Molecular analysis of genes involved in chitin degradation from the chitinolytic bacterium Bacillus velezensis
Author:
Publisher
Springer Science and Business Media LLC
Subject
Molecular Biology,General Medicine,Microbiology
Link
https://link.springer.com/content/pdf/10.1007/s10482-021-01697-2.pdf
Reference85 articles.
1. Arimori T, Kawamoto N, Shinya S, Okazaki N, Nakazawa M, Miyatake K, Fukamizo T, Ueda M, Tamada T (2013) Crystal structures of the catalytic domain of a novel glycohydrolase family 23 chitinase from Ralstonia sp. A-471 reveals a unique arrangement of the catalytic residues for inverting chitin hydrolysis. J Biol Chem 288:18696–18706
2. Arkhipova TN, Prinsen E, Veselov SU, Martinenko EV, Melentiev AI, Kudoyarova GR (2007) Cytokinin producing bacteria enhance plant growth in drying soil. Plant Soil 292:305–315
3. Bateman A, Bycroft M (2000) The structure of a LysM domain from E. coli membrane-bound lytic murein transglycosylase D (MltD). J Mol Biol 299(4):1113–1119
4. Beier S, Bertilsson S (2013) Bacterial chitin degradation - mechanisms and ecophysiological strategies. Front Microbiol 4:149
5. Berger LR, Reynolds DM (1958) The chitinase system of a strain of Streptomyces griseus. Biochim Biophys Acta 29(3):522–534
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