By Allen I. Laskin, Geoffrey M. Gadd, Sima Sariaslani
Released considering that 1959, Advances in utilized Microbiology remains to be the most broadly learn and authoritative evaluation resources in microbiology. The sequence includes complete stories of the most up-tp-date learn in utilized microbiology. fresh parts coated comprise bacterial variety within the human intestine, protozoan grazing of freshwater biofilms, metals in yeast fermentation procedures and the translation of host-pathogen discussion via microarrays. Eclectic volumes are supplemented via thematic volumes on a variety of issues, together with Archaea and ill development syndrome. influence issue for 2009: 1.860. * Contributions from prime specialists and specialists * Informs and updates on the entire newest advancements within the box * Reference and consultant for scientists and experts desirous about developments in utilized microbiology
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Extra resources for Advances in Applied Microbiology, Volume 75
2008b). , 1992). , 2002). However, most of the denitrifier diversity in soils is not covered by cultured denitrifiers, and thus molecular analyses based on functional marker genes for denitrification as mentioned above are commonly applied. Due to the polyphyletic origin of denitrification, it is impossible to apply the commonly used 16S rRNA gene-based approach and hence, research has focused on targeting functional marker genes for the process. In the complete reduction of nitrate to dinitrogen, denitrification displays four respective dissimilatory reductases, that is, nitrate reductase, nitrite reductase, NO reductase, and N2O reductase, encoded by the genes narGH/napA, nirK/nirS, norB, and nosZ, respectively.
Kim, J. , Park, J. , Kim, S. , Desiderio, D. , Kim, Y. , Kim, K. , and Gho, Y. S. (2009). Gram-positive bacteria produce membrane vesicles: Proteomics-based characterization of Staphylococcus aureus-derived membrane vesicles. Proteomics 9, 5425–5436. , Clarke, A. , and Beveridge, T. J. (1998). Gram-negative bacteria produce membrane vesicles which are capable of killing other bacteria. J. Bacteriol. 180, 5478–5483. , and Shi, W. (2003). Extracellular polysaccharides mediate pilus retraction during social motility of Myxococcus xanthus.
Microbiology 150, 2161–2169. , Cordero, R. , Nakouzi, A. , and Casadevall, A. (2010). Bacillus anthracis produces membrane-derived vesicles containing biologically active toxins. Proc. Natl. Acad. Sci. USA 107, 19002–19007. , Gaillard, M. , and Hozbor, D. (2008). Outer membrane vesicles as acellular vaccine against pertussis. Vaccine 26, 4639–4646. , and Sgaard-Andersen, L. (2008). Regulated secretion of a protease activates intercellular signaling during fruiting body formation in M. xanthus.