# Shredder species identity over diversity: Insights into litter decomposition in ponds

**Authors:** Emília Židišinová, Milan Novikmec, Marek Svitok

PMC · DOI: 10.1371/journal.pone.0327999 · PLOS One · 2025-08-14

## TL;DR

This study explores how different pond species break down leaf litter, finding that a single keystone species has a bigger impact than overall diversity.

## Contribution

The study introduces a novel method to quantify shredder functional traits and reveals the keystone role of Sericostoma in leaf litter decomposition.

## Key findings

- Neither taxonomic nor functional diversity reliably predicts leaf litter decomposition rates in ponds.
- The keystone shredder Sericostoma significantly influences decomposition rates due to unique feeding behavior and particle size preferences.
- Intra- and inter-specific variation in organic matter processing was observed among shredder species.

## Abstract

Many freshwater ecosystems rely on the decomposition of organic matter as a key process for nutrient cycling and energy flow. Small lentic freshwater ecosystems, such as ponds, often derive a large amount of energy from allochthonous detritus due to their close connection with the terrestrial environment. However, the process of leaf litter decomposition in ponds remains poorly understood. We conducted a microcosm experiment in a pond environment to investigate intra- and inter-specific variation in organic matter processing by three shredders (Tipula sp., Sericostoma sp. and Gammarus fossarum) and to assess the effects of shredder community characteristics on the mass loss of black alder (Alnus glutinosa) leaf litter. We developed a novel approach to quantify functional traits directly related to litter processing. Detailed gut content analysis revealed significant inter- and intra-specific variation in the organic matter particles ingested by individual shredder taxa. Our results showed that neither taxonomic nor functional diversity reliably predicts leaf litter decomposition rates in ponds. Instead, the keystone shredder Sericostoma showed a pronounced effect on decomposition rates driven by their unique feeding behaviour and density-dependent shifts in particle size preferences. These findings highlight the importance of a detailed understanding of species-specific functional traits and behaviour in shaping ecosystem processes, as the role of keystone species can outweigh the contributions of overall diversity measures in driving ecosystem processes.

## Linked entities

- **Species:** Tipula sp. (taxon 2908801), Sericostoma sp. (taxon 3132976), Gammarus fossarum (taxon 52638), Alnus glutinosa (taxon 3517)

## Full-text entities

- **Species:** Alnus glutinosa (species) [taxon 3517], Gammarus fossarum (species) [taxon 52638], Ilex verticillata (black-alder, species) [taxon 185559], Sericostoma (genus) [taxon 177789]

## Full text

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## Figures

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## References

97 references — full list in the complete paper: https://tomesphere.com/paper/PMC12352770/full.md

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Source: https://tomesphere.com/paper/PMC12352770