Most cited article - PubMed ID 4963362
Synthesis and degradation of surface structures by growing and non-growing Bacillus megaterium
This review summarizes the main results obtained in the fields of general and molecular microbiology and microbial genetics at the Institute of Microbiology of the Academy of Sciences of the Czech Republic (AS CR) [formerly Czechoslovak Academy of Sciences (CAS)] over more than 50 years. Contribution of the founder of the Institute, academician Ivan Málek, to the introduction of these topics into the scientific program of the Institute of Microbiology and to further development of these studies is also included.
- MeSH
- Academies and Institutes history MeSH
- History, 20th Century MeSH
- Genetics, Microbial history MeSH
- Molecular Biology history MeSH
- Check Tag
- History, 20th Century MeSH
- Publication type
- Journal Article MeSH
- Historical Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Review MeSH
- Geographicals
- Czech Republic MeSH
- MeSH
- Bacillus megaterium cytology growth & development metabolism MeSH
- Bacteriolysis MeSH
- Cell Membrane MeSH
- Cell Wall drug effects metabolism MeSH
- Pimelic Acids metabolism MeSH
- Muramidase pharmacology MeSH
- Peptidoglycan metabolism MeSH
- Carbon Radioisotopes MeSH
- Temperature MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Pimelic Acids MeSH
- Muramidase MeSH
- Peptidoglycan MeSH
- Carbon Radioisotopes MeSH
- MeSH
- Alanine analysis MeSH
- Bacillus megaterium analysis growth & development metabolism MeSH
- Cell Wall analysis metabolism MeSH
- Time Factors MeSH
- Phosphorus analysis MeSH
- Chromatography, Gel MeSH
- Glucosamine analysis MeSH
- Glycine analysis MeSH
- Aspartic Acid analysis MeSH
- Muramic Acids analysis MeSH
- Pimelic Acids analysis MeSH
- Peptidoglycan analysis MeSH
- Phosphorus Radioisotopes MeSH
- Carbon Radioisotopes MeSH
- Serine analysis MeSH
- Spores, Bacterial growth & development MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Alanine MeSH
- Phosphorus MeSH
- Glucosamine MeSH
- Glycine MeSH
- Aspartic Acid MeSH
- Muramic Acids MeSH
- Pimelic Acids MeSH
- Peptidoglycan MeSH
- Phosphorus Radioisotopes MeSH
- Carbon Radioisotopes MeSH
- Serine MeSH
- MeSH
- Autolysis MeSH
- Bacterial Proteins metabolism MeSH
- Cell Wall metabolism MeSH
- Time Factors MeSH
- Chloramphenicol MeSH
- Escherichia coli growth & development metabolism MeSH
- Carbon Isotopes MeSH
- Culture Media MeSH
- Pimelic Acids metabolism MeSH
- Leucine metabolism MeSH
- Lysine metabolism MeSH
- Mutation MeSH
- Peptidoglycan metabolism MeSH
- Spectrophotometry MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Bacterial Proteins MeSH
- Chloramphenicol MeSH
- Carbon Isotopes MeSH
- Culture Media MeSH
- Pimelic Acids MeSH
- Leucine MeSH
- Lysine MeSH
- Peptidoglycan MeSH
- MeSH
- Autolysis MeSH
- Bacillus cereus growth & development metabolism MeSH
- Bacillus megaterium enzymology growth & development metabolism MeSH
- Polysaccharides, Bacterial metabolism MeSH
- Cell Wall metabolism MeSH
- Chloramphenicol pharmacology MeSH
- Chromatography MeSH
- Decarboxylation MeSH
- Enzymes metabolism MeSH
- Glycosaminoglycans metabolism MeSH
- Carbon Isotopes MeSH
- Culture Media MeSH
- Trichloroacetic Acid MeSH
- Pimelic Acids metabolism MeSH
- Leucine metabolism MeSH
- Lysine metabolism MeSH
- Muramidase MeSH
- Penicillins pharmacology MeSH
- Peptidoglycan metabolism MeSH
- Solvents MeSH
- Spectrophotometry MeSH
- Spores, Bacterial growth & development MeSH
- Tritium MeSH
- Trypsin MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Polysaccharides, Bacterial MeSH
- Chloramphenicol MeSH
- Enzymes MeSH
- Glycosaminoglycans MeSH
- Carbon Isotopes MeSH
- Culture Media MeSH
- Trichloroacetic Acid MeSH
- Pimelic Acids MeSH
- Leucine MeSH
- Lysine MeSH
- Muramidase MeSH
- Penicillins MeSH
- Peptidoglycan MeSH
- Solvents MeSH
- Tritium MeSH
- Trypsin MeSH