Abstract
Decomposition rates are commonly assessed from mass loss in litterbags or teabags, but underestimation may occur if organic matter (OM) enters the bags during decomposition, e.g. through colonization by fungal hyphae. We used C4-plant (lemongrass) teabags and an isotopic mass-balance approach to quantify external OM inputs to decomposing litter during a 24-month field study in two C3-plant ecosystems, a temperate forest and a heath tundra, with contrasting climates and vegetation. After 24 months, OM inputs represented 4% of recovered mass in the tundra and 22% in the forest, corresponding to an underestimation of decomposition by 3% to 6%, with stronger biases in the forest due to accelerated litter processing and belowground activity. The use of litter- or teabags containing plant material with isotopic signatures distinct from the studied system enables the quantification of OM inputs entering the bags during litter decomposition, thereby improving the comparability of decomposition rates across ecosystems.
| Original language | English |
|---|---|
| Article number | 110151 |
| Number of pages | 5 |
| Journal | Soil Biology and Biochemistry |
| Volume | 219 |
| DOIs | |
| Publication status | Published - Aug 2026 |
Bibliographical note
Publisher Copyright:© 2026 The Authors.
Keywords
- Carbon turnover
- Litter decomposition
- Litterbags
- Mesh bags
- Mycelia
- Nitrogen cycling
- Stable isotopes
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