نتایج جستجو برای: anaerobic denitrifying bacteria

تعداد نتایج: 204290  

1999
Manabu Fukui Gerda Harms Ralf Rabus Andreas Schramm Friedrich Widdel Karsten Zengler Chris Boreham Heinz Wilkes

Crude oil is a complex mixture mainly composed of various saturated and aromatic hydrocarbons. Whereas degradation of hydrocarbons by oxygen-respiring microorganisms has been known for nearly one century, utilization of hydrocarbons under anoxic conditions has been investigated only during the past ten years. The present paper summarizes investigations into the anaerobic degradability of crude ...

Journal: :Journal of bacteriology 2007
Franziska Peters Yoshifumi Shinoda Michael J McInerney Matthias Boll

In the denitrifying bacterium Thauera aromatica, the central intermediate of anaerobic aromatic metabolism, benzoyl-coenzyme A (CoA), is dearomatized by the ATP-dependent benzoyl-CoA reductase to cyclohexa-1,5-diene-1-carbonyl-CoA (dienoyl-CoA). The dienoyl-CoA is further metabolized by a series of beta-oxidation-like reactions of the so-called benzoyl-CoA degradation pathway resulting in ring ...

Journal: :Applied and environmental microbiology 1992
R E Murray L L Parsons M S Smith

We examined the competitive relationship between two isolates of denitrifying bacteria, both of which grow well under aerobic conditions but differ in their ability to grow under denitrifying conditions. The growth and persistence of the two isolates, added to sterile soil or added to soil previously colonized by the other isolate, were monitored under aerobic and denitrifying (anaerobic) condi...

Journal: :Journal of bacteriology 1972
N J Jacobs J M Jacobs H E Morgan

Pseudomonas aeruginosa and P. denitrificans accumulate more protoheme and considerably more protoporphyrin during anaerobic growth under denitrifying conditions than during aerobic growth. In Escherichia coli, the small accumulation of protoporphyrin and protoheme which occurs during anaerobic growth is slightly stimulated by nitrate and markedly stimulated by oxygen.

2014
Jing Li Guangshan Wei Ningxin Wang Zheng Gao

We investigated the diversity and community composition of denitrifying bacteria in surface water from the Yellow River estuary. Our results indicated that the diversity of the denitrifying community in freshwater based on the nirK gene was higher than that in seawater. Furthermore, phylogenetic analysis suggested that the bacteria community could be distributed into eight clusters (Clusters I ...

2013
Amy V. Callaghan

Anaerobic microorganisms play key roles in the biogeochemical cycling of methane and non-methane alkanes. To date, there appear to be at least three proposed mechanisms of anaerobic methane oxidation (AOM). The first pathway is mediated by consortia of archaeal anaerobic methane oxidizers and sulfate-reducing bacteria (SRB) via "reverse methanogenesis" and is catalyzed by a homolog of methyl-co...

Journal: :Philosophical transactions of the Royal Society of London. Series B, Biological sciences 2012
Hirofumi Shoun Shinya Fushinobu Li Jiang Sang-Wan Kim Takayoshi Wakagi

We have shown that many fungi (eukaryotes) exhibit distinct denitrifying activities, although occurrence of denitrification was previously thought to be restricted to bacteria (prokaryotes), and have characterized the fungal denitrification system. It comprises NirK (copper-containing nitrite reductase) and P450nor (a cytochrome P450 nitric oxide (NO) reductase (Nor)) to reduce nitrite to nitro...

2017
Chao-Jen Shih Yi-Lung Chen Chia-Hsiang Wang Sean T.-S. Wei I-Ting Lin Wael A. Ismail Yin-Ru Chiang

Current knowledge on the biochemical mechanisms underlying microbial steroid metabolism in anaerobic ecosystems is extremely limited. Sulfate, nitrate, and iron [Fe (III)] are common electron acceptors for anaerobes in estuarine sediments. Here, we investigated anaerobic testosterone metabolism in anaerobic sediments collected from the estuary of Tamsui River, Taiwan. The anaerobic sediment sam...

2016
Sophie-Marie Martirani-Von Abercron Daniel Pacheco Patricia Benito-Santano Patricia Marín Silvia Marqués

Although bacterial anaerobic degradation of mono-aromatic compounds has been characterized in depth, the degradation of polycyclic aromatic hydrocarbons (PAHs) such as naphthalene has only started to be understood in sulfate reducing bacteria, and little is known about the anaerobic degradation of PAHs in nitrate reducing bacteria. Starting from a series of environments which had suffered diffe...

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