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Department of Radiation Biology,
Institute of Aerospace Medicine,
Space Microbiology Research Group,
Department of Radiation Biology, Institute of Aerospace Medicine, Space Microbiology Research Group
Ralf Moeller has not added Biography.
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A method for extracting RNA from dormant and germinating Bacillus subtilis strain 168 endospores.
Current microbiology Sep, 2006 | Pubmed ID: 16897257
UV-radiation-induced formation of DNA bipyrimidine photoproducts in Bacillus subtilis endospores and their repair during germination.
International microbiology : the official journal of the Spanish Society for Microbiology Mar, 2007 | Pubmed ID: 17407059
DNA bipyrimidine photoproduct repair and transcriptional response of UV-C irradiated Bacillus subtilis.
Archives of microbiology Oct, 2007 | Pubmed ID: 17551712
Roles of the major, small, acid-soluble spore proteins and spore-specific and universal DNA repair mechanisms in resistance of Bacillus subtilis spores to ionizing radiation from X rays and high-energy charged-particle bombardment.
Journal of bacteriology Feb, 2008 | Pubmed ID: 18055591
Role of DNA protection and repair in resistance of Bacillus subtilis spores to ultrahigh shock pressures simulating hypervelocity impacts.
Applied and environmental microbiology Nov, 2008 | Pubmed ID: 18791028
Roles of small, acid-soluble spore proteins and core water content in survival of Bacillus subtilis spores exposed to environmental solar UV radiation.
Applied and environmental microbiology Aug, 2009 | Pubmed ID: 19542328
Genomic bipyrimidine nucleotide frequency and microbial reactions to germicidal UV radiation.
Archives of microbiology Jul, 2010 | Pubmed ID: 20454780
UV photoreactions of the extremely haloalkaliphilic euryarchaeon Natronomonas pharaonis.
FEMS microbiology ecology Aug, 2010 | Pubmed ID: 20491923
Astrobiological aspects of the mutagenesis of cosmic radiation on bacterial spores.
Astrobiology Jun, 2010 | Pubmed ID: 20624059
Effect of radioprotective agents in sporulation medium on Bacillus subtilis spore resistance to hydrogen peroxide, wet heat and germicidal and environmentally relevant UV radiation.
Journal of applied microbiology Jun, 2011 | Pubmed ID: 21410852
Role of the Nfo and ExoA apurinic/apyrimidinic endonucleases in radiation resistance and radiation-induced mutagenesis of Bacillus subtilis spores.
Journal of bacteriology Jun, 2011 | Pubmed ID: 21441501
Role of altered rpoB alleles in Bacillus subtilis sporulation and spore resistance to heat, hydrogen peroxide, formaldehyde, and glutaraldehyde.
Archives of microbiology Sep, 2012 | Pubmed ID: 22484477
Mutagenesis in bacterial spores exposed to space and simulated martian conditions: data from the EXPOSE-E spaceflight experiment PROTECT.
Astrobiology May, 2012 | Pubmed ID: 22680692
Protective role of spore structural components in determining Bacillus subtilis spore resistance to simulated mars surface conditions.
Applied and environmental microbiology Dec, 2012 | Pubmed ID: 23064347
Multifactorial resistance of Bacillus subtilis spores to high-energy proton radiation: role of spore structural components and the homologous recombination and non-homologous end joining DNA repair pathways.
Astrobiology Nov, 2012 | Pubmed ID: 23088412
Systematic investigation of germination responses of Bacillus subtilis spores in different high-salinity environments.
FEMS microbiology ecology May, 2015 | Pubmed ID: 25764471
Involvement of Coat Proteins in Bacillus subtilis Spore Germination in High-Salinity Environments.
Applied and environmental microbiology Oct, 2015 | Pubmed ID: 26187959
Improvement of Biological Indicators by Uniformly Distributing Bacillus subtilis Spores in Monolayers To Evaluate Enhanced Spore Decontamination Technologies.
Applied and environmental microbiology Jan, 2016 | Pubmed ID: 26801572
An improved protocol for harvesting Bacillus subtilis colony biofilms.
Journal of microbiological methods Mar, 2017 | Pubmed ID: 28069469
Bacillus subtilis DisA helps to circumvent replicative stress during spore revival.
DNA repair Nov, 2017 | Pubmed ID: 28961460
German Aerospace Center (DLR e.V.)
Felix M. Fuchs1,
Marina Raguse1,2,3,
Marcel Fiebrandt2,
Kazimierz Madela4,
Peter Awakowicz2,
Michael Laue4,
Katharina Stapelmann3,
Ralf Moeller1
1Department of Radiation Biology, Institute of Aerospace Medicine, Space Microbiology Research Group, German Aerospace Center (DLR e.V.),
2Institute of Electrical Engineering and Plasma Technology, Faculty of Electrical Engineering and Information Technology, Ruhr-University Bochum,
3Institute of Electrical Engineering and Plasma Technology, Faculty of Electrical Engineering and Information Technology, Biomedical Applications of Plasma Technology, Ruhr-University Bochum,
4Advanced Light and Electron Microscopy (ZBS 4), Robert Koch Institute
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