温度对不同井的矿泉水中铜绿假单胞菌生长的影响:一种预测方法。

IF 5 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Danilo Moreira Vilas Boas, Larissa Pereira Margalho, Héctor Daniel Sierra Canales, Juliana Silva da Graça, Ana Carolina H Ramos, Giancarlo P Saraiva, Wilson J F Lemos, Anderson S Sant'Ana
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引用次数: 0

摘要

本研究旨在评价铜绿假单胞菌(Pseudomonas aeruginosa, PSA)在不同温度(10、12、20、23和30°C)下提取的天然矿泉水中的行为,并通过预测模型计算该微生物的生长动力学参数。在收集时还对水的物理化学特性进行了评估,包括分析40种不同矿物质,以及pH、电导率、氧化还原电位(ORP)、总溶解固体(TDS)、盐度(PSU)和温度(T)等质量参数。PSA在12、20、23和30°C的原始矿泉水中存活;然而,在10°C下没有观察到生长。生长曲线开始于2.5-3 log CFU/mL的初始种群,最终PSA种群范围为3.5 - 4.9 log CFU/mL。在30℃条件下,各孔的最大比生长率(μmax)不同,以P-07孔最高(0.2 h-1), P-08孔次之(0.195 h-1), P-01孔次之(0.133 h-1)。在12°C时,P-01孔生长速率最高(μmax = 0.22 h-1),说明矿物成分对PSA生长有影响。滞后时间(λ)也有变化,在30℃时最小为2.4±0.1 h,在12℃时最大为41.6±0.2 h。根据这些初步估计参数,可以获得5个稳健的二次模型,以描述温度对井中PSA的最大生长速率和滞后期的影响。在20°C和23°C的条件下,对PSA生长参数进行了分层聚类分析和相关图,以验证每口井特定年平均温度下,水的物理化学成分对PSA行为的影响。该分析证实了PSA滞后相位时间与p4 -3、Cl-呈正相关。这些结果强调了定制水质管理策略的必要性,该策略考虑了化学成分和温度,以解决特定的微生物污染风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impact of temperature on the growth of Pseudomonas aeruginosa in mineral waters originated from different wells: A predictive approach.

This study aimed to evaluate the behavior of Pseudomonas aeruginosa (PSA) in natural mineral water sourced from three different extraction wells and stored at various temperatures (10, 12, 20, 23, and 30 °C) to calculate the kinetic growth parameters of this microorganism through predictive modeling. The physicochemical characterization of waters was also evaluated at the time of collection, and included the analysis of 40 different minerals, and quality parameters such as pH, conductivity, oxidation-reduction potential (ORP), total dissolved solids (TDS), salinity (PSU), and temperature (T). PSA survived in raw mineral water incubated at 12, 20, 23, and 30 °C; however, no growth was observed at 10 °C. Growth curves started with an initial population of ∼ 2.5-3 log CFU/mL, and final PSA populations ranged from 3.5 to 4.9 log CFU/mL. The maximum specific growth rate (μmax) at 30 °C varied among the wells, with Well P-07 showing the highest growth rate (0.2 h-1), followed by Well P-08 (0.195 h-1) and well P-01 (0.133 h-1). At 12 °C, well P-01 exhibited the highest growth rate (μmax = 0.22 h-1), indicating a influence of mineral composition in the growth of PSA. The lag time (λ) also varied, with minimum values of 2.4 ± 0.1 h at 30 °C and maximum values of 41.6 ± 0.2 h at 12 °C. From these primary estimated parameters, it was possible to obtain five robust secondary models to describe the influence of temperature on the maximum growth rates and lag phase of PSA in the well. The estimated PSA growth parameters at 20 and 23 °C were subjected to a hierarchical cluster analysis and correlation plots to verify the influence of the physicochemical composition of the waters on the PSA behavior at each well's specific annual average temperature. This analysis confirmed a positive relationship (p < 0.05) between the presence of minerals (Ca, Fe, Sr, Mn, Na) and ions (SO4-3, Cl-) and the PSA lag phase time. These results underscore the need for tailored water quality management strategies that consider chemical composition and temperature to address specific microbial contamination risks.

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来源期刊
International journal of food microbiology
International journal of food microbiology 工程技术-食品科技
CiteScore
10.40
自引率
5.60%
发文量
322
审稿时长
65 days
期刊介绍: The International Journal of Food Microbiology publishes papers dealing with all aspects of food microbiology. Articles must present information that is novel, has high impact and interest, and is of high scientific quality. They should provide scientific or technological advancement in the specific field of interest of the journal and enhance its strong international reputation. Preliminary or confirmatory results as well as contributions not strictly related to food microbiology will not be considered for publication.
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