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Safety Assessment Systems for Microbial Starters Derived from Fermented Foods

  • Heo, Sojeong (Department of Food and Nutrition, Dongduk Women's University) ;
  • Kim, Tao (Department of Food and Nutrition, Dongduk Women's University) ;
  • Na, Hong-Eun (Department of Food and Nutrition, Dongduk Women's University) ;
  • Lee, Gawon (Department of Food and Nutrition, Dongduk Women's University) ;
  • Park, Jung-Hyun (Department of Food and Nutrition, Dongduk Women's University) ;
  • Park, Hee-Jung (Department of Food and Nutrition, Sangmyung University) ;
  • Jeong, Do-Won (Department of Food and Nutrition, Dongduk Women's University)
  • Received : 2022.07.20
  • Accepted : 2022.09.01
  • Published : 2022.10.28

Abstract

Microorganisms involved in food fermentation not only improve the aroma and taste of the food, but also enhance its preservation. Thus, they are added as starter cultures to boost the final product quality of commercial fermented foods. Although these microorganisms originate from fermented foods and have a long history of consumption, the European Union recently applied the concept of Qualified presumption of Safety (QPS), which is a safety evaluation system for microorganisms used in food or feed in Europe. The QPS system is a species-level safety system and shares results with the European Novel Food System, a strain-level safety evaluation system. In the United States, microorganisms added to fermented foods are considered as food additives or Generally Recognized as Safe substance. In Korea, food microbe lists are presented at the species level. Moreover, the nation has established a strain-oriented evaluation system that applies temporary safety evaluation methods for food raw materials as well as new raw materials. However, when it comes to microorganisms isolated from traditional fermented foods and other fermented food products, there is no definition of the term "species," and there is a lack of an evaluation system at the species level. Therefore, such an evaluation system for microbial species used in Korean fermented foods is necessary.

Keywords

Acknowledgement

This work was supported by the National Research Foundation of Korea (NRF) [NRF-2022M3A9I3082364]. We thank Edanz (www.edanz.com/ac) for editing a draft of this manuscript.

