Beech cupules as keystone structures for soil fauna

Author:

Melguizo-Ruiz Nereida1,Jiménez-Navarro Gerardo2,Moya-Laraño Jordi1

Affiliation:

1. Functional and Evolutionary Ecology, Estación Experimental de Zonas Áridas—CSIC, Almería, Spain

2. CIBIO/InBio-UE Research Center in Biodiversity and Genetic Resources, University of Évora, Évora, Portugal

Abstract

Facilitative or positive interactions are ubiquitous in nature and play a fundamental role in the configuration of ecological communities. In particular, habitat modification and niche construction, in which one organism locally modifies abiotic conditions and favours other organisms by buffering the effects of adverse environmental factors, are among the most relevant facilitative interactions. In line with this, ‘keystone structures’, which provide resources, refuge, or advantageous services decisive for other species, may allow the coexistence of various species and thus considerably contribute to diversity maintenance. Beech cupules are woody husks harbouring beech fruits that remain in the forest soil for relatively long periods of time. In this study, we explored the potential role of these cupules in the distribution and maintenance of the soil fauna inhabiting the leaf litter layer. We experimentally manipulated cupule availability and soil moisture in the field to determine if such structures are limiting and can provide moist shelter to soil animals during drought periods, contributing to minimize desiccation risks. We measured invertebrate abundances inside relative to outside the cupules, total abundances in the leaf litter and animal body sizes, in both dry and wet experimental plots. We found that these structures are preferentially used by the most abundant groups of smaller soil animals—springtails, mites and enchytraeids—during droughts. Moreover, beech cupules can be limiting, as an increase in use was found with higher cupule densities, and are important resources for many small soil invertebrates, driving the spatial structure of the soil community and promoting higher densities in the leaf litter, probably through an increase in habitat heterogeneity. We propose that fruit woody structures should be considered ‘keystone structures’ that contribute to soil community maintenance. Therefore, beech trees may indirectly facilitate soil fauna activities through their decaying fruit husks, hence acting as ecosystem engineers.

Funder

Spanish Ministry of Science and Innovation

European Regional Development Fund

FPI fellowship

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference70 articles.

1. Responses of litter-dwelling arthropods and house mice to beech seeding in the Orongorongo Valley, New Zealand;Alley;Journal of the Royal Society of New Zealand,2001

2. A new method for non-parametric multivariate analysis of variance;Anderson;Austral Ecology,2001

3. Unexpected mechanisms sustain the stress gradient hypothesis in a tropical alpine environment;Anthelme;Journal of Vegetation Science,2012

4. lme4: Linear mixed-effects models using Eigen and S4;Bates,2015

5. Controlling the false discovery rate: a practical and powerful approach to multiple testing;Benjamini;Journal of the Royal Statistical Society,1995

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