35 results on '"Hernández-Lucas I"'
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2. Detection of Pantoea ananatis, causal agent of leaf spot disease of maize, in Mexico
3. The Salmonella enterica serovar Typhi ltrR-ompR-ompC-ompF genes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation
4. TheSalmonella entericaSerovar TyphiltrRGene Encodes Two Proteins Whose Transcriptional Expression Is Upregulated by Alkaline pH and Repressed at Their Promoters and Coding Regions by H-NS and Lrp
5. TheSalmonella entericaserovar TyphiltrR-ompR-ompC-ompFgenes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation
6. Transcriptional Regulation of the assT - dsbL - dsbI Gene Cluster in Salmonella enterica Serovar Typhi IMSS-1 Depends on LeuO, H-NS, and Specific Growth Conditions
7. The CRISPR/Cas Immune System Is an Operon Regulated by LeuO, H-NS, and Leucine-Responsive Regulatory Protein in Salmonella enterica Serovar Typhi
8. cAMP receptor protein (CRP) positively regulates the yihU–yshA operon in Salmonella enterica serovar Typhi
9. Major roles of isocitrate lyase and malate synthase in bacterial and fungal pathogenesis
10. SoxS regulates the expression of the Salmonella enterica serovar Typhimurium ompW gene
11. The LysR-Type Transcriptional Regulator LeuO Controls Expression of Several Genes in Salmonella enterica Serovar Typhi
12. Functional Characterization of the Sinorhizobium meliloti Acetate Metabolism Genes aceA , SMc00767, and glcB
13. In Vivo Cloning Strategy for Rhizobium Plasmids
14. The S almonella enterica serovar Typhi ltrR- ompR- ompC - ompF genes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation.
15. Rhizobium tropici chromosomal citrate synthase gene
16. The Salmonella enterica Serovar Typhi ltrR Gene Encodes Two Proteins Whose Transcriptional Expression Is Upregulated by Alkaline pH and Repressed at Their Promoters and Coding Regions by H-NS and Lrp.
17. The human bile salt sodium deoxycholate induces metabolic and cell envelope changes in Salmonella Typhi leading to bile resistance.
18. The CRISPR-Cas System Is Involved in OmpR Genetic Regulation for Outer Membrane Protein Synthesis in Salmonella Typhi.
19. Protein dosage of the lldPRD operon is correlated with RNase E-dependent mRNA processing.
20. Genetic regulation, biochemical properties and physiological importance of arginase from Sinorhizobium meliloti .
21. Rhizobium tropici CIAT 899 copA gene plays a fundamental role in copper tolerance in both free life and symbiosis with Phaseolus vulgaris.
22. BLAST-XYPlot Viewer: A Tool for Performing BLAST in Whole-Genome Sequenced Bacteria/Archaea and Visualize Whole Results Simultaneously.
23. The CRISPR-Cas system in Enterobacteriaceae.
24. Culturable Facultative Methylotrophic Bacteria from the Cactus Neobuxbaumia macrocephala Possess the Locus xoxF and Consume Methanol in the Presence of Ce 3+ and Ca 2 .
25. CRISPR-Cas system presents multiple transcriptional units including antisense RNAs that are expressed in minimal medium and upregulated by pH in Salmonella enterica serovar Typhi.
26. Genetic and biochemical characterization of arginine biosynthesis in Sinorhizobium meliloti 1021.
27. Genetic and biochemical characterization of arginine biosynthesis in Sinorhizobium meliloti 1021.
28. The Salmonella enterica serovar Typhi LeuO global regulator forms tetramers: residues involved in oligomerization, DNA binding, and transcriptional regulation.
29. The coming of age of the LeuO regulator.
30. ACC (1-aminocyclopropane-1-carboxylate) deaminase activity, a widespread trait in Burkholderia species, and its growth-promoting effect on tomato plants.
31. Salmonella enterica serovar Typhimurium ompS1 and ompS2 mutants are attenuated for virulence in mice.
32. Identification of a third sulfate activation system in Sinorhizobium sp. strain BR816: the CysDN sulfate activation complex.
33. Nitrogen-fixing nodules with Ensifer adhaerens harboring Rhizobium tropici symbiotic plasmids.
34. Biodiversity of bradyrhizobia nodulating Lupinus spp.
35. Carbon Metabolism Enzymes of Rhizobium tropici Cultures and Bacteroids.
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