
doi: 10.1007/bf00457880
pmid: 6311094
A heterotrophic nitrifying Alcaligenes sp. from soil was grown as a denitrifier on nitrate and subjected to oxidant pulse experiments to ascertain the apparent efficiencies of proton translocations during O2 and nitrogen-oxide respirations. With endogenous substrate as the reducing agent the leads to H+/2e- ratios, extrapolated to zero amount of oxidant per pulse, were 9.4, 3.7, 4.3 and 3.5 for O2, nitrate, nitrite and N2O, respectively. The value for O2 and those for the N-oxides are, respectively, somewhat larger and smaller than corresponding values for Paracoccus denitrificans. None of the three permeant ions employed with the Alcaligenes sp. (valinomycin-K+, thiocyanate and triphenylmethylphosphonium) was ideal for all purposes. Thiocyanate provided highest ratios for O2 but abolished the oxidant pulse response for nitrate and N2O. Valinomycin was slow to penetrate to the cytoplasmic membrane and relatively high concentrations were required for optimal performance. Triphenylmethylphosphonium enhanced passive proton permeability and diminished proton translocation at concentrations required to realize the maximal oxidant pulse response.
Nitrates, Valinomycin, Nitrogen, Onium Compounds, Oxygen Consumption, Nitrogen Oxides, Alcaligenes, Protons, Nitrites, Thiocyanates, Triphenylmethyl Compounds, Hydrogen
Nitrates, Valinomycin, Nitrogen, Onium Compounds, Oxygen Consumption, Nitrogen Oxides, Alcaligenes, Protons, Nitrites, Thiocyanates, Triphenylmethyl Compounds, Hydrogen
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