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从多种益生菌产品中分离出的肠球菌的毒力特征和抗生素耐药性的新见解

New Insights into the Virulence Traits and Antibiotic Resistance of Enterococci Isolated from Diverse Probiotic Products.

作者信息

Deng Fengru, Chen Yunsheng, Zhou Xiaoyu, Xiao Huiying, Sun Tianyu, Deng Yiqun, Wen Jikai

机构信息

Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou 510642, Guangdong, China.

Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs, South China Agricultural University, Guangzhou 510642, Guangdong, China.

出版信息

Microorganisms. 2021 Mar 31;9(4):726. doi: 10.3390/microorganisms9040726.

Abstract

The GRAS (generally recognized as safe) status of has not yet been authenticated, but enterococci, as probiotics, have been increasingly applied in human healthcare and animal husbandry, for instance as a dietary supplement, feed additive, or growth promotor. The food chain is the important route for introducing enterococci into the human gut. The pathogenicity of from probiotic products requires investigation. In the study, 110 commercial probiotic products used for human, animal, aquaculture, and plants were examined, among which 36 enterococci were identified, including 31 from , 2 from , 2 from , and 1 from . Strikingly, 28 of the 36 enterococci isolated from probiotics here did not mention the presence of in the labeled ingredients, and no isolates were found from 5 animal probiotics that were labeled with the genus. In total, 35 of the 110 products exhibited hemolysis, including 5 (10.6%) human probiotics, 14 (41.2%) animal probiotics, 8 (57.1%) aquaculture probiotics, and 8 (53.3%) plant probiotics. The detection rates of virulence factors associated with adhesion, antiphagocytosis, exoenzyme, biofilm, and other putative virulence markers (PVM) in 36 enterococci were 94.4%, 91.7%, 5.6%, 94.4% and 8.3%. Twenty-six of the 36 isolated strains exhibited biofilm formation ability, where 25 strains (69.4%) and one (2.8%) were strong and weak biofilm producers, respectively. We analyzed the resistance rates against erythromycin (97%), vancomycin and ciprofloxacin (8%), tetracycline (3%), and high-level aminoglycosides (0%), respectively. High detection rates of (86%) and (86%) were observed, followed by (8%), (3%). The Tn--like integrative conjugative element (ICE) was identified in , exhibiting resistance to tetracycline (64 μg/mL). Seven probiotic and , as active ingredients in human probiotics, shared the same STs (sequence types) and were distinct from the STs of other contaminated or mislabeled enterococci, indicating that two particular STs belonged to native probiotic isolates. These findings advocate appropriate assessments of enterococci when used in probiotics.

摘要

[具体微生物名称]的“一般认为安全(GRAS)”地位尚未得到认证,但肠球菌作为益生菌已越来越多地应用于人类医疗保健和畜牧业,例如作为膳食补充剂、饲料添加剂或生长促进剂。食物链是肠球菌进入人体肠道的重要途径。益生菌产品中[具体微生物名称]的致病性需要进行调查。在该研究中,对110种用于人类、动物、水产养殖和植物的商业益生菌产品进行了检测,其中鉴定出36株肠球菌,包括来自[具体来源1]的31株、来自[具体来源2]的2株、来自[具体来源3]的2株和来自[具体来源4]的1株。令人惊讶的是,从这里的益生菌中分离出的36株肠球菌中有28株在标签成分中未提及[具体微生物名称]的存在,并且在5种标记有该属的动物益生菌中未发现[具体微生物名称]分离株。在110种产品中,共有35种表现出溶血现象,包括5种(10.6%)人类益生菌、14种(41.2%)动物益生菌、8种(57.1%)水产养殖益生菌和8种(53.3%)植物益生菌。36株肠球菌中与黏附、抗吞噬作用、外酶、生物膜及其他假定毒力标记(PVM)相关的毒力因子检测率分别为94.4%、91.7%、5.6%、94.4%和8.3%。36株分离菌株中有26株表现出生物膜形成能力,其中25株(69.4%)和1株(2.8%)分别为强生物膜产生菌和弱生物膜产生菌。我们分别分析了对红霉素(97%)、万古霉素和环丙沙星(8%)、四环素(3%)和高水平氨基糖苷类(0%)的耐药率。观察到[具体耐药基因1](86%)和[具体耐药基因2](86%)的检出率较高,其次是[具体耐药基因3](8%)、[具体耐药基因4](3%)。在[具体菌株名称]中鉴定出了类似Tn-的整合接合元件(ICE),对四环素表现出耐药性(64μg/mL)。7种益生菌[具体菌株名称1]和[具体菌株名称2]作为人类益生菌中的活性成分,具有相同的序列类型(STs),并且与其他受污染或标签错误的肠球菌的STs不同,表明这两种特定的STs属于天然益生菌分离株。这些发现提倡在将肠球菌用于益生菌时进行适当评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ba8/8065695/66de0f353c53/microorganisms-09-00726-g001.jpg

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