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431 results on '"Brucella melitensis genetics"'

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1. Whole-genome sequencing-based analysis of Brucella species isolated from ruminants in various regions of Türki̇ye.

2. Novel dual-pathogen multi-epitope mRNA vaccine development for Brucella melitensis and Mycobacterium tuberculosis in silico approach.

3. Disruption of Erythritol Catabolism via the Deletion of Fructose-Bisphosphate Aldolase (Fba) and Transaldolase (Tal) as a Strategy to Improve the Brucella Rev1 Vaccine.

4. Rev1Δwzm vaccine candidate is safe in young and adult sheep and protects against Brucella ovis infection in rams.

5. Genomic analysis of Brucella isolates from animals and humans, Türkiye, 2010 to 2020.

6. Meta-genomic next-generation sequencing in the diagnosis of brucellosis: Five cases from a non-endemic area.

7. Whole Genome Sequence Analysis of Brucella spp. from Human, Livestock, and Wildlife in South Africa.

8. The arginine/ornithine binding protein ArgT plays an essential role in Brucella neotomae / Brucella melitensis to prevent intracellular killing and contribute to chronic persistence in the host.

9. Molecular epidemiology of brucellosis in Asia: insights from genotyping analyses.

10. Genome-wide analysis of Brucella melitensis growth in spleen of infected mice allows rational selection of new vaccine candidates.

11. Analysis of the Brucella melitensis epidemic in Xinjiang: genotyping, polymorphism, antibiotic resistance and tracing.

12. An 8000 years old genome reveals the Neolithic origin of the zoonosis Brucella melitensis.

13. Phylogenetic Analysis of Brucella melitensis Strains Isolated from Humans Using 16S rRNA Sequencing and Multiple Locus Variable Number of Tandem Repeats Analysis-16.

14. Molecular Characterization and Analysis of Risk Factors Associated with Brucellosis in Central Indian and Meghalaya Population.

15. Hemophagocytic lymphohistiocytosis associated with brucellosis.

16. Brucella melitensis Rev1Δwzm: Placental pathogenesis studies and safety in pregnant ewes.

17. Misidentification of Brucella melitensis as Ochrobactrum species: potential pitfalls in the diagnosis of brucellosis.

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

19. Prevalence of Brucella melitensis and Brucella abortus aminoglycoside-resistant isolates: a systematic review and meta-analysis.

20. Molecular detection of Brucella species among aborted small ruminants in southeast Iran.

21. Molecular epidemiological characteristics of osteoarthritis-associated Brucella melitensis in China: evidence from whole-genome sequencing-based analysis.

22. Molecular examination for Coxiella burnetii and Brucella spp. infections in Iranian women experiencing spontaneous miscarriage.

23. Comparative genomics of Brucella abortus and Brucella melitensis unravels the gene sharing, virulence factors and SNP diversity among the standard, vaccine and field strains.

24. Genotypic peculiarities of a human brucellosis case caused by Brucella suis biovar 5.

25. Prevalence of Brucella melitensis and Brucella abortus tetracyclines resistance: A systematic review and meta-analysis.

26. The canonical Brucella species-host dependency is changing, however, the antibiotic susceptibility profiles remain unchanged.

27. Genotype diversity of brucellosis agents isolated from humans and animals in Greece based on whole-genome sequencing.

28. A 14th century CE Brucella melitensis genome and the recent expansion of the Western Mediterranean clade.

29. Scanning iron response regulator binding sites using Dap-seq in the Brucella genome.

30. Genomic analysis of Brucella melitensis reveals new insights into phylogeny and evolutionary divergence.

31. Bm Delta-pgm, a vaccine for the control of Brucella melitensis with cross-species protective properties.

32. Genotyping of Brucella isolates from animals and humans by Multiple-Locus Variable-number Tandem Repeat Analysis (MLVA).

33. Cytokine expression profile of B. melitensis-infected goat monocyte-derived macrophages.

34. MLVA typing of Brucella melitensis and B. abortus isolates of animal and human origin from India.

35. Public and animal health risks associated with spillover of Brucella melitensis into dairy farms.

36. A rapid and sensitive triplex-recombinase polymerase amplification for simultaneous differentiation of Brucella abortus, Brucella melitensi s, and Brucella suis in sera and foods.

37. Comprehensive Proteomic Analysis of Brucella melitensis ATCC23457 Strain Reveals Metabolic Adaptations in Response to Nutrient Stress.

38. Molecular cloning of the OMP19 gene from Brucella melitensis strain H38 and its antigenicity compared to that of commercial OMP19.

39. Examining pathogen DNA recovery across the remains of a 14th century Italian friar (Blessed Sante) infected with Brucella melitensis.

40. First record of the human infection of Brucella melitensis in Kyrgyzstan: evidence from whole-genome sequencing-based analysis.

41. Genome-wide transcription start site mapping in the facultative intracellular pathogen Brucella melitensis by Capping-seq.

42. Detection of Brucella S2 vaccine strain by a loop-mediated isothermal amplification (LAMP) method.

43. The Pseudogene BMEA_B0173 Deficiency in Brucella melitensis Contributes to M-epitope Formation and Potentiates Virulence in a Mice Infection Model.

44. Tracking the distribution, genetic diversity and lineage of Brucella melitensis recovered from humans and animals in Egypt based on core-genome SNP analysis and in silico MLVA-16.

45. Live mucosal vaccination stimulates potent protection via varied CD4 + and CD8 + T cell subsets against wild-type Brucella melitensis 16M challenge.

46. Core Genome Multilocus Sequence Typing Scheme for Improved Characterization and Epidemiological Surveillance of Pathogenic Brucella.

47. Seroprevalence trend of human brucellosis and MLVA genotyping characteristics of Brucella melitensis in Shaanxi Province, China, during 2008-2020.

48. Brucellosis re-emergence after a decade of quiescence in Palestine, 2015-2017: A seroprevalence and molecular characterization study.

49. Genome-wide analysis of Brucella melitensis genes required throughout intranasal infection in mice.

50. Evaluation of the genetic profiles of Brucella melitensis strain from Turkey using multilocus variable number tandem repeat analysis (MLVA) and multilocus sequence typing (MLST) techniques.

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