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Philipp A. Nauer
Philipp A. Nauer
Postdoctoral Fellow, Monash University
Verified email at monash.edu
Title
Cited by
Cited by
Year
Trace gas oxidizers are widespread and active members of soil microbial communities
SK Bay, X Dong, JA Bradley, PM Leung, R Grinter, T Jirapanjawat, ...
Nature microbiology 6 (2), 246-256, 2021
1082021
Multiple energy sources and metabolic strategies sustain microbial diversity in Antarctic desert soils
M Ortiz, PM Leung, G Shelley, T Jirapanjawat, PA Nauer, ...
Proceedings of the National Academy of Sciences 118 (45), e2025322118, 2021
912021
Termite mounds mitigate half of termite methane emissions
PA Nauer, LB Hutley, SK Arndt
Proceedings of the National Academy of Sciences 115 (52), 13306-13311, 2018
682018
Bark-dwelling methanotrophic bacteria decrease methane emissions from trees
LC Jeffrey, DT Maher, E Chiri, PM Leung, PA Nauer, SK Arndt, DR Tait, ...
Nature communications 12 (1), 2127, 2021
602021
Activity and diversity of methane-oxidizing bacteria in glacier forefields on siliceous and calcareous bedrock
PA Nauer, B Dam, W Liesack, J Zeyer, MH Schroth
Biogeosciences 9 (6), 2259-2274, 2012
452012
On-farm trial on the effectiveness of the nitrification inhibitor DMPP indicates no benefits under commercial Australian farming practices
PA Nauer, BJ Fest, L Visser, SK Arndt
Agriculture, Ecosystems & Environment 253, 82-89, 2018
312018
Soil–methane sink increases with soil age in forefields of Alpine glaciers
E Chiri, PA Nauer, R Henneberger, J Zeyer, MH Schroth
Soil Biology and Biochemistry 84, 83-95, 2015
302015
High temporal and spatial variability of atmospheric-methane oxidation in alpine glacier forefield soils
E Chiri, PA Nauer, EM Rainer, J Zeyer, MH Schroth
Applied and environmental microbiology 83 (18), e01139-17, 2017
282017
Termite mounds contain soil-derived methanotroph communities kinetically adapted to elevated methane concentrations
E Chiri, C Greening, R Lappan, DW Waite, T Jirapanjawat, X Dong, ...
The ISME journal 14 (11), 2715-2731, 2020
262020
Drivers of Plot-Scale Variability of CH4 Consumption in a Well-Aerated Pine Forest Soil
M Maier, S Paulus, C Nicolai, KP Stutz, PA Nauer
Forests 8 (6), 193, 2017
252017
In situ quantification of atmospheric methane oxidation in near‐surface soils
PA Nauer, MH Schroth
Vadose zone journal 9 (4), 1052-1062, 2010
192010
Molecular hydrogen in seawater supports growth of diverse marine bacteria
R Lappan, G Shelley, ZF Islam, PM Leung, S Lockwood, PA Nauer, ...
Nature Microbiology 8 (4), 581-595, 2023
182023
Rapid image-based field methods improve the quantification of termite mound structures and greenhouse-gas fluxes
PA Nauer, E Chiri, D De Souza, LB Hutley, SK Arndt
Biogeosciences 15 (12), 3731-3742, 2018
182018
Termite gas emissions select for hydrogenotrophic microbial communities in termite mounds
E Chiri, PA Nauer, R Lappan, T Jirapanjawat, DW Waite, KM Handley, ...
Proceedings of the National Academy of Sciences 118 (30), e2102625118, 2021
162021
Trace gas oxidizers are widespread and active members of soil microbial communities. Nat Microbiol 6: 246–256
SK Bay, X Dong, JA Bradley, PM Leung, R Grinter, T Jirapanjawat, ...
132021
Poly-use multi-level sampling system for soil-gas transport analysis in the vadose zone
PA Nauer, E Chiri, MH Schroth
Environmental science & technology 47 (19), 11122-11130, 2013
132013
Bark-dwelling methanotrophic bacteria decrease methane emissions from trees. Nat Commun 12: 2127
LC Jeffrey, DT Maher, E Chiri, PM Leung, PA Nauer, SK Arndt, DR Tait, ...
122021
Inexpensive modification of Exetainers for the reliable storage of trace-level hydrogen and carbon monoxide gas samples
PA Nauer, E Chiri, T Jirapanjawat, C Greening, PLM Cook
Biogeosciences 18 (2), 729-737, 2021
82021
Disturbance of soil structure can lead to release of entrapped methane in glacier forefield soils
PA Nauer, E Chiri, J Zeyer, MH Schroth
Biogeosciences 11 (3), 613-620, 2014
82014
Molecular hydrogen is an overlooked energy source for marine bacteria
R Lappan, G Shelley, ZF Islam, PM Leung, S Lockwood, PA Nauer, ...
BioRxiv, 2022.01. 29.478295, 2022
62022
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