Electron microscopy showed that the needle-like U precipitates were associated with the inner and outer membranes of strain HN-41 cells incubated anaerobically with thiosulfate. Energy-dispersive X-ray spectroscopy and associated mapping analyses on a single intracellular needle-like particle indicated the...
HN-41 is capable of producing various nanoscale minerals due to its versatile respiratory reduction activities in a range of elements. Herein we report that free-standing uniformed goethite nanowires are synthesized by Shewanella sp. HN-41 under well-controlled bacterial culture conditions. A ...
J Appl Bacteriol 34:41–50 PubMed CAS Google Scholar Hirota K, Nodasaka Y, Orikasa Y, Okuyama H, Yumoto I (2005) Shewanella pneumatophori sp. nov., an eicosapentaenoic acid-producing marine bacterium isolated from the intestines of Pacific mackerel (Pneumatophorus japonicus). Int J Syst ...
To confirm the functional assignment of GlcP, we constructed the ΔglcPMal knockout mutant in Shewanella sp. ANA-3, and tested it for glucose-dependent growth. In contrast to the wild-type ANA-3, the ΔglcPMalstrain was unable to grow on D-glucose as a sole carbon and energy source, ...
However, at cold temperatures HN-S levels are reduced, allowing phage excision and ssrA gene impairment. Bacteria with excised phages survive longer at cold temperatures and produce more biofilms. Although phage excision occurs only in a small fraction of cells, it is enough to promote the ...
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Shewanella sp. strain HN-41 was previously shown to produce novel, photoactive, As-S nanotubes via the reduction of As(V) and S2O32 under anaerobic conditi... S Jiang,JH Lee,MG Kim,... - 《Applied & Environmental Microbiology》 被引量: 54发表: 2009年 Horizontally structured microbial ...
Synthesis of selenium nanoparticles from selenite byShewanellasp. HN-41 demonstrated that particle size depended on the reaction time and biomass of cells. The slow reaction and low biomass tended to form small particles. In this study,Shewanellasp. HN-41 was introduced into the anode of a non...
Organic acid-dependent iron mineral formation by a newly isolated iron-reducing bacterium, Shewanella sp HN-41 [J]. 2007,1(1) .Lee et al., " Organic Acid-Dependent Iron Mineral Formation by Newly Isolated Iron-Reducing Bacterium, Shewanella sp. HN-41. " Geomicrobiology Journal, v.24, pp...
The biotransformation of heavy metals from contaminated soil was examined using a facultative anaerobic bacterium Shewanella sp. HN-41. The experiments were carried out to assess the influence of glucose at various pH on the transformation of heavy metals from soil thorough solubilization. A ...