首页> 美国卫生研究院文献>Journal of Bacteriology >Comparison of the Genome Sequence of the Poultry Pathogen Bordetella avium with Those of B. bronchiseptica B. pertussis and B. parapertussis Reveals Extensive Diversity in Surface Structures Associated with Host Interaction
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Comparison of the Genome Sequence of the Poultry Pathogen Bordetella avium with Those of B. bronchiseptica B. pertussis and B. parapertussis Reveals Extensive Diversity in Surface Structures Associated with Host Interaction

机译:家禽病原体博德特氏菌与支气管败血性博德特氏菌百日咳博德特氏菌和副百日咳博德特氏菌的基因组序列的比较揭示了与宿主相互作用相关的表面结构的广泛多样性

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摘要

Bordetella avium is a pathogen of poultry and is phylogenetically distinct from Bordetella bronchiseptica, Bordetella pertussis, and Bordetella parapertussis, which are other species in the Bordetella genus that infect mammals. In order to understand the evolutionary relatedness of Bordetella species and further the understanding of pathogenesis, we obtained the complete genome sequence of B. avium strain 197N, a pathogenic strain that has been extensively studied. With 3,732,255 base pairs of DNA and 3,417 predicted coding sequences, it has the smallest genome and gene complement of the sequenced bordetellae. In this study, the presence or absence of previously reported virulence factors from B. avium was confirmed, and the genetic bases for growth characteristics were elucidated. Over 1,100 genes present in B. avium but not in B. bronchiseptica were identified, and most were predicted to encode surface or secreted proteins that are likely to define an organism adapted to the avian rather than the mammalian respiratory tracts. These include genes coding for the synthesis of a polysaccharide capsule, hemagglutinins, a type I secretion system adjacent to two very large genes for secreted proteins, and unique genes for both lipopolysaccharide and fimbrial biogenesis. Three apparently complete prophages are also present. The BvgAS virulence regulatory system appears to have polymorphisms at a poly(C) tract that is involved in phase variation in other bordetellae. A number of putative iron-regulated outer membrane proteins were predicted from the sequence, and this regulation was confirmed experimentally for five of these.
机译:鸟博德特氏菌是家禽的病原体,在系统发育上不同于支气管博德特氏菌,百日咳博德特氏菌和副百日咳博德特氏菌,它们是博德特氏菌属中感染哺乳动物的其他物种。为了了解博德特氏菌物种的进化相关性并进一步了解发病机理,我们获得了已被广泛研究的致病性菌株禽双歧杆菌197N的完整基因组序列。它具有3,732,255个碱基对的DNA和3,417个预测的编码序列,与测序的蝶形花序具有最小的基因组和基因互补性。在这项研究中,证实存在或不存在先前报道的来自禽双歧杆菌的毒力因子,并阐明了生长特性的遗传基础。已鉴定出在禽双歧杆菌中存在超过1,100个基因,而在支气管败血性博氏杆菌中则没有,并且预测大多数基因编码表面或分泌的蛋白质,这些蛋白质很可能定义了适合禽类而不是哺乳动物呼吸道的生物。这些基因包括编码多糖胶囊合成的基因,血凝素,与两个非常大的分泌蛋白基因相邻的I型分泌系统,以及脂多糖和纤维双生的独特基因。还出现了三个看似完整的预言。 BvgAS毒力调节系统似乎在poly(C)道具有多态性,该多态性与其他波尔多藻的相变有关。从该序列预测了许多推测的铁调节的外膜蛋白,并且对其中的五个通过实验证实了这种调节。

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