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Genomic Characterization of Haemophilus parasuis SH0165 a Highly Virulent Strain of Serovar 5 Prevalent in China

机译:副猪嗜血杆菌SH0165一种在中国流行的高毒力血清型5的毒株的基因组鉴定

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摘要

Haemophilus parasuis can be either a commensal bacterium of the porcine respiratory tract or an opportunistic pathogen causing Glässer's disease, a severe systemic disease that has led to significant economical losses in the pig industry worldwide. We determined the complete genomic sequence of H. parasuis SH0165, a highly virulent strain of serovar 5, which was isolated from a hog pen in North China. The single circular chromosome was 2,269,156 base pairs in length and contained 2,031 protein-coding genes. Together with the full spectrum of genes detected by the analysis of metabolic pathways, we confirmed that H. parasuis generates ATP via both fermentation and respiration, and possesses an intact TCA cycle for anabolism. In addition to possessing the complete pathway essential for the biosynthesis of heme, this pathogen was also found to be well-equipped with different iron acquisition systems, such as the TonB system and ABC-type transport complexes, to overcome iron limitation during infection and persistence. We identified a number of genes encoding potential virulence factors, such as type IV fimbriae and surface polysaccharides. Analysis of the genome confirmed that H. parasuis is naturally competent, as genes related to DNA uptake are present. A nine-mer DNA uptake signal sequence (ACAAGCGGT), identical to that found in Actinobacillus pleuropneumoniae and Mannheimia haemolytica, followed by similar downstream motifs, was identified in the SH0165 genome. Genomic and phylogenetic comparisons with other Pasteurellaceae species further indicated that H. parasuis was closely related to another swine pathogenic bacteria A. pleuropneumoniae. The comprehensive genetic analysis presented here provides a foundation for future research on the metabolism, natural competence and virulence of H. parasuis.
机译:副猪嗜血杆菌可以是猪呼吸道的常见细菌,也可以是引起格莱瑟氏病的机会性病原体,后者是一种严重的全身性疾病,已导致全世界养猪业的重大经济损失。我们确定了副猪嗜血杆菌SH0165的完整基因组序列,这是一种高毒力的血清型5株,它是从华北的一支猪圈中分离出来的。单个环状染色体的长度为2,269,156个碱基对,并包含2,031个蛋白质编码基因。连同通过代谢途径分析检测到的全部基因一起,我们证实副猪嗜血杆菌通过发酵和呼吸作用生成ATP,并且具有完整的TCA循环进行合成代谢。除了拥有血红素生物合成必不可少的完整途径外,还发现该病原体配备了不同的铁捕获系统,例如TonB系统和ABC型运输复合物,可以克服感染和持久性过程中铁的限制。 。我们鉴定了许多编码潜在毒力因子的基因,例如IV型菌毛和表面多糖。对基因组的分析证实,由于存在与DNA吸收有关的基因,副猪嗜血杆菌具有天然能力。在SH0165基因组中鉴定出一个九聚体DNA摄取信号序列(ACAAGCGGT),该序列与胸膜肺炎放线杆菌和溶血曼海姆菌中发现的相同,其后是相似的下游基序。与其他巴斯德菌种的基因组和系统发育比较进一步表明,副猪嗜血杆菌与另一种猪致病性细菌胸膜肺炎放线杆菌密切相关。此处介绍的全面遗传分析为今后研究副猪嗜血杆菌的代谢,自然能力和毒力提供了基础。

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