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Genomic analysis of the original Elberg Brucella melitensis Rev.1 vaccine strain reveals insights into virulence attenuation

机译:原始Elberg Brucella melitensis Rev.1的基因组分析Rev.1疫苗菌株显示出毒力衰减的见解

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摘要

The live attenuated Brucella melitensis Rev.1 Elberg-originated vaccine strain has been widely used to control brucellosis in small ruminants. However, despite extensive research, the molecular mechanisms underlying the attenuation of this strain are still unknown. In the current study, we conducted a comprehensive comparative analysis of the whole-genome sequence of Rev.1 against that of the virulent reference strain, B. melitensis 16M. This analysis revealed five regions of insertion and three regions of deletion within the Rev.1 genome, among which, one large region of insertion, comprising 3,951 bp, was detected in the Rev.1 genome. In addition, we found several missense mutations within important virulence-related genes, which may be used to determine the mechanism underlying virulence attenuation. Collectively, our findings provide new insights into the Brucella virulence mechanisms and, therefore, may serve as a basis for the rational design of new Brucella vaccines.
机译:现场减毒的Brucella Melitensis Rev.1 Elberg起源疫苗菌株已被广泛用于控制小反刍动物的布鲁克病。然而,尽管进行了广泛的研究,但这种菌株衰减的分子机制仍然未知。在目前的研究中,我们对Rev.1的全基因组序列进行了全面的对比分析,抗毒力参考菌株B.Melitensis 16M。该分析揭示了在Rev.1基因组中检测到包含3,951bp的一个插入区域和三个缺失区域,其中包含3,951bp的一个大区域。此外,我们在重要的毒力相关基因中发现了几种畸形突变,其可用于确定毒力衰减的机制。集体,我们的研究结果为布鲁菌菌毒力机制提供了新的见解,因此可以作为新的布鲁氏菌疫苗的合理设计作为基础。

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