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Journal Article
Biological nitrogen fixation is catalyzed by the molybdenum (Mo), vanadium (V) and iron (Fe)-only nitrogenase metalloenzymes. Studies with purified enzymes have found that the ‘alternative’ V- and Fe-nitrogenases generally reduce N2 more slowly and produce more byproduct H2 than the Mo-nitrogenase, leading to an assumption that their usage results…
Journal Article
Introduction After publication of this work, it was brought to our attention that it has not been tested whether R. palustris CGA009 and its derivative strains can use dimethyl sulfoxide (DMSO) as an electron sink (Luxem et al., 2020). Here, we report the results of additional bioinformatic, physiological, and chemical experiments to test…
Journal Article
Global methane (CH4) emissions have reached approximately 600 Tg per year, 20%-40% of which are from wetlands. Of the primary factors affecting these emissions, the water table level is among the most uncertain. Here we conduct a global meta-analysis of chamber and flux-tower observations of CH4 emissions and employ a novel mechanistic model to…
Journal Article
Microbes use siderophores to access essential iron resources in the environment. Over 500 siderophores are known, but they utilize a small set of common moieties to bind iron. Azotobacter chroococcum expresses iron-rich nitrogenases, with which it reduces N2. Though an important agricultural inoculant, the structures of its iron-binding molecules…