Feeding habits and multifunctional classification of soil‐associated consumers from protists to vertebrates
Питательные привычки и многофункциональная классификация почвенных консументов от протистов до позвоночных
2022-01-20
SCID: 54.1/qe9xw7re
Discuss with AI
DNA gut content analysismultifunctional classificationomnivory in soil food webssoil consumer feeding habitsstable isotope analysis
Figures from the paper
Abstract (AI)
Soil organisms drive major ecosystem functions by mineralising carbon and releasing nutrients during decomposition processes, which supports plant growth, aboveground biodiversity and, ultimately, human nutrition. Soil ecologists often operate with functional groups to infer the effects of individual taxa on ecosystem functions and services. Simultaneous assessment of the functional roles of multiple taxa is possible using food-web reconstructions, but our knowledge of the feeding habits of many taxa is insufficient and often based on limited evidence. Over the last two decades, molecular, biochemical and isotopic tools have improved our understanding of the feeding habits of various soil organisms, yet this knowledge is still to be synthesised into a common functional framework. Here, we provide a comprehensive review of the feeding habits of consumers in soil, including protists, micro-, meso- and macrofauna (invertebrates), and soil-associated vertebrates. We have integrated existing functional group classifications with findings gained with novel methods and compiled an overarching classification across taxa focusing on key universal traits such as food resource preferences, body masses, microhabitat specialisation, protection and hunting mechanisms. Our summary highlights various strands of evidence that many functional groups commonly used in soil ecology and food-web models are feeding on multiple types of food resources. In many cases, omnivory is observed down to the species level of taxonomic resolution, challenging realism of traditional soil food-web models based on distinct resource-based energy channels. Novel methods, such as stable isotope, fatty acid and DNA gut content analyses, have revealed previously hidden facets of trophic relationships of soil consumers, such as food assimilation, multichannel feeding across trophic levels, hidden trophic niche differentiation and the importance of alternative food/prey, as well as energy transfers across ecosystem compartments. Wider adoption of such tools and the development of open interoperable platforms that assemble morphological, ecological and trophic data as traits of soil taxa will enable the refinement and expansion of the multifunctional classification of consumers in soil. The compiled multifunctional classification of soil-associated consumers will serve as a reference for ecologists working with biodiversity changes and biodiversity-ecosystem functioning relationships, making soil food-web research more accessible and reproducible.
Key Findings
1
Many traditional functional groups used in soil ecology and food-web models are shown to feed on multiple resource types, challenging models based on distinct resource-based energy channels.
2
Novel molecular, biochemical and isotopic methods (stable isotopes, fatty acids, DNA gut content) revealed widespread omnivory, multichannel feeding, and previously hidden trophic relationships among soil taxa.
3
The authors compiled a comprehensive review and overarching multifunctional classification of feeding habits for soil consumers from protists to vertebrates.
4
The multifunctional classification integrates universal traits (food preferences, body mass, microhabitat specialization, protection and hunting mechanisms) across taxa to improve realism of food-web reconstructions.
5
The paper calls for wider adoption of novel methods and open interoperable platforms assembling morphological, ecological and trophic traits to refine soil consumer classifications and enhance reproducibility.
Research Object
Soil-associated consumers (protists, micro-, meso- and macrofauna, and soil-associated vertebrates)
Research Subject
Feeding habits and a multifunctional classification across taxa focusing on food resource preferences, body mass, microhabitat specialization, protection and hunting mechanisms, and multichannel/omnivorous trophic interactions
Publication Details
Publication Date
2022-01-20
Journal
Publisher
ISSN
Cited by
437
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest