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Genetic and Phenotypic Factors Associated with Persistent Shedding of Shiga Toxin-Producing Escherichia coli by Beef Cattle

机译:肉牛吞吐臭氧毒素持续脱落的遗传和表型因素

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Shiga toxin-producing Escherichia coli (STEC) is a leading cause of foodborne infections. Cattle are an important STEC reservoir, although little is known about specific pathogen traits that impact persistence in the farm environment. Hence, we sought to evaluate STEC isolates recovered from beef cattle in a single herd in Michigan. To do this, we collected fecal grabs from 26 cattle and resampled 13 of these animals at 3 additional visits over a 3-month period. In all, 66 STEC isolates were recovered for genomics and biofilm quantification using crystal violet assays. The STEC population was diverse, representing seven serotypes, including O157:H7, O26:H11, and O103:H2, which are commonly associated with human infections. Although a core genome analysis of 2,933 genes grouped isolates into clusters based on serogroups, some isolates within each cluster had variable biofilm levels and virulence gene profiles. Most (77.8%; n ?=?49) isolates harbored stx _(2a), while 38 (57.5%) isolates formed strong biofilms. Isolates belonging to the predominant serogroup O6 ( n ?=?36; 54.5%) were more likely to form strong biofilms, persistently colonize multiple cattle, and be acquired over time. A high-quality single nucleotide polymorphism (SNP) analysis of 33 O6 isolates detected between 0 and 13 single nucleotide polymorphism (SNP) differences between strains, indicating that highly similar strain types were persisting in this herd. Similar findings were observed for other persistent serogroups, although key genes were found to differ among strong and weak biofilm producers. Together, these data highlight the diversity and persistent nature of some STEC types in this important food animal reservoir.IMPORTANCE Food animal reservoirs contribute to Shiga toxin-producing Escherichia coli (STEC) evolution via the acquisition of horizontally acquired elements like Shiga toxin bacteriophages that enhance pathogenicity. In cattle, persistent fecal shedding of STEC contributes to contamination of beef and dairy products and to crops being exposed to contaminated water systems. Hence, identifying factors important for STEC persistence is critical. This longitudinal study enhances our understanding of the genetic diversity of STEC types circulating in a cattle herd and identifies genotypic and phenotypic traits associated with persistence. Key findings demonstrate that multiple STEC types readily persist in and are transmitted across cattle in a shared environment. These dynamics also enhance the persistence of virulence genes that can be transferred between bacterial hosts, resulting in the emergence of novel STEC strain types. Understanding how pathogens persist and diversify in reservoirs is important for guiding new preharvest prevention strategies aimed at reducing foodborne transmission to humans.
机译:Shiga毒素生产的大肠杆菌(StEC)是食源性感染的主要原因。牛是一个重要的Stec水库,但对于影响农场环境中的特定病原体特征几乎是知之甚少。因此,我们试图评估在密歇根州的一群牛群中从牛肉中恢复的STEC分离物。为此,我们从26次牛群中收集粪便,并在3个月的时间内每次进一步访问这些动物。在所有情况下,回收66个STEC分离物用于基因组学和使用晶体紫色测定的生物膜定量。 STEC群体多样化,代表七种血清型,包括O157:H7,O26:H11和O103:H2,其通常与人类感染相关。尽管将2,933个基因的核心基因组分析分离分离为基于血清组的簇,但是每种簇内的一些分离物具有可变的生物膜水平和毒力基因谱。大多数(77.8%; n?= 49)分离有患者的STX _(2A),而38(57.5%)分离物形成强生物膜。属于主要血清o6的分离物更容易形成强生物膜,持续地殖民多牛,随着时间的推移获得。在0至13个单核苷酸多态性(SNP)之间检测到33 o6分离物的高质量单核苷酸多态性(SNP)分析,表明在该群体中持续存在高度相似的应变类型。对于其他持久的血清组,观察到类似的发现,尽管发现势基因在强肌肤弱和弱生物膜生产商之间有不同的不同。这些数据突出了这一重要的食物储层中一些STEC类型的多样性和持续性质。分析食物储层通过获取水平获得的元素(如滋阴毒素)增强致病性。在牛中,STEC的持续粪便脱落有助于牛肉和乳制品的污染以及暴露于受污染水系统的作物。因此,识别对STEC持久性重要的因素至关重要。这种纵向研究提高了我们对牛群中循环循环的STEC类型遗传多样性的理解,并识别与持续存在相关的基因型和表型特征。主要发现表明,多种STEC类型容易持续存在并在共享环境中跨越牛传输。这些动态还增强了可在细菌宿主之间转移的毒力基因的持续存在,导致新的STEC应变类型的出现。了解病原体如何持续,在水库中多元化,对于指导新的预征收策略,旨在将食物载传播减少给人类的新的预征收策略很重要。

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