Auxotrophy of Yersinia pestis Strains of Antiqua Biovar and Its Genetic Basis

M. A. Makashova, L. M. Kukleva, N. Chervyakova, E. A. Naryshkina, A. V. Kovrizhnikov, G. A. Eroshenko, I. G. Shvidenko, V. V. Kutyrev
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Abstract

The aim of the work was to study the growth dependence on amino acids in Yersinia pestis strains of different phylogenetic branches of the antiqua biovar and to determine the genetic basis of auxotrophy of these strains.Materials and methods. We used 38 strains of Y. pestis, the main subspecies of the antiqua biovar, isolated in various foci of the world in the period of 1928–2020. The nutritional requirements of the strains were determined by incubation on Difco minimal agar with different sets of amino acids. Phylogenetic analysis of the strains was carried out using the Wombac 2.0 and SeaView 5.0.5 programs. Comparative analysis of the nucleotide sequences of the genes was performed using the BLAST algorithm and the Mega 7.0 program.Results and discussion. The phylogenetic appurtenance of the investigated Y. pestis strains of antiqua biovar to the phylogenetic branches 0.ANT3, 0.ANT5, 1.ANT, 2.ANT3, 3.ANT2, 4.ANT has been determined. It is established that all studied strains have a common dependence of growth on three amino acids – phenylalanine, threonine, and methionine. In the majority of the strains of antiqua biovar of all phylogenetic branches, growth is also dependent on the presence of cysteine in the medium, except for a part of the strains of the phylogenetic branch 4.ANT. In 14 genes of sulfur and cysteine metabolism, 19 mutations have been identified. Each phylogenetic group of the antique biovar has a distinct profile of mutations in genes involved in cysteine biosynthesis. The leucine requirement of the strains belonging to phylogenetic branch 0.ANT5 has been established, possibly caused by a frame shift in the leuA gene. Strains of the 1.ANT branch isolated in the Democratic Republic of the Congo demonstrate an additional proline-dependent growth. The defined nutritional requirements in the strains and the genetic causes of auxotrophy complement the phenotypic and genetic characteristics of the phylogenetic branches of the antiqua biovar and can be used as genetic markers for the differentiation of these strains.
鼠疫耶尔森菌安蒂卡生物变种的辅助营养作用及其遗传基础
这项工作的目的是研究鼠疫耶尔森氏菌(Yersinia pestis)不同系统发育分支的安蒂卡(antiqua)生物菌株对氨基酸的生长依赖性,并确定这些菌株辅助营养的遗传基础。我们使用了 1928-2020 年间在世界不同地区分离的 38 株鼠疫耶尔森菌(antiqua 生物变种的主要亚种)。这些菌株的营养需求是通过在含有不同氨基酸的 Difco 最小琼脂上培养确定的。使用 Wombac 2.0 和 SeaView 5.0.5 程序对菌株进行了系统发育分析。使用 BLAST 算法和 Mega 7.0 程序对基因的核苷酸序列进行了比较分析。已确定所研究的鼠疫 Y. antiqua 生物菌株在系统发育上属于 0.ANT3、0.ANT5、1.ANT、2.ANT3、3.ANT2、4.ANT 分支。已确定所有研究菌株的生长都依赖于三种氨基酸--苯丙氨酸、苏氨酸和蛋氨酸。除了系统发育分支 4.ANT 中的部分菌株外,所有系统发育分支中的大多数 antiqua 生物菌株的生长也依赖于培养基中半胱氨酸的存在。在 14 个硫和半胱氨酸代谢基因中,发现了 19 个突变基因。古生物菌株的每个系统发育群在参与半胱氨酸生物合成的基因突变方面都有不同的特征。属于系统发育分支 0.ANT5 的菌株对亮氨酸的需求已经确定,这可能是由 leuA 基因的帧转移引起的。在刚果民主共和国分离到的 1.ANT 分支菌株显示出一种额外的脯氨酸依赖性生长。菌株中明确的营养要求和辅助生长的遗传原因补充了 antiqua 生物变种系统发育分支的表型和遗传特征,可用作区分这些菌株的遗传标记。
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