China Dairy ›› 2025, Vol. 0 ›› Issue (6): 119-126.doi: 10.12377/1671-4393.25.06.20

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Study on the Growth Kinetics of Pseudomonas spp. cryophilic bacteria in Raw Milk Based on Meta-analysis

JIANG Chunling1, QI Bing1, ZHU Huajian2, MA Yingqing1, CHEN Rouhan1, YANG Xiaojun1, DENG Bo1,*   

  1. 1 Shanghai Agricultural Products Quality and Safety Center, Shanghai 201708;
    2 University of Shanghai for Science and Technology, Shanghai 200093
  • Online:2025-06-25 Published:2025-07-04

Abstract: Pseudomonas spp. is one of the most common genera of cryophilic bacteria in raw milk,and in order to explore the main factors affecting the kinetic parameters of Pseudomonas spp.,this study carried out a meta-analysis by quantitatively integrating the kinetic parameters of microorganisms and quantifying the variability of the strains.By statistically analyzing the growth parameters of more than 750 Pseudomonas spp. under different conditions and predicting their minimum growth temperatures(Tmin) based on the square root model,the results showed that the overall Tmin value of Pseudomonas spp. was -4.06 ℃,with the Tmin of strains 1248 and E52 in the culture medium being -5.38 ℃ and -6.36 ℃,respectively.In a low-temperature environment,the high initial inoculum size (Y0,log CFU/mL) in UHT milk significantly shortened the growth retardation period,allowing the microorganisms to enter the logarithmic growth period(λ) more quickly even at lower temperatures.The distribution of maximum specific growth rate(μmax) under the combined effect of temperature,pH value, activity water(Aw) and NaCl concentration ranged from 0.04 h-1 to 1.63 h-1.In addition,NaCl concentration(1.0% to 7.5%) had a significant inhibitory effect on the growth of Pseudomonas spp..This study provided important reference basis for the safety,production optimisation and quality control during the production of milk and dairy products.

Key words: Pseudomonas spp., meta-analysis, growth, inactivation, modelling

[1] 张凯文. 烟台市食品生产企业加工环节的安全问题及对策研究[D].烟台:烟台大学,2024.
[2] 赵瑾德,张淑丽,贺凯茹,等.灭菌乳中枯草芽孢杆菌危害与控制研究进展[J].乳业科学与技术,2024,47(4):59-65.
[3] 周彬静. 基于高光谱信息的猪肉荧光假单胞菌和热杀索丝菌的生长模型构建研究[D].南京:南京农业大学,2022.
[4] 全美淋,李飞,刘金燕,等.抗体技术在食源性致病菌快速检测中的研究进展[J].生物工程学报,2024,40(11):3985-4005.
[5] 姜肇旭. 沙门氏菌基因组分型及对秀丽隐杆线虫致病性研究[D].济南:齐鲁工业大学,2024.
[6] 方太松,王军,王晔茹,等.我国熟肉制品中金黄色葡萄球菌污染状况Meta分析[J].生物加工过程,2020,18(3):386-391.
[7] 宋星霖. 冷链猪肉环境信息检测及货架期预测研究[D].杭州:浙江大学,2015.
[8] 张莉. NICU早产儿医院感染相关危险因素的Meta分析[D].杭州:浙江大学,2017.
[9] 郭全友,朱彦祺,姜朝军,等.环境因子对轻腌大黄鱼中溶藻弧菌生长/非生长界面的影响[J].农业工程学报,2018,34(3):292-299.
[10] 杜兵耀. 生乳中微生物风险关键点分析及假单胞菌特征研究[D].兰州:兰州大学,2022.
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