Phylogenetic Analysis and Comparative Genomics of Brucella abortus and Brucella melitensis Strains in Egypt.

IF 2.1 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Journal of Molecular Evolution Pub Date : 2024-06-01 Epub Date: 2024-05-29 DOI:10.1007/s00239-024-10173-0
Alyaa Elrashedy, Mohamed Nayel, Akram Salama, Ahmed Zaghawa, Nader R Abdelsalam, Mohamed E Hasan
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引用次数: 0

Abstract

Brucellosis is a notifiable disease induced by a facultative intracellular Brucella pathogen. In this study, eight Brucella abortus and eighteen Brucella melitensis strains from Egypt were annotated and compared with RB51 and REV1 vaccines respectively. RAST toolkit in the BV-BRC server was used for annotation, revealing genome length of 3,250,377 bp and 3,285,803 bp, 3289 and 3323 CDS, 48 and 49 tRNA genes, the same number of rRNA (3) genes, 583 and 586 hypothetical proteins, 2697 and 2726 functional proteins for B. abortus and B. melitensis respectively. B. abortus strains exhibit a similar number of candidate genes, while B. melitensis strains showed some differences, especially in the SRR19520422 Faiyum strain. Also, B. melitensis clarified differences in antimicrobial resistance genes (KatG, FabL, MtrA, MtrB, OxyR, and VanO-type) in SRR19520319 Faiyum and (Erm C and Tet K) in SRR19520422 Faiyum strain. Additionally, the whole genome phylogeny analysis proved that all B. abortus strains were related to vaccinated animals and all B. melitensis strains of Menoufia clustered together and closely related to Gharbia, Dameitta, and Kafr Elshiek. The Bowtie2 tool identified 338 (eight B. abortus) and 4271 (eighteen B. melitensis) single nucleotide polymorphisms (SNPs) along the genomes. These variants had been annotated according to type and impact. Moreover, thirty candidate genes were predicted and submitted at GenBank (24 in B. abortus) and (6 in B. melitensis). This study contributes significant insights into genetic variation, virulence factors, and vaccine-related associations of Brucella pathogens, enhancing our knowledge of brucellosis epidemiology and evolution in Egypt.

Abstract Image

埃及流产布鲁氏菌和瓜氏布鲁氏菌菌株的系统发育分析和比较基因组学。
布鲁氏菌病是一种由腔内布鲁氏菌病原体诱发的应予通报的疾病。本研究对来自埃及的 8 株流产布鲁氏菌和 18 株瓜氨酸布鲁氏菌进行了注释,并分别与 RB51 和 REV1 疫苗进行了比较。注释时使用了 BV-BRC 服务器中的 RAST 工具包,结果显示流产布鲁氏菌和瓜氏布鲁氏菌的基因组长度分别为 3,250,377 bp 和 3,285,803 bp、3289 和 3323 CDS、48 和 49 个 tRNA 基因、相同数量的 rRNA (3) 基因、583 和 586 个假定蛋白、2697 和 2726 个功能蛋白。B. abortus 株系的候选基因数量相似,而 B. melitensis 株系则有一些差异,尤其是 SRR19520422 Faiyum 株系。此外,在 SRR19520319 Faiyum 和 SRR19520422 Faiyum 株系中,B. melitensis 明确了抗菌药耐药性基因(KatG、FabL、MtrA、MtrB、OxyR 和 VanO-type)的差异;在 SRR19520422 Faiyum 株系中,B. melitensis 明确了抗菌药耐药性基因(Erm C 和 Tet K)的差异。此外,全基因组系统进化分析表明,所有堕胎芽孢杆菌菌株都与接种过疫苗的动物有关,梅努菲亚的所有梅毒芽孢杆菌菌株都聚集在一起,与 Gharbia、Dameitta 和 Kafr Elshiek 关系密切。Bowtie2 工具在基因组中分别发现了 338 个(8 个流产鲍曼)和 4271 个(18 个梅毒鲍曼)单核苷酸多态性(SNPs)。这些变异已根据类型和影响进行了注释。此外,还预测了 30 个候选基因,并提交给 GenBank(流产鲍 24 个)和(梅里金鲍 6 个)。这项研究有助于我们深入了解布鲁氏菌病原体的遗传变异、毒力因素和疫苗相关性,增进我们对埃及布鲁氏菌病流行病学和演变的了解。
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来源期刊
Journal of Molecular Evolution
Journal of Molecular Evolution 生物-进化生物学
CiteScore
5.50
自引率
2.60%
发文量
36
审稿时长
3 months
期刊介绍: Journal of Molecular Evolution covers experimental, computational, and theoretical work aimed at deciphering features of molecular evolution and the processes bearing on these features, from the initial formation of macromolecular systems through their evolution at the molecular level, the co-evolution of their functions in cellular and organismal systems, and their influence on organismal adaptation, speciation, and ecology. Topics addressed include the evolution of informational macromolecules and their relation to more complex levels of biological organization, including populations and taxa, as well as the molecular basis for the evolution of ecological interactions of species and the use of molecular data to infer fundamental processes in evolutionary ecology. This coverage accommodates such subfields as new genome sequences, comparative structural and functional genomics, population genetics, the molecular evolution of development, the evolution of gene regulation and gene interaction networks, and in vitro evolution of DNA and RNA, molecular evolutionary ecology, and the development of methods and theory that enable molecular evolutionary inference, including but not limited to, phylogenetic methods.
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