Kobayashi, Kanae


Publications
3

Oxygen isotope fractionation during anaerobic ammonium oxidation by the marine representative Candidatus Scalindua sp

Citation
Kobayashi et al. (2025). The ISME Journal 19 (1)
Names
Ca. Scalindua
Abstract
Abstract Analysing the nitrogen (15ε) and oxygen (18ε) isotope effects of anaerobic ammonium oxidation (anammox) is essential for accurately assessing its potential contribution to fixed-N losses in the ocean, yet the 18ε of anammox remains unexplored. Here, we determined the previously unexplored 18ε of anammox using a highly enriched culture of the marine anammox species “Ca. Scalindua sp”. Because Scalindua significantly accelerated oxygen isotope exchange between NO2− and H2O,
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Maintenance power requirements of anammox bacteria “Candidatus Brocadia sinica” and “Candidatus Scalindua sp.”

Citation
Okabe et al. (2021). The ISME Journal 15 (12)
Names
Ca. Brocadia sinica Ca. Scalindua
Abstract
Abstract Little is known about the cell physiology of anammox bacteria growing at extremely low growth rates. Here, “Candidatus Brocadia sinica” and “Candidatus Scalindua sp.” were grown in continuous anaerobic membrane bioreactors (MBRs) with complete biomass retention to determine maintenance energy (i.e., power) requirements at near-zero growth rates. After prolonged retentostat cultivations, the specific growth rates (μ) of “Ca. B. sinica” and “Ca. Scalindua sp.” decreased to
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Glycogen metabolism of the anammox bacterium “Candidatus Brocadia sinica”

Citation
Okabe et al. (2021). The ISME Journal 15 (5)
Names
Ca. Brocadia sinica
Abstract
Abstract Presence of glycogen granules in anaerobic ammonium-oxidizing (anammox) bacteria has been reported so far. However, very little is known about their glycogen metabolism and the exact roles. Here, we studied the glycogen metabolism in “Ca. Brocadia sinica” growing in continuous retentostat cultures with bicarbonate as a carbon source. The effect of the culture growth phase was investigated. During the growing phase, intracellular glycogen content increased up to 32.6 mg-gl
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