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七株猪滑液支原体菌株的比较基因组分析

Comparative genomic analysis of seven Mycoplasma hyosynoviae strains.

作者信息

Bumgardner Eric A, Kittichotirat Weerayuth, Bumgarner Roger E, Lawrence Paulraj K

机构信息

Newport Laboratories Inc., Worthington, Minnesota.

Systems Biology and Bioinformatics Research Group, Pilot Plant, Development and Training Institute, King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok, Thailand.

出版信息

Microbiologyopen. 2015 Apr;4(2):343-359. doi: 10.1002/mbo3.242. Epub 2015 Feb 18.

Abstract

Infection with Mycoplasma hyosynoviae can result in debilitating arthritis in pigs, particularly those aged 10 weeks or older. Strategies for controlling this pathogen are becoming increasingly important due to the rise in the number of cases of arthritis that have been attributed to infection in recent years. In order to begin to develop interventions to prevent arthritis caused by M. hyosynoviae, more information regarding the specific proteins and potential virulence factors that its genome encodes was needed. However, the genome of this emerging swine pathogen had not been sequenced previously. In this report, we present a comparative analysis of the genomes of seven strains of M. hyosynoviae isolated from different locations in North America during the years 2010 to 2013. We identified several putative virulence factors that may contribute to the ability of this pathogen to adhere to host cells. Additionally, we discovered several prophage genes present within the genomes of three strains that show significant similarity to MAV1, a phage isolated from the related species, M. arthritidis. We also identified CRISPR-Cas and type III restriction and modification systems present in two strains that may contribute to their ability to defend against phage infection.

摘要

猪肺炎支原体感染可导致猪出现使人衰弱的关节炎,尤其是10周龄及以上的猪。近年来,因感染所致关节炎病例数量增加,控制这种病原体的策略变得越发重要。为了开始研发预防猪肺炎支原体引起的关节炎的干预措施,需要更多关于其基因组所编码的特定蛋白质和潜在毒力因子的信息。然而,这种新出现的猪病原体的基因组此前尚未测序。在本报告中,我们对2010年至2013年期间从北美不同地点分离出的7株猪肺炎支原体的基因组进行了比较分析。我们鉴定出了几种可能有助于该病原体黏附宿主细胞能力的假定毒力因子。此外,我们在三株菌的基因组中发现了几个原噬菌体基因,它们与从相关物种关节炎支原体中分离出的噬菌体MAV1具有显著相似性。我们还在两株菌中鉴定出了CRISPR-Cas和III型限制与修饰系统,它们可能有助于这两株菌抵御噬菌体感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/555b/4398514/d8200407d371/mbo30004-0343-f1.jpg

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