Understanding the effect of litter mixing on litter decomposition rates is a prerequisite for predicting global carbon and nutrient cycling. However, the complex interactions associated with the decomposition of litter mixtures hinder their inclusion in global models. Soil fauna play an important role in the decomposition of litter mixtures, and their body size affects their ability to decompose litter. However, how different groups of soil fauna interact with litter traits to drive litter mixture decomposition remains poorly known. Here, through a field leaf litterbag decomposition experiment, we tested how soil fauna size and litter traits affect the decomposition of litter mixtures. We hypothesized that: (H1) The rate of decomposition and the magnitude of the litter mixing effect are greater in the presence of macrofauna. (H2) The effect of litter traits on the litter decomposition rate and the litter mixing effect decreases as the size of soil fauna increases. We used litter from two plant functional groups (trees and lianas) and incubated 27 litter treatments, including 12 single species, six 2-species mixtures, and nine 4-species mixtures. Each litter treatment was incubated using three litterbag mesh size treatments representing access to fauna of increasing body size (0.07 mm, 2.0 mm, and 5.0 mm) for 365 days. Both H1 and H2 were only partially supported. Macrofauna access accelerated decomposition and increased the litter mixing effect for tree-only mixtures. Initial litter traits predicted mixture decomposition rates in the presence of microbes and mesofauna, but not in the presence of macrofauna. Surprisingly, initial traits did not predict the litter mixing effect. This study highlights that litter traits may vary in their importance to different groups of soil fauna. In nature, therefore, where fauna communities (micro-, meso-, and macro-fauna) co-occur, and litter mixtures vary spatially, it may be difficult to predict decomposition rates.
This work is licensed under © Elsevier Ltd. All rights are reserved.
This work is licensed under © Elsevier Ltd. All rights are reserved.
DOI:
https://doi.org/10.1016/j.soilbio.2026.110163Altmetric score:
Dimensions Citation Count:
Export citation:
RIS (.ris)
Endnote (.ciw)
Publication year
2026
ISSN
0038-0717
Authors
Njoroge, D.M.; Zhu, Y.; Codjia, J.E.I.; Zuo, J.; Dossa, G.G.O.; Song, Y.; Schaefer, D.; Roeder, M.; Harrison, R.D.; Cornelissen, J.H.
Language
English
Keywords
carbon cycle, forest ecosystem, leaf litter, litter decomposition, macrofauna, mesofauna, nutrient cycling, organic matter, soil biology, soil ecology, soil fauna, species diversity
Source
Soil Biology and Biochemistry. 220: 110163
Geographic
China




