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Updated: Mar 14, 2026

Profiling Volatile Compounds in Blackcurrant Fruit using Headspace Solid-Phase Microextraction Coupled to Gas Chromatography-Mass Spectrometry
Published on: June 9, 2021
Integrative strategies for strawberry flavor optimization: From molecular biosynthesis to data-driven quality control
Qian Luo1, Ting Li2, Huanlu Song2
1Institute of Quality Standard and Testing Technology, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, PR China; Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, and Laboratory of Risk Assessment for Processed Agro-food Quality and Safety, Ministry of Agriculture (Beijing), Beijing 100193, PR China.
None:
Strawberry flavor directly influences consumer acceptance, yet its consistency and quality are often compromised along the field-to-fork continuum due to limited understanding of the biosynthesis and retention of volatile organic compounds (VOCs). This review synthesizes recent insights into the formation and regulation of VOCs, highlighting how VOC profiles are shaped by fruit ontogeny, genotype-environment interactions, cultivation practices, postharvest management and processing. Based on these insights, we propose a production-spanning intervention strategy to stabilize flavor. High-throughput profiling powered by machine learning integrates sensory and consumer datasets into predictive models of flavor phenotypes, identifying critical control points across the chain. Complementary molecular tagging enables real-time, in situ monitoring of flavor dynamics. Expanding this strategy to systematically incorporate NVOCs will be critical for achieving a more integrative understanding of strawberry flavor. Collectively, these data-driven approaches transform empirical flavor management into a quantifiable and scalable paradigm bridging chemistry, technology, and consumer perception.
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