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Updated: Aug 26, 2026

High Throughput Quantitative Expression Screening and Purification Applied to Recombinant Disulfide-rich Venom Proteins Produced in E. coli
Published on: July 30, 2014
Sensory quality of F. venenatum TB01 protein: Implications for next generation alternative proteins
Zilu Wang1, Baosong Wang1, Ziyan Yue1
1Key Laboratory of Geriatric Nutrition and Health (Beijing Technology and Business University), Ministry of Education, School of Food and Health, Beijing Technology and Business University, Beijing 100048, China.
Abstract:
The growing demand for sustainable food systems and alternative proteins has positioned mycoprotein as a promising food ingredient. In this study, the textural properties and odor profiles of F. venenatum TB01 protein were systematically characterized to investigate the differences with soy protein and pork through multiple approaches. The naturally formed hyphal network of F. venenatum protein forms a fibrous microstructure like animal muscle, resulting in a relatively firm texture. Compared with soy protein and pork, F. venenatum protein exhibited minimal off-odor and featured a mild mushroom odor. Specifically, 40 compounds were identified by GC-MS across all samples, of which 12 odor activity compounds were detected in F. venenatum protein. Notably, their concentration was considerably lower than those found in soy protein. Correlation analyses across different protein types consistently showed that meaty aroma was positively correlated with hexanal and (E,E)-2,4-decadienal, while off-odors were negatively correlated with these compounds. Finally, this study highlights the potential of F. venenatum protein as a promising ingredient with minimal off-odor and desirable textural properties, together with favorable nutritional attributes that may contribute to healthier food products. These findings provided a scientific basis for its application in next-generation alternative proteins and functional foods.
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