Effects of Lactic Acid Bacteria and Yeast Co-fermentation on the Physicochemical Properties and Storage Period Quality of Mustard

被引:0
|
作者
Tang R. [1 ]
Chen J. [1 ]
Yang H. [2 ]
Yang J. [2 ]
Zhou Y. [2 ]
Liu B. [1 ]
Shi Q. [1 ]
Li H. [3 ]
机构
[1] Institute of Agro-product Processing, Yunnan Academy of Agricultural Sciences, Kunming
[2] Yunnan Yimen Shanlixiang Food Co., Ltd., Yuxi
[3] College of Food Science and Technology, Yunnan Agricultural University, Kunming
关键词
co-fermentation; Kazachstania exigua; Leuconostoc mesenteroides; quality; storage period;
D O I
10.13386/j.issn1002-0306.2023070065
中图分类号
学科分类号
摘要
In order to explore the effects of co-fermentation of Leuconostoc mesenteroides L5 and Kazachstania exigua M1 on the physicochemical properties of low-salt and low-acid fermented mustard during fermentation process and storage period, the co-fermentation group was compared with a natural fermentation group and a fermentation group solely with the lactic acid bacterium L5. The pH, total acid, total ester and nitrite content etc. during the fermentation process and storage period were measured. The texture and color difference of fermented mature paocai and accelerated preserved paocai were analyzed alongside sensory evaluation. The results showed that L5 and M1 co-fermented paocai contained nitrite as lowest as 1.45 mg/kg, and total acid (2.46 g/kg) was significantly lower than that of the other two groups (P<0.05), respectively, total ester (3.79 g/kg) and score in sensory test were significantly higher than that of the other two groups (P<0.05). After the paocai product kept at 37 ℃ for 75 days for accelerated storage, the total acid content only increased to 3.10 g/kg, the total ester content increased to 4.16 g/kg, whereas the nitrite content further decreased to 0.91 mg/kg. Its low acid state and good sensory, texture and color qualities were maintained. It was proved that the addition of suitable yeast and lactic acid bacteria for joint fermentation could not only improve the flavor and quality of paocai, but also play a certain role in maintaining its preservability. © 2024 Editorial Department of Science and Technology of Food Science. All rights reserved.
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页码:141 / 148
页数:7
相关论文
共 38 条
  • [1] LIU Haodong, YANG Yijin, LIN Gaojie, Et al., Research progress on interaction patterns between yeast and lactic acid bacteria and their application in fermented foods[J], Food Science, 43, 9, (2022)
  • [2] XU Z B, LU Z R, SOTEYOME T, Et al., Polymicrobial interaction between Lactobacillus and Saccharomyces cerevisiae:Coexistence-relevant mechanisms[J], Critical Reviews in Microbiology, 47, 3, (2021)
  • [3] LIAO Yimo, AO Xiaolin, KANG Haiyan, Et al., Research progress on the interaction mechanism between lactic acid bacteria and yeast in traditional fermented foods[J], Food and Fermentation Industries, 49, 3, (2023)
  • [4] DUAN Xiaoguo, LI Bo, HE Yinfeng, Progress in symbiotic mechanism between lactic acid bacteria and yeast[J], Microbiology China, 44, 8, (2017)
  • [5] CHEN Ante, ZHANG Wenjuan, ZHANG Xi, Et al., Effects of Saccharomyces cerevisiae on pickled radishes during fermentation[J], Food and Fermentation Industries, 43, 6, (2017)
  • [6] CHEN Cai, ZHANG Ming, FU Zhuxian, Et al., Screening a combination of lactic acid bacteria and yeast and application in traditional pickle[J], Science and Technology of Food Industry, 44, 16, (2023)
  • [7] DENG Jie, XIE Si, WANG Haowen, Et al., Browning mechanism of sauerkraut during shelf life[J], The Food Industry, 44, 1, (2023)
  • [8] CHUNG Y B, SONG H, JO K, Et al., Effect of ascorbic acid and citric acid on the quality of salted Chinese cabbage during storage[J], Food Science and Biotechnology, 30, 2, (2021)
  • [9] FENG Wanyu, Research on characteristics of common preservatives in food additives[J], China Food Safety Magazine, 2022, 18
  • [10] WANG Xiangyang, GONG Jiahui, YU Xingwei, The effect of four chemical preservatives on lactic acid bacteria and acid production of pick les[J], China Condiment, 40, 9, (2015)