185 results on '"Rodicio, Rosaura"'
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2. Insights into the Evolution of IncR Plasmids Found in the Southern European Clone of the Monophasic Variant of Salmonella enterica Serovar Typhimurium
3. Genomic analysis and phylogenetic position of the complex IncC plasmid found in the Spanish monophasic clone of Salmonella enterica serovar Typhimurium
4. Carbohydrate Metabolism in Wine Yeasts
5. Stress Responses in Wine Yeast
6. Incidence and Genomic Background of Antibiotic Resistance in Food-Borne and Clinical Isolates of Salmonella enterica Serovar Derby from Spain
7. Detection of the optrA Gene Among Polyclonal Linezolid-Susceptible Isolates of Enterococcus faecalis Recovered from Community Patients
8. Spread of blaCTX-M-9 and Other Clinically Relevant Resistance Genes, Such as mcr-9 and qnrA1, Driven by IncHI2-ST1 Plasmids in Clinical Isolates of Monophasic Salmonella enterica Serovar Typhimurium ST34
9. Incidence and Genomic Background of Antibiotic Resistance in Food-Borne and Clinical Isolates of Salmonella enterica Serovar Derby from Spain
10. Physical and Chemical Stress Factors in Yeast
11. Sugar Metabolism by Saccharomyces and non-Saccharomyces Yeasts
12. Genomic Analysis of Two MDR Isolates of Salmonella enterica Serovar Infantis from a Spanish Hospital Bearing the blaCTX-M-65 Gene with or without fosA3 in pESI-like Plasmids
13. Detection of the optrA Gene Among Polyclonal Linezolid-Susceptible Isolates of Enterococcus faecalis Recovered from Community Patients
14. Spread of bla CTX-M-9 and Other Clinically Relevant Resistance Genes, Such as mcr-9 and qnrA1 , Driven by IncHI2-ST1 Plasmids in Clinical Isolates of Monophasic Salmonella enterica Serovar Typhimurium ST34.
15. Plasmid-Mediated Quinolone Resistance (PMQR) in Two Clinical Strains of Salmonella enterica Serovar Corvallis
16. Colistin resistance in monophasic isolates of Salmonella enterica ST34 collected from meat-derived products in Spain, with or without CMY-2 co-production
17. Genetic and Physiological Characterization of Fructose-1,6-Bisphosphate Aldolase and Glyceraldehyde-3-Phosphate Dehydrogenase in the Crabtree-Negative Yeast Kluyveromyces lactis
18. Colistin Resistance in Monophasic Isolates of Salmonella enterica ST34 Collected From Meat-Derived Products in Spain, With or Without CMY-2 Co-production
19. Genomic Analysis of Ciprofloxacin-Resistant Salmonella enterica Serovar Kentucky ST198 From Spanish Hospitals
20. Genomic analysis and phylogenetic position of the complex IncC plasmid found in the Spanish monophasic clone of Salmonella enterica serovar Typhimurium
21. Cyk3 acts in actomyosin ring independent cytokinesis by recruiting Inn1 to the yeast bud neck
22. Genomic Analysis of Two MDR Isolates of Salmonella enterica Serovar Infantis from a Spanish Hospital Bearing the bla CTX-M-65 Gene with or without fosA3 in pESI-like Plasmids.
23. Contribution of the fermenting yeast strain to ethyl carbamate generation in stone fruit spirits
24. A plasmid-encoded fetmp-fls iron uptake system confers selective advantages to salmonella enterica serovar typhimurium in growth under iron-restricted conditions and for infection of mammalian host cells
25. KIRHO1 and KIPKC1 are essential for cell integrity signalling in Kluyveromyces lactis
26. Isocitrate lyase of the yeast Kluyveromyces lactis is subject to glucose repression but not to catabolite inactivation
27. A Plasmid-Encoded FetMP-Fls Iron Uptake System Confers Selective Advantages to Salmonella enterica Serovar Typhimurium in Growth under Iron-Restricted Conditions and for Infection of Mammalian Host Cells
28. ACR1, a gene encoding a protein related to mitochondrial carriers, is essential for acetyl-CoA synthetase activity in Saccharomyces cerevisiae
29. Sequence and localization of the gene encoding yeast phosphoglycerate mutase
30. Analysis of the Degradation of Broad-Spectrum Cephalosporins by OXA-48-Producing Enterobacteriaceae Using MALDI-TOF MS
31. Lack of the NAD+-dependent glycerol 3-phosphate dehydrogenase impairs the function of transcription factors Sip4 and Cat8 required for ethanol utilization in Kluyveromyces lactis
32. Multiple regulatory elements control the expression of the yeast ACR1 gene
33. Protein kinase C in fungi—more than just cell wall integrity
34. Incidence and Genetic Bases of Nitrofurantoin Resistance in Clinical Isolates of Two Successful Multidrug-Resistant Clones ofSalmonella entericaSerovar Typhimurium: Pandemic “DT 104” and pUO-StVR2
35. Cell wall synthesis and central carbohydrate metabolism are interconnected by the SNF1/Mig1 pathway in Kluyveromyces lactis
36. The role of IS 26 in evolution of a derivative of the virulence plasmid of Salmonella enterica serovar Enteritidis which confers multiple drug resistance
37. Insertion of non-homologous DNA sequences into a regulatory gene cause a constitutive maltase synthesis in yeast
38. Isolation of the yeast phosphoglyceromutase gene and construction of deletion mutants
39. Protein kinase C in fungi--more than just cell wall integrity.
40. Transposition and homologous recombination drive evolution of pUO-StVR2, a multidrug resistance derivative of pSLT, the virulence plasmid specific of Salmonella enterica serovar Typhimurium
41. Sugar Metabolism by Saccharomyces and non-Saccharomyces Yeasts
42. Physical and Chemical Stress Factors in Yeast
43. Mutations in SNF1 complex genes affect yeast cell wall strength
44. Efficient mobilization of a resistance derivative of pSLT, the virulence plasmid specific of Salmonella enterica serovar Typhimurium, by an IncI1 plasmid
45. Yeast on the milky way: genetics, physiology and biotechnology of Kluyveromyces lactis
46. Differential control of isocitrate lyase gene transcription by non-fermentable carbon sources in the milk yeast Kluyveromyces lactis
47. Virulence-resistance plasmids (pUO-StVR2-like) in meat isolates of Salmonella enterica serovar Typhimurium
48. Milk and sugar: Regulation of cell wall synthesis in the milk yeast Kluyveromyces lactis
49. Acquisition of antimicrobial resistance determinants by virulence plasmids specific for nontyphoid serovars of Salmonella enterica
50. Together we are strong-cell wall integrity sensors in yeasts
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