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首页> 外文期刊>Journal of bacteriology >Genomic Diversity of Burkholderia pseudomallei Clinical Isolates: Subtractive Hybridization Reveals a Burkholderia mallei-Specific Prophage in B. pseudomallei 1026b
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Genomic Diversity of Burkholderia pseudomallei Clinical Isolates: Subtractive Hybridization Reveals a Burkholderia mallei-Specific Prophage in B. pseudomallei 1026b

机译:假伯克霍尔德氏菌临床分离株的基因组多样性:减性杂交揭示了假芽孢杆菌1026b中的一个伯克霍尔德菌特异性噬菌体

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摘要

Burkholderia pseudomallei is the etiologic agent of the disease melioidosis and is a category B biological threat agent. The genomic sequence of B. pseudomallei K96243 was recently determined, but little is known about the overall genetic diversity of this species. Suppression subtractive hybridization was employed to assess the genetic variability between two distinct clinical isolates of B. pseudomallei, 1026b and K96243. Numerous mobile genetic elements, including a temperate bacteriophage designated φ1026b, were identified among the 1026b-specific suppression subtractive hybridization products. Bacteriophage φ1026b was spontaneously produced by 1026b, and it had a restricted host range, infecting only Burkholderia mallei. It possessed a noncontractile tail, an isometric head, and a linear 54,865-bp genome. The mosaic nature of the φ1026b genome was revealed by comparison with bacteriophage φE125, a B. mallei-specific bacteriophage produced by Burkholderia thailandensis. The φ1026b genes for DNA packaging, tail morphogenesis, host lysis, integration, and DNA replication were nearly identical to the corresponding genes in φE125. On the other hand, φ1026b genes involved in head morphogenesis were similar to head morphogenesis genes encoded by Pseudomonas putida and Pseudomonas aeruginosa bacteriophages. Consistent with this observation, immunogold electron microscopy demonstrated that polyclonal antiserum against φE125 reacted with the tail of φ1026b but not with the head. The results presented here suggest that B. pseudomallei strains are genetically heterogeneous and that bacteriophages are major contributors to the genomic diversity of this species. The bacteriophage characterized in this study may be a useful diagnostic tool for differentiating B. pseudomallei and B. mallei, two closely related biological threat agents.
机译:假伯克霍尔德氏菌是类鼻疽病的病原体,是B类生物威胁因子。 B的基因组序列。最近确定了拟假芽孢杆菌K96243,但对该物种的整体遗传多样性知之甚少。使用抑制性消减杂交来评估两个不同的 B临床分离株之间的遗传变异性。 pseudomallei ,1026b和K96243。在1026b特异的抑制性消减杂交产物中鉴定出许多可移动的遗传元件,包括指定为φ1026b的温带噬菌体。噬菌体φ1026b是1026b自发产生的,其宿主范围受到限制,仅感染伯克霍尔德氏菌。它具有不收缩的尾巴,等距的头部和线性的54,865-bp基因组。通过与噬菌体φE125(一种emB)进行比较,揭示了φ1026b基因组的镶嵌性质。 Burkholderia thailandensis 产生的Mallei 特异性噬菌体。用于DNA包装,尾部形态发生,宿主裂解,整合和DNA复制的φ1026b基因与φE125中的相应基因几乎相同。另一方面,参与头部形态发生的φ1026b基因与 Pseudomonas putida Aeruginosa 噬菌体编码的头部形态发生基因相似。与该观察结果一致,免疫金电子显微镜证明针对φE125的多克隆抗血清与φ1026b的尾巴反应而与头部无反应。此处显示的结果表明 B。假马来酸菌株在遗传上是异质的,噬菌体是导致该物种基因组多样性的主要因素。本研究中表征的噬菌体可能是区分B的有用诊断工具。假苹果花 B。 Mallei ,这两个密切相关的生物威胁因子。

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