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The position of nitrate respiration in evolution

Origins of Life and Evolution of Biospheres, 1977
Engelbert Broda: The Position of Nitrate Respiration in Evolution (Reply to Egami), Origins of Life 8 (1977), 173-174.
E Broda
exaly   +5 more sources

Microbial nitrate respiration – Genes, enzymes and environmental distribution

Journal of Biotechnology, 2011
Nitrate is a key node in the network of the assimilatory and respiratory nitrogen pathways. As one of the 'fixed' forms of nitrogen, nitrate plays an essential role in both nature and industry. For bacteria, it is both a nitrogen source and an electron acceptor.
Marc Strous   +2 more
exaly   +5 more sources

Respiration of Nitrate and Nitrite

EcoSal Plus, 2008
Nitrate reduction to ammonia via nitrite occurs widely as an anabolic process through which bacteria, archaea, and plants can assimilate nitrate into cellular biomass. Escherichia coli and related enteric bacteria can couple the eight-electron reduction of nitrate to ammonium to growth by coupling the nitrate and ...
Jeffrey A, Cole, David J, Richardson
openaire   +2 more sources

Comment on the position of nitrate respiration in metabolic evolution

Origins of Life and Evolution of Biospheres, 1976
This is a reply to Broda's criticism of our concept that nitrate respiration antedated oxygen respiration.
Fujio Egami, Egami Fujio
exaly   +3 more sources

Nitrate respiration in primitive eukaryotes

Nature, 1983
Nitrate respiration plays an important part in the global nitrogen cycle by initiating a chain of biologically mediated reductions of nitrogen oxides1,2. It involves the substitution of nitrate for oxygen as a terminal electron acceptor, occurs only in the absence of oxygen and is assumed to be performed only by prokaryotic organisms3,4.
B. J. Finlay   +2 more
openaire   +1 more source

Phosphorylation coupled to nitrate respiration

International Journal of Biochemistry, 1982
Abstract The field of the limited phosphorylation coupled to nitrate respiration under anaerobic conditions are reviewed concentrating on work with the cell-free systems of bacteria.
openaire   +2 more sources

Kinetic competition between microbial anode respiration and nitrate respiration in a bioelectrochemical system

Bioelectrochemistry, 2018
The Nernst-Monod model is used to describe bio-anode performance with respect to the effect of the electron donor and anode potential. However, electron competition is not considered in the model, limiting its application in wastewater treatment systems.
Aijie Wang   +2 more
exaly   +3 more sources

Comment of Egami's concept of the evolution of nitrate respiration

Origins of Life, 1976
Recent results suggest that the presence of common nitrogen salts (sodium nitrite and nitrate) in the irradiation medium can markedly protect filamentous blue green algae from potentially lethal ultraviolet light irradiation. Our results as well as general biologica-l arguments as presented by Egami (above) support and extend Egami's original view that
M, Rambler, L, Margulis
openaire   +2 more sources

Nitrate respiration in the actinomycete Streptomyces coelicolor

Biochemical Society Transactions, 2005
Streptomyces coelicolor is an obligate aerobic, filamentous soil-dwelling bacterium. Remarkably, the genome of S. coelicolor has three copies of the narGHJI operon that encodes respiratory nitrate reductase. This review summarizes our current views on the requirements for multiple nitrate reductases in S. coelicolor.
G, van Keulen   +3 more
openaire   +2 more sources

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