鸡肉产品中多药耐药肠炎沙门氏菌明尼苏达血清克隆的基因组调查。

Jiayi Huang, Khaloud O Alzahrani, Ge Zhou, Shahad A Alsalman, Amani T Alsufyani, Nourah M Alotaibi, Saleh I Al-Akeel, Abdullah A Alajlan, Lenah E Mukhtar, Ayidh M Almansour, Fahad M Al-Reshoodi, Malfi S Al Rashidy, Shaykhah Alhussain, Afnan Althobaiti, Manal Almusa, Talah Almadi, Nouf Almutairi, Abdulrahman Alzauhair, Meshari A Alhadlaq, Elaf Alshodokhi, Ashwag Alhamed, Abdulmohsen L AlHarbi, Manuel Banzhaf, Mathew Milner, Mohammad AlArawi, Sulaiman M Alajel, Danesh Moradigaravand
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引用次数: 0

摘要

明尼苏达肠沙门氏菌血清型(S. Minnesota)是一种在家禽供应链中持续存在的新兴血清型,可能在人类中引起暴发。了解其种群基因组学对于设计预防措施至关重要。我们通过分析沙特阿拉伯禽类中分离的259株S. Minnesota进行了基因组监测研究。分析了这些分离株的全基因组测序数据,以表征新出现的克隆以及潜在的抗菌素耐药性和毒力的遗传因素。我们将分离物与所有可用的s.m uminnesota全球基因组进行了比较。我们的结果显示出现了四个克隆,其中三个是与全球菌株混合的。由于获得了携带抗性和毒力基因的多个质粒,特别是IncC质粒,这些克隆表现出更高水平的抗菌素耐药性和毒力。IncC质粒经历了基因组重排,呈现出不同的抗性基因构型。我们的研究结果证明了致病性和耐多药明尼苏达链球菌克隆的出现和持续存在。
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Genomic survey of multidrug resistant Salmonella enterica serovar Minnesota clones in chicken products.

Salmonella enterica serovar Minnesota (S. Minnesota) is an emerging serovar that persists within poultry supply chains, potentially causing outbreaks in humans. Understanding its population genomics is crucial for designing preventive measures. We performed a genomic surveillance study of S. Minnesota by analyzing 259 isolates from poultry in Saudi Arabia. Whole-genome sequencing data for these isolates were analyzed to characterize emerging clones and the genetic factors underlying antimicrobial resistance and virulence. We compared the isolates to all available global genomes of S. Minnesota. Our results revealed the emergence of four clones, three of which were mixed with global strains. These clones exhibited higher levels of antimicrobial resistance and virulence due to the acquisition of multiple plasmids, particularly IncC plasmids, carrying resistance and virulence genes. IncC plasmids underwent genomic rearrangements, presenting diverse configurations of resistance genes. Our findings demonstrate the emergence and persistence of pathogenic and multidrug-resistant S. Minnesota clones.

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