FOOD SCIENCE ›› 2026, Vol. 47 ›› Issue (14): 84-93.doi: 10.7506/spkx1002-6630-20251231-288

• Basic Research • Previous Articles    

Construction of a Sensory Attribute System for Red Fuji Apples and Analysis of Sensory Quality Differences among Typical Production Regions

WANG Wenxin, JIANG Mingzhu, ZHAO Lei, XIANG Yake, YUN Zhenyu, ZHU Lixia, ZHONG Kui, WANG Houyin, ZHANG Yao, SHI Bolin, SUN Aidong   

  1. (1. Key Laboratory of Food Sensory Analysis, State Administration for Market Regulation, Beijing 102200, China; 2. Division of Agriculture and Biotechnology Standardization, China National Institute of Standardization, Beijing 100191, China; 3. Academy of National Food and Strategic Reserves Administration, Beijing 100037, China; 4. School of Biological Sciences and Technology, Beijing Forestry University, Beijing 100091, China; 5. College of Food Science and Engineering, Tarim University, Aral 843300, China)
  • Published:2026-08-24

Abstract: This study analyzed 25 red Fuji apple samples collected from four typical production regions in China (the Bohai Bay Rim Region, the Old Course of the Yellow River, characteristic production regions, and Northwestern Plateau) to develop a standardized sensory attribute system and to characterize sensory quality differences among and within production regions. Through primary screening based on geometric mean values and secondary screening by multivariate statistical analysis, a total of 24 core sensory descriptors were identified, encompassing appearance (8), taste (3), aroma (5), and texture (8). Quantitative descriptive analysis (QDA) based on this sensory framework revealed significant differences among apples from different production regions in sweetness-acidity balance, aroma characteristics, and textural attributes. Overall, apples from the characteristic production regions showed higher sweetness, larger watercore areas, and stronger aroma intensity. Representative samples from Yantai in the Bohai Bay Rim Region (YT-01), Lingbao in the Old Course of the Yellow River (LB-01), Aksu in the characteristic production regions (AKS-02), and Liquan in the Northwestern Plateau (LQ) exhibited the best overall sensory quality. The sensory attribute system developed in this study provides a scientific basis for the quality evaluation, regional characterization, and product grading of red Fuji apples.

Key words: red Fuji apple; sensory wheel; multivariate analysis; quantitative descriptive analysis; regional differences

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