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Advances in carbohydrate and nucleic acid analysis applied to the taxonomy and physiology of bacilli.

机译:碳水化合物和核酸分析技术在细菌分类学和生理学研究中的应用。

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摘要

Differentiation between members of the B. cereus group (B. cereus, B. anthracis and B. thuringiensis) is a difficult taxonomic problem because of their high degree of phenotypic and genotypic similarity. Therefore this group was the focus of a taxonomic study using carbohydrate profiling and comparison of common genomic regions. B. subtilis was included as a more distantly related Bacillus. B. thuringiensis was found to be quite similar to B. cereus in carbohydrate composition for both vegetative and spore forms. A change in carbohydrate composition on transition from vegetative cell to spore was noted for the B. cereus group and B. subtilis. It was unclear whether the carbohydrate transition observed on sporulation was related to the teichoic/teichuronic acid transition (described by Ellwood and Tempest) where bacilli change their carbohydrate composition when grown under conditions of phosphate deprivation. An existing gas chromatography mass spectrometry procedure was available for studying neutral and amino sugar components of these cells. However, in order to analyze glucuronic acid (an acidic sugar marker for teichuronic acid) it was necessary to develop a liquid chromatography electrospray ionization tandem mass spectrometry procedure. This allowed quantitative profiling of neutral and acidic sugar monomers in a complex microbial matrix. Vegetative cells, grown under conditions of phosphate deprivation, contained large amounts of both glucuronic acid and galactosamine (teichuronic acid markers) but not quinovose (a spore component). The results prove that there are three distinct polysaccharides in B. subtilis produced under different physiological growth conditions. PCR amplification was used to examine the 16S/23S rRNA spacer region of each species. The study of this variable genomic region allowed B. subtilis to be differentiated from the B. cereus group of organisms. However, the three B. cereus species produced PCR products that could not be distinguished by low resolution gel electrophoresis. Electrospray mass spectrometry was investigated as a means to obtain precise molecular weight measurements of PCR products. Single base substitutions, additions or deletions could be recognized. It proved vital to remove primers, deoxynucleotides, DNA polymerase and metal ions from the PCR reaction mixture. These reaction components reduced sensitivity and metal ion adduction adversely affected the accuracy of mass measurements. PCR products of 89 base pairs from the B. cereus group were readily differentiated from 114 base pairs products of B. subtilis.
机译:蜡状芽孢杆菌组成员(蜡状芽孢杆菌,炭疽芽孢杆菌和苏云金芽孢杆菌)之间的区别是一个困难的分类问题,因为它们在表型和基因型上具有高度相似性。因此,该小组是使用碳水化合物分析和常见基因组区域比较的分类研究的重点。枯草芽孢杆菌被包括为与亲缘关系更远的芽孢杆菌。无论是营养形式还是孢子形式,苏云金芽孢杆菌的碳水化合物组成都与蜡状芽孢杆菌非常相似。对于蜡状芽孢杆菌和枯草芽孢杆菌,从营养细胞向孢子转变时,碳水化合物的组成发生了变化。目前尚不清楚在孢子形成时观察到的碳水化合物转变是否与回潮/ teururonic酸转变(由Ellwood和Tempest描述)有关,在细菌剥夺磷酸盐的条件下生长时,细菌会改变其碳水化合物组成。现有的气相色谱质谱方法可用于研究这些细胞的中性和氨基糖成分。但是,为了分析葡萄糖醛酸(四糖尿酸的酸性糖标记物),有必要开发一种液相色谱电喷雾串联电离质谱方法。这样可以对复杂微生物基质中的中性和酸性糖单体进行定量分析。在缺乏磷酸盐的条件下生长的营养细胞含有大量的葡萄糖醛酸和半乳糖胺(teurhuronic acid标记),但不含喹诺酮(孢子成分)。结果证明,在不同的生理生长条件下,枯草芽孢杆菌产生三种不同的多糖。 PCR扩增用于检查每个物种的16S / 23S rRNA间隔区。对这一可变基因组区域的研究使枯草芽孢杆菌与蜡状芽孢杆菌生物群有所区别。但是,三种蜡状芽孢杆菌产生的PCR产物无法通过低分辨率凝胶电泳加以区分。研究了电喷雾质谱法,作为获得PCR产物精确分子量测量值的一种方法。可以识别单碱基取代,添加或缺失。事实证明,从PCR反应混合物中去除引物,脱氧核苷酸,DNA聚合酶和金属离子至关重要。这些反应组分降低了灵敏度,并且金属离子加成不利地影响了质量测量的准确性。蜡状芽孢杆菌组的89个碱基对的PCR产物很容易与枯草芽孢杆菌的114个碱基对的产物区分开。

著录项

  • 作者

    Wunschel, David Scott.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Biology Molecular.;Chemistry Biochemistry.;Chemistry Analytical.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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