Related Experiment Video
Updated: Sep 8, 2026

JenaTron - An Experimental Approach to Study the Effects of Plant History and Soil History on Grassland Ecosystem Functioning
Published on: March 21, 2025
Response diversity increases functional but decreases compositional stability of grassland communities
Manuel Pitzer1, Vincent Zieschank1, Wolfgang Trutschnig2
1Marburg University, Department of Biology, Evolutionary Ecology of Plants, Marburg, 35043, Germany.
Abstract:
The insurance hypothesis of biodiversity assumes that biodiversity increases ecosystem stability when functionally redundant species exhibit distinct responses to environmental changes, allowing some species to compensate for the loss of others. However, empirical evidence remains scarce. Using a novel approach to quantify the responses of 96 plant species to land use, we tested the hypothesis combining field data with a common garden experiment. By subjecting transplanted grassland plant communities to different land-use intensities, we quantified response diversity (defined as the variability of responses among species to the same environmental factor), species composition, and functionality from spectral data before and after experimental changes. Our results show that land-use intensification reduced response diversity of plant communities in the field and the common garden. Moreover, our results indicate that response diversity increases functional stability but decreases stability in terms of species composition (temporal β-diversity), that is, response-diverse communities tended to lose species with fewer replacements while response-depleted communities mainly experienced species turnover. Our work highlights that response diversity underlies multiple dimensions of ecosystem stability as it stabilizes functionality but destabilizes species composition. We further discuss future research directions to adapt the concept of response diversity under global change scenarios.
Related Concept Videos
Ecological Disturbance
Ecological Succession
Genetic Drift
Types of Selection
Threats to Biodiversity
Diversity of Protists II