References

  1. Smit G, Smit BA, Engels WJ. 2005. Flavour formation by lactic acid bacteria and biochemical flavour profiling of cheese products. FEMS Microbiol. Rev. 29: 591-610. https://doi.org/10.1016/j.fmrre.2005.04.002
  2. Adams MR, Nicolaides L. 1997. Review of the sensitivity of different foodborne pathogens to fermentation. Food Control 8: 227-239. https://doi.org/10.1016/S0956-7135(97)00016-9
  3. Holzapfel W. 1997. Use of starter cultures in fermentation on a household scale. Food Control 8: 241-258. https://doi.org/10.1016/S0956-7135(97)00017-0
  4. Leroy F, De Vuyst, L. 2004. Lactic acid bacteria as functional starter cultures for the food fermentation industry. Trends Food Sci. Technol. 15: 67-78. https://doi.org/10.1016/j.tifs.2003.09.004
  5. EFSA. 2007. Introduction of a Qualified Presumption of Safety (QPS) approach for assessment of selected microorganisms referred to EFSA. EFSA J. 587: 1-16.
  6. EFSA. 2004. EFSA Scientific colloquium. Summary report. QPS: qualified presumption of safety of microorganisms in Food and Feed. European Food Safety Authority. Brussels, Belgium.
  7. EFSA. 2005. Opinion of the scientific committee on a request from EFSA related to a generic approach to the safety assessment by EFSA of microorganisms used in food/feed and the production of food/feed additives. EFSA J. 226: 1-12.
  8. EFSA. 2009. Scientific opinion on the maintenance of the list of QPS microorganisms intentionally added to food or feed. EFSA J. 7: 1431-1523. https://doi.org/10.2903/j.efsa.2009.1431
  9. EFSA. 2013. Scientific opinion on the maintenance of the list of QPS biological agents intentionally added to food and feed (2013 update). EFSA J. 11: 3449.
  10. EFSA. 2017. Scientific opinion on the update of the list of QPS-recommended biological agents intentionally added to food or feed as notified to EFSA. EFSA J. 15: 4664.
  11. EFSA. 2020. Scientific opinion on the update of the list of QPS-recommended biological agents intentionally added to food or feed as notified to EFSA (2017-2019). EFSA J. 18: 5966.
  12. EFSA. 2008. The maintenance of the list of QPS microorganisms intentionally added to food or feed. EFSA J. 923: 1-48.
  13. EFSA. 2010. Scientific opinion on the maintenance of the list of QPS biological agents intentionally added to food and feed (2010 update). EFSA J. 8: 1944.
  14. EFSA. 2011. Scientific opinion on the maintenance of the list of QPS biological agents intentionally added to food and feed (2011 update). EFSA J. 9: 2497. https://doi.org/10.2903/j.efsa.2011.2497
  15. EFSA. 2012. Scientific opinion on the maintenance of the list of QPS biological agents intentionally added to food and feed (2012 update). EFSA J. 10: 3020.
  16. EFSA. 2011. Technical guidance on the assessment of the toxigenic potential of Bacillus species used in animal nutrition. EFSA J. 9: 2445.
  17. EFSA. 2012. Guidance on the assessment of bacterial susceptibility to antimicrobials of human and veterinary importance. EFSA J. 10: 2740-2749.
  18. EFSA. 2017. Safety of pyrroloquinoline quinone disodium salt as a novel food pursuant to regulation (EC) No 258/97. EFSA J. 15: 5058.
  19. Lee S-W. 1988. The historical review of traditional Korea fermented foods. Korean J. Dietary Culture 3: 331-339.
  20. Shin D-W. 2020. Korean traditional fermented foods and their future approach. Food Sci. Ind. 53: 148-165.
  21. Nam YD, Lee SY, Lim SI. 2012. Microbial community analysis of Korean soybean pastes by next-generation sequencing. Int. J. Food Microbiol. 155: 36-42. https://doi.org/10.1016/j.ijfoodmicro.2012.01.013
  22. Kim TW, Lee JH, Kim SE, Park MH, Chang HC, Kim HY. 2009. Analysis of microbial communities in doenjang, a Korean fermented soybean paste, using nested PCR-denaturing gradient gel electrophoresis. Int. J. Food Microbiol. 131: 265-271. https://doi.org/10.1016/j.ijfoodmicro.2009.03.001
  23. Jeong DW, Kim HR, Jung G, Han S, Kim CT, Lee JH. 2014. Bacterial community migration in the ripening of doenjang, a traditional Korean fermented soybean food. J. Microbiol. Biotechnol. 24: 648-660. https://doi.org/10.4014/jmb.1401.01009
  24. Cho KM, Seo WT. 2007. Bacterial diversity in Korean traditional soybean fermented foods (doenjang and ganjang) by 16S rRNA gene sequence analysis. Food Sci. Biotechnol. 16: 320-324.
  25. Hong Y, Jung HJ, Han SK, Kim HY. 2016. Potentiality of Bacillus amyloliquefaciens KFCC11574P isolated from Korean traditional doenjang as a starter in the production of functional soya bean paste. Int. J. Food Sci. Technol. 51: 105-113. https://doi.org/10.1111/ijfs.12973
  26. Jung JY, Lee SH, Jeon CO. 2014. Microbial community dynamics during fermentation of doenjang-meju, traditional Korean fermented soybean. Int. J. Food Microbiol. 185: 112-120. https://doi.org/10.1016/j.ijfoodmicro.2014.06.003
  27. Jung WY, Jung JY, Lee HJ, Jeon CO. 2016. Functional characterization of bacterial communities responsible for fermentation of doenjang: a traditional Korean fermented soybean paste. Front. Microbiol. 7: 827.
  28. Rabbee MF, Ali MS, Choi J, Hwang BS, Jeong SC, Baek KH. 2019. Bacillus velezensis: a valuable member of bioactive molecules within plant microbiomes. Molecules 24: 1046. https://doi.org/10.3390/molecules24061046