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RNA测序揭示了[具体对象]对羊胆汁和胆囊环境的复杂反应。

RNAseq Reveals Complex Response of to Ovine Bile and Gallbladder Environment.

作者信息

Kreuder Amanda J, Schleining Jennifer A, Yaeger Michael, Zhang Qijing, Plummer Paul J

机构信息

Department of Veterinary Diagnostic and Production Animal Medicine, College of Veterinary Medicine, Iowa State UniversityAmes, IA, United States.

Department of Veterinary Microbiology and Preventative Medicine, College of Veterinary Medicine, Iowa State UniversityAmes, IA, United States.

出版信息

Front Microbiol. 2017 May 29;8:940. doi: 10.3389/fmicb.2017.00940. eCollection 2017.

Abstract

Colonization of the gallbladder by enteric pathogens such as , and is thought to play a key role in transmission and persistence of these important zoonotic agents; however, little is known about the molecular mechanisms that allow for bacterial survival within this harsh environment. Recently, a highly virulent sheep abortion (SA) clone represented by the clinical isolate IA3902 has emerged as the dominant cause for sheep abortion in the United States. Previous studies have indicated that the clone SA can frequently be isolated from the gallbladders of otherwise healthy sheep, suggesting that the gallbladder may serve as an important reservoir for infection. To begin to understand the molecular mechanisms associated with survival in the host gallbladder, IA3902 was exposed for up to 24 h to both the natural ovine host gallbladder environment, as well as ovine bile . Following exposure, total RNA was isolated from the bile and high throughput deep sequencing of strand specific rRNA-depleted total RNA was used to characterize the transcriptome of IA3902 under these conditions. Our results demonstrated for the first time the complete transcriptome of IA3902 during exposure to an important host environment, the sheep gallbladder. Exposure to the host environment as compared to bile alone provided a more robust picture of the complexity of gene regulation required for survival in the host gallbladder. A subset of genes including a large number of protein coding genes as well as seven previously identified non-coding RNAs were confirmed to be differentially expressed within our data, suggesting that they may play a key role in adaptation upon exposure to these conditions. This research provides valuable insights into the molecular mechanisms that may be utilized by IA3902 to colonize and survive within the inhospitable gallbladder environment.

摘要

肠道病原体如[具体病原体1]、[具体病原体2]和[具体病原体3]在胆囊中的定植被认为在这些重要人畜共患病原体的传播和持续存在中起关键作用;然而,对于细菌在这种恶劣环境中生存的分子机制知之甚少。最近,以临床分离株IA3902为代表的高毒力[病原体名称]绵羊流产(SA)克隆已成为美国绵羊流产的主要原因。先前的研究表明,[病原体名称]克隆SA经常可以从其他方面健康的绵羊胆囊中分离出来,这表明胆囊可能是感染的重要储存库。为了开始了解与在宿主胆囊中生存相关的分子机制,将IA3902暴露于天然绵羊宿主胆囊环境以及绵羊胆汁中长达24小时。暴露后,从胆汁中分离总RNA,并使用链特异性rRNA去除的总RNA的高通量深度测序来表征这些条件下IA3902的转录组。我们的结果首次证明了IA3902在暴露于重要宿主环境——绵羊胆囊期间的完整转录组。与仅暴露于胆汁相比,暴露于宿主环境更全面地呈现了在宿主胆囊中生存所需基因调控的复杂性。我们的数据证实了包括大量蛋白质编码基因以及七个先前鉴定的非编码RNA在内的一组基因存在差异表达,这表明它们可能在暴露于这些条件时的适应过程中起关键作用。这项研究为IA3902在恶劣的胆囊环境中定植和生存可能利用的分子机制提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0975/5447181/1489ca5f22c3/fmicb-08-00940-g0001.jpg

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