive shading hinders carbon assimilation and the development of flavor precursors. Postharvest processing significantly influences flavor, where microbial or enzymatic treatments enhance sensory attributes. In addition, methods like natural, washed, or honey processing modulate various nonvolatile compounds, impacting lipid emulsification and aroma retention. Multi-omics analyses suggest that MYB proteins play a key role in regulating pathways involved in caffeine, chlorogenic acids, and terpenes. Effective hermetic packaging prevents oxidation, thereby preserving freshness. Overall, superior coffee quality stems from synergistic interactions across genetic, ecological, agronomic, and processing factors, highlighting the need for the development of an integrated strategy to support the sustainable production of premium coffee.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2b8de0f0f753b39d175https://doi.org/10.3390/agriculture16070739
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