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Genetic and biochemical characterization of Brucella abortus strain RB51.

机译:布鲁氏菌流产RB51菌株的遗传和生化特性。

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摘要

Brucella abortus strain RB51, a naturally derived rough variant, has been proposed to replace strain 19 for use as a vaccine against brucellosis in cattle. Utilizing fingerprinting and standard biotyping techniques, it was possible to differentiate RB51 from other brucellae and to ascertain the stability of RB51. Standardization of a genomic fingerprinting procedure using restriction endonuclease profiles of total DNA from Brucella are described. Although the focus was principally on B. abortus isolates from cattle, the investigation included field isolates from bison and elk, reference strains, vaccinal strains, and genetically-engineered brucellae.;Pulsed-field gel electrophoresis profiles of the reference type strains allowed separation of the strains to the level of species. A unique fingerprint relative to other brucellae was discovered for RB51, using profiles of genomic DNA digested with the restriction endonuclease Xba I.;Stability of RB51 after animal passage and high passage on artificial media was determined using standard methods for characterizing brucellae. Techniques included biochemical, morphological, antigenic, phage susceptibility, and antibiotic resistance. RB51 retained rough colonial morphology with no detectable O-antigen of Brucella lipopolysaccharide and remained resistant to rifampin or to penicillin and sensitive to tetracycline following repeated passage. No detectable changes in characteristic oxidative metabolic profiles on selected amino-acid or carbohydrate substrates were demonstrated following in vivo or repeated in vitro passage.;Genomic fingerprints of reference strains and biovars of Brucella were analyzed to obtain information on the genetic relatedness among the strains. Included were four newly described isolates of Brucella from the common seal, harbor porpoise, and common dolphins. Distance matrix analyses were done and a dendrogram was constructed. Results support the designation of an additional genomic group(s) of Brucella.;Comparison of cell wall structure of RB51 and B. abortus strain 2308 using transmission electron microscopy revealed variation in surface properties indicating modifications in acidic polysaccharide associated with lipopolysaccharide. The ultrastructural characteristics of the cell wall contributes to the understanding of B. abortus by demonstrating surface components that may be involved in cellular interactions.
机译:已提出流产布鲁氏菌菌株RB51,一种天然来源的粗糙变体,以取代菌株19,用作牛中布鲁氏菌病的疫苗。利用指纹图谱和标准生物分型技术,可以将RB51与其他布鲁氏菌区分开来,并确定RB51的稳定性。描述了使用来自布鲁氏菌的总DNA的限制性核酸内切酶谱对基因组指纹图谱程序进行标准化。尽管重点主要放在牛的流产双歧杆菌分离株上,但研究包括野牛和麋鹿的野外分离株,参考菌株,疫苗菌株和基因工程布鲁氏菌。参考类型的脉冲场凝胶电泳图谱可分离出应变到物种的水平。使用限制性内切核酸酶Xba I消化的基因组DNA谱,发现了相对于其他布鲁氏菌而言独特的指纹图谱;使用表征布鲁氏菌属的标准方法确定了动物传代和在人造培养基中高传代后RB51的稳定性。技术包括生化,形态,抗原,噬菌体敏感性和抗生素抗性。 RB51保留了粗糙的殖民地形态,没有布鲁氏菌脂多糖的可检测到的O抗原,并且在反复传代后仍然对利福平或青霉素有抵抗力,并对四环素敏感。在体内或体外反复传代后,未证明所选氨基酸或碳水化合物底物上特征氧化代谢谱的可检测变化。;分析了参考菌株和布鲁氏菌的生物变种的基因组指纹,以获得菌株之间的遗传相关性信息。其中包括四种新近描述的来自海豹,海豚和海豚的布鲁氏菌分离株。进行距离矩阵分析并构建树状图。结果支持了布鲁氏菌属的另外一个基因组的指定。使用透射电子显微镜比较RB51和流产布鲁氏菌菌株2308的细胞壁结构揭示了表面性质的变化,表明与脂多糖相关的酸性多糖的修饰。细胞壁的超微结构特征通过展示可能参与细胞相互作用的表面成分,有助于了解流产芽孢杆菌。

著录项

  • 作者

    Jensen, Allen Elroy.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biology Molecular.;Biology Microbiology.;Biology Veterinary Science.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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