Advances in Bacterial Electron Transport Systems and Their by Robert K. Poole

By Robert K. Poole

Advances in Microbial body structure: Advances in Bacterial Electron delivery structures and Their Regulation, the newest quantity within the Advances in Microbial Physiology sequence, keeps the lengthy culture of topical and critical experiences in microbiology, with this most up-to-date quantity concentrating on the advances in bacterial electron shipping platforms and their regulation.

  • Contains contributions from best experts within the box of microbial body structure
  • Informs and updates on the entire newest advancements within the field
  • Presents a major concentration for this variation at the advances made in bacterial electron shipping platforms and their regulation

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Extra resources for Advances in Bacterial Electron Transport Systems and Their Regulation

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Nielsen, J. (2005). Genome-scale analysis of Streptomyces coelicolor A3(2) metabolism. Genome Research, 15, 820–829. Boshoff, H. I. , & Barry, C. E. (2005). Tuberculosis—Metabolism and respiration in the absence of growth. Nature Reviews. Microbiology, 3, 70–80. , & Niebisch, A. (2003). The respiratory chain of Corynebacterium glutamicum. Journal of Biotechnology, 104, 129–153. , & Paget, M. S. (2003). A novel sensor of NADH/NAD+ redox poise in Streptomyces coelicolor A3(2). EMBO Journal, 60, 687–696.

Respiration in Streptomycetes 29 encoded on the genome. The marginal overlap of Nar enzyme activities in S. coelicolor suggests a highly coordinated regulation of gene expression and enzyme synthesis. 7 Physiological Consequences of Nitrate Reduction for Streptomyces With the exception of evidence for increased survival of M. tuberculosis in the long-term persistent state upon a sudden shift to anaerobiosis (Sohaskey, 2008), or potentially some very slow growth under nitrate respiratory conditions for C.

Torregrosa-Crespo et al. studies where cell growth is observed under anaerobic conditions in the presence of the mentioned compounds. This work summarises the main reported features on anaerobic metabolism in the Haloferax, one of the better described haloarchaeal genus with significant potential uses in biotechnology and bioremediation. Special attention has been paid to denitrification, also called nitrate respiration. This pathway has been studied so far from Haloferax mediterranei and Haloferax denitrificans mainly from biochemical point of view (purification and characterisation of the enzymes catalysing the two first reactions).

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