Details zur Publikation |
| Kategorie | Textpublikation |
| Referenztyp | Zeitschriften |
| DOI | 10.1038/s43247-026-03835-y |
Lizenz ![]() |
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| Titel (primär) | Microbial carbon metabolism is linked to organic matter chemistry across soil systems |
| Autor | Wasner, D.; Lechtenfeld, O.J.
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| Quelle | Communications Earth & Environment |
| Erscheinungsjahr | 2026 |
| Department | EAC |
| Sprache | englisch |
| Topic | T9 Healthy Planet |
| Supplements | Supplement 1 Supplement 2 |
| Abstract | Soil microbial growth and respiration are critical for soil organic
carbon dynamics. Yet, we lack understanding of the main controls of soil
microbial carbon metabolism at large scales (regional to global). Here
we investigated if and how the chemical composition of extractable
organic matter affects soil microbial carbon metabolism across soil
systems along a gradient of 33 temperate grassland soils. We show that
biomass-normalized rates of growth and respiration are primarily
positively linked to aliphatics such as carbohydrate-, proteinaceous-
and amino sugar-like compounds, and secondarily to unsaturated
lignin-like compounds. Biomass-normalized respiration is positively
linked to compounds with carbon in a reduced oxidation state, suggesting
carbon-conserving catabolism. Biomass-normalized growth appears
unrelated to the oxidation state of carbon, suggesting that other
mechanisms than mere energetic constraints control microbial growth in
aerobic soils. Our findings demonstrate that information on the chemical
composition of bioavailable organic matter can provide insights into
the processes that govern the fate of carbon across different
ecosystems. |
| Wasner, D., Lechtenfeld, O.J., Kaesler, J., Doetterl, S., Aeppli, M. (2026): Microbial carbon metabolism is linked to organic matter chemistry across soil systems Commun. Earth Environ. 10.1038/s43247-026-03835-y |
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