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李斯特菌 rpsU 应激抗性变体由于富集偏差而变得代表性不足。

Stress resistant rpsU variants of Listeria monocytogenes can become underrepresented due to enrichment bias.

机构信息

Food Microbiology, Wageningen University & Research, Wageningen, the Netherlands.

State Key Laboratory of Conservation and Utilization of Bio-resources in Yunnan, Center for Life Sciences, School of Life Sciences, Yunnan University, Kunming, China.

出版信息

Int J Food Microbiol. 2024 May 2;416:110680. doi: 10.1016/j.ijfoodmicro.2024.110680. Epub 2024 Mar 13.

Abstract

Population heterogeneity is an important component of the survival mechanism of Listeria monocytogenes, leading to cells in a population with diverse stress resistance levels. We previously demonstrated that several ribosomal gene rpsU mutations enhanced the stress resistance of L. monocytogenes and lowered the growth rate at 30 °C and lower temperatures. This study investigated whether these switches in phenotypes could result in a bias in strain detection when standard enrichment-based procedures are applied to a variety of strains. Detailed growth kinetics analysis of L. monocytogenes strains were performed, including the LO28 wild type (WT) and rpsU variants V14 and V15, during two commonly used enrichment-based procedures described in the ISO 11290-1:2017 and the U.S. Food and Drug Administration Bacteriological Analytical Manual (BAM). WT had a higher growth rate than the variants during the enrichment processes. Co-culture growth kinetics predictions for WT and rpsU variants showed that the detection chances of the rpsU mutants were reduced from ∼52 % to less than ∼13 % and ∼ 3 % during ISO and BAM enrichment, respectively, which were further validated through subsequent qPCR experiments. Higher heat stress resistance of rpsU variants did not lead to faster recovery during enrichment after heat treatment, and different pre-culturing temperatures before heat treatment did not significantly affect the growth kinetics of the WT and rpsU variants. Additionally, post-enrichment isolation procedures involving streaking on selective agar plates did not show preferences for isolating WT or rpsU variants nor affect the detection chance of rpsU variants. The difference in detection chance suggests that the selective enrichment procedures inadequately represent the genotypic diversity present in a sample. Hence, the enrichment bias during the L. monocytogenes isolation procedure may contribute to the observed underrepresentation of the rpsU mutation among L. monocytogenes isolates deposited in publicly available genome databases. The underrepresentation of rpsU mutants in our findings suggests that biases introduced by standard isolation and enrichment procedures could inadvertently skew our understanding of genetic diversity when relying on public databases.

摘要

种群异质性是李斯特菌生存机制的一个重要组成部分,导致种群中的细胞具有不同的应激抗性水平。我们之前的研究表明,几个核糖体基因 rpsU 突变增强了李斯特菌的应激抗性,并降低了 30°C 及更低温度下的生长速度。本研究探讨了在应用标准基于富集的程序检测各种菌株时,这些表型转变是否会导致菌株检测出现偏差。对李斯特菌菌株进行了详细的生长动力学分析,包括 LO28 野生型 (WT) 和 rpsU 变体 V14 和 V15,这些菌株在 ISO 11290-1:2017 和美国食品和药物管理局细菌分析手册 (BAM) 中描述的两种常用基于富集的程序下进行。在富集过程中,WT 的生长速度高于变体。WT 和 rpsU 变体的共培养生长动力学预测表明,在 ISO 和 BAM 富集过程中,rpsU 突变体的检测几率分别从约 52%降低到小于约 13%和约 3%,随后的 qPCR 实验进一步验证了这一点。rpsU 变体的更高耐热性并没有导致热处理后富集过程中更快的恢复,并且热预处理前的不同预培养温度对 WT 和 rpsU 变体的生长动力学没有显著影响。此外,涉及在选择性琼脂平板上划线的富集后分离程序既没有表现出对分离 WT 或 rpsU 变体的偏好,也没有影响 rpsU 变体的检测几率。检测几率的差异表明,选择性富集程序不能充分代表样品中存在的基因型多样性。因此,在李斯特菌分离过程中富集的选择性偏差可能导致在公开可用的基因组数据库中观察到的 rpsU 突变的代表性不足。rpsU 突变体在我们研究中的代表性不足表明,在依赖公共数据库时,标准分离和富集程序引入的偏差可能会无意中影响我们对遗传多样性的理解。

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