Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE · 2003 · 14 citations · 11 references
Pathogenic MicrobiologyEngineeringMicrobial PhysiologyLong-term SurvivalMicrobial EvolutionUnderwater MicroscopyUnicellular OrganismAnaerobic CulturingExtremophileBacterial Cystlike CellsMicrobial EcologyEnvironmental MicrobiologyAerobic CulturingMicrobial DiversityNon-spore-forming MicroorganismsProkaryotic SystemNon-spore-forming BacteriaCystlike CellsBiologyMicrobiologyMedicine
Non-spore-forming bacteria of the genera <i>Micrococcus</i> and <i>Arthrobacter</i>, including the isolates from permafrost sediments, were found to be able to form cystlike cells under special conditions. Cystlike cells maintained the viability during long-term storage (for up to several years), had undetectable respiratory activity and the elevated resistance to heating and other unfavorable conditions, possessed the specific fine structure and morphology, and were formed in the life cycles of the microorganism. These properties allow cystlike cells to be attributed to a new type of resting microbial forms. Furthermore, the distinctive feature of resting cystlike cells was their low P/S ratios and high Ca/K ratios in comparison to vegetative cells as shown by X-ray microanalysis. The experimentally obtained bacterial cystlike cells with thickened and laminated cell walls and altered texture of the cytoplasm were similar to the cells abundant in native microbial populations isolated from permafrost sediments and ancient soils of the Kolyma lowland (Siberia, Russia). Due to the inherent elevated resistance to adverse conditions and maintenance of viability for prolonged periods, resting cystlike cells are likely to ensure long-term survival of non-spore-forming bacteria in cold environments.
11
Rita R. Colwell, P R Brayton, D. Jay Grimes et al. · Nature Biotechnology · 1985 · 735 citations
Related Pathogens, Genetically Engineered Microorganisms, Pathogen Detection +9
The deep cold biosphere: facts and hypothesis
E. A. Vorobyova, V. S. Soina, Michael Gorlenko et al. · FEMS Microbiology Reviews · 1997 · 251 citations