All Stories

  1. Are there Viruses in Industrial Bioleaching Econiches?
  2. Metagenome-Derived Draft Genome Sequence of Acidithiobacillus ferrooxidans RV1 from an Abandoned Gold Tailing in Neuquén, Argentina
  3. 16S rRNA and Multilocus Phylogenetic Analysis of the Iron Oxidizing Acidophiles of the Acidiferrobacteraceae Family
  4. Type IV Secretion Systems Diversity in the Acidithiobacillus Genus
  5. Genetic Basis of Metal Resistance in Acidiphilium sp. DSM 27270 (Yenapatur)
  6. Comparative Genomics Analysis of a New Exiguobacterium Strain from Salar de Huasco Reveals a Repertoire of Stress-Related Genes and Arsenic Resistance
  7. Mutantelec: AnIn Silicomutation simulation platform for comparative electrostatic potential profiling of proteins
  8. Molecular Systematics of the Genus Acidithiobacillus: Insights into the Phylogenetic Structure and Diversification of the Taxon
  9. Aerobic Lineage of the Oxidative Stress Response Protein Rubrerythrin Emerged in an Ancient Microaerobic, (Hyper)Thermophilic Environment
  10. Detection, identification and typing of Acidithiobacillus species and strains: a review
  11. Genomic and metagenomic challenges and opportunities for bioleaching: a mini-review
  12. Draft genome sequence of chloride-tolerant Leptospirillum ferriphilum Sp-Cl from industrial bioleaching operations in northern Chile
  13. The Flexible Genome of Acidophilic Prokaryotes
  14. Progress in Acidophile Genomics
  15. Acidophile Microbiology in Space and Time
  16. Multi Locus Sequence Typing scheme for Acidithiobacillus caldus strain evaluation and differentiation
  17. Genetic variability of psychrotolerant Acidithiobacillus ferrivorans revealed by (meta)genomic analysis
  18. Draft Genome Sequence of the Nominated Type Strain of "Ferrovum myxofaciens," an Acidophilic, Iron-Oxidizing Betaproteobacterium
  19. AFAL: a web service for profiling amino acids surrounding ligands in proteins
  20. DNA, Cell Wall and General Oxidative Damage Underlie the Tellurite/Cefotaxime Synergistic Effect in Escherichia coli
  21. Architecture and Gene Repertoire of the Flexible Genome of the Extreme Acidophile Acidithiobacillus caldus
  22. Analysis of Gene Expression in Response to Copper Stress in Acidithiobacillus ferrooxidans Strain D2, Isolated from a Copper Bioleaching Operation
  23. Temporal Dynamics of Genes Involved in Metabolic Pathways of C and N of L. ferriphilum, in the Industrial Bioleaching Process of Escondida Mine, Chile
  24. Comparative genomics of the oxidative stress response in bioleaching microorganisms
  25. Thiol/Disulfide System Plays a Crucial Role in Redox Protection in the Acidophilic Iron-Oxidizing Bacterium Leptospirillum ferriphilum
  26. ICEAfe1, an Actively Excising Genetic Element from the Biomining Bacterium Acidithiobacillus ferrooxidans
  27. Lessons from the genomes of extremely acidophilic bacteria and archaea with special emphasis on bioleaching microorganisms
  28. Extending the models for iron and sulfur oxidation in the extreme Acidophile Acidithiobacillus ferrooxidans
  29. A 300 kpb Genome Segment, Including a Complete Set of tRNA Genes, is Dispensable for Acidithiobacillus Ferrooxidans
  30. Predicted CO/CO2 Fixation in Ferroplasma spp. via a Novel Chimaeric Pathway
  31. Regulation of Expression of the PetI Operon Involved in Iron Oxidation in the Biomining Bacterium Acidithiobacillus Ferrooxidans
  32. Comparative Genomics Begins to Unravel the Ecophysiology of Bioleaching
  33. Selection and evaluation of reference genes for improved interrogation of microbial transcriptomes: case study with the extremophile Acidithiobacillus ferrooxidans
  34. Acidithiobacillus ferrooxidans metabolism: from genome sequence to industrial applications
  35. Comparative genome analysis of Acidithiobacillus ferrooxidans, A. thiooxidans and A. caldus: Insights into their metabolism and ecophysiology
  36. Iron homeostasis strategies in acidophilic iron oxidizers: Studies in Acidithiobacillus and Leptospirillum
  37. Microbial iron management mechanisms in extremely acidic environments: comparative genomics evidence for diversity and versatility
  38. Insights into the Metabolism and Ecophysiology of Three Acidithiobacilli by Comparative Genome Analysis
  39. Iron Homeostasis Strategies in Acidophilic Iron Oxidizers: Comparative Genomic Analyses
  40. Iron Homeostasis Strategies in Acidophilic Iron Oxidizers: Comparative Genomic Analyses
  41. Insights into the Metabolism and Ecophysiology of Three Acidithiobacilli by Comparative Genome Analysis
  42. Microarray and bioinformatic analyses suggest models for carbon metabolism in the autotroph Acidithiobacillus ferrooxidans
  43. Insights into the iron and sulfur energetic metabolism of Acidithiobacillus ferrooxidans by microarray transcriptome profiling
  44. The ferric iron uptake regulator (Fur) from the extreme acidophile Acidithiobacillus ferrooxidans
  45. Genomic insights into the iron uptake mechanisms of the biomining microorganism Acidithiobacillus ferrooxidans
  46. Aspects of the predicted physiology of Acidithiobacillus ferrooxidans deduced from an analysis of its partial genome sequence
  47. Variación morfológica y dieta en dos poblaciones de Liolaemus elongatus Koslowsky, 1896 (Iguania: Tropiduridae) del noroeste patagónico
  48. The Use Of Bioinformatics And Genome Biology To Advance Our Understanding Of Bioleaching Microorganisms