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Frontiers in Plant Science|August 5, 2022
Two-Phase Conceptual Framework of Phosphatase Activity and Phosphorus BioavailabilityAamir Manzoor, Michaela A Dippold, Sebastian Loeppmann, et al.The Science of the Total Environment|February 7, 2024
Microbial strategies for phosphorus acquisition in rice paddies under contrasting water regimes: Multiple source tracing by <sup>32</sup>P and <sup>33</sup>PChaoqun Wang, Michaela A Dippold, Yakov Kuzyakov, et al.Rapid Communications in Mass Spectrometry : RCM|February 6, 2019
Compound-specific <sup>13</sup> C stable isotope probing confirms synthesis of polyhydroxybutyrate by soil bacteriaKyle Mason-Jones, Callum C Banfield, Michaela A DippoldRapid Communications in Mass Spectrometry : RCM|February 13, 2014
Improved δ(13)C analysis of amino sugars in soil by ion chromatography-oxidation-isotope ratio mass spectrometryMichaela A Dippold, Stefanie Boesel, Anna Gunina, et al.Science Advances|November 4, 2022
In situ diversity of metabolism and carbon use efficiency among soil bacteriaWeichao Wu, Paul Dijkstra, Bruce A Hungate, et al.The ISME Journal|February 4, 2017
Soil microorganisms can overcome respiration inhibition by coupling intra- and extracellular metabolism: <sup>13</sup>C metabolic tracing reveals the mechanismsEzekiel K Bore, Carolin Apostel, Sara Halicki, et al.Frontiers in Microbiology|June 15, 2017
Microbial Metabolism in Soil at Subzero Temperatures: Adaptation Mechanisms Revealed by Position-Specific <sup>13</sup>C LabelingEzekiel K Bore, Carolin Apostel, Sara Halicki, et al.The Science of the Total Environment|August 20, 2022
Keep oxygen in check: An improved in-situ zymography approach for mapping anoxic hydrolytic enzyme activities in a paddy soilChaoqun Wang, Nataliya Bilyera, Evgenia Blagodatskaya, et al.The Science of the Total Environment|November 17, 2020
Contribution of the Fenton reaction and ligninolytic enzymes to soil organic matter mineralisation under anoxic conditionsCarolina Merino, Francisco Matus, Yakov Kuzyakov, et al.Nature Communications|April 19, 2023
Intracellular carbon storage by microorganisms is an overlooked pathway of biomass growthKyle Mason-Jones, Andreas Breidenbach, Jens Dyckmans, et al.Pageof 4