Plant and Soil· 2026Q1
Compound drought-heatwave events during establishment reinforce perennial ryegrass dominance in grassland mixtures
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- 2026year
Short summary
Compound drought-heatwave (CDHW) events during grassland establishment significantly increased perennial ryegrass (Lolium perenne) dominance to 96% biomass, undermining mixture formation and long-term ecosystem services.
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Key points
- Compound drought-heatwave (CDHW) conditions during establishment increased perennial ryegrass dominance in grassland mixtures from 72% to 96% biomass.
- Grassland mixtures exhibited greater biomass stability under CDHW compared to monocultures, but did not exceed the best monoculture's biomass.
- CDHW reduced gross primary production (GPP) in mixtures by 37%-47%, indicating grass dominance rather than complementarity.
- While Trifolium repens showed high resistance and Cichorium intybus strong recovery, mixture responses were intermediate under stress.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Aims As compound drought-heatwave (CDHW) events increasingly affect western European summers, concern is growing about the stability of managed grassland mixtures under stress, particularly during establishment—a critical window when stress can have lasting effects on productivity and ecosystem services. We therefore tested how young grassland communities respond to CDHW regarding physiological performance, biomass stability and species persistence. Methods In a controlled growth-chamber experiment, we established mesocosms of three functionally contrasting forage species ( Lolium perenne L., Cichorium intybus L., Trifolium repens L.) grown in monocultures and mixtures. Communities were exposed to ambient or CDHW conditions. Gross primary production (GPP), soil moisture, evapotranspiration and leaf water potential tracked stress and recovery dynamics, while biomass and species proportions were assessed at harvest. Results CDHW reduced GPP in most communities, with species-specific physiological strategies: T. repens showed the highest resistance, whereas C. intybus , despite a 24% decline in GPP, showed the strongest recovery. Mixture responses were intermediate, with 37%–47% GPP reductions, reflecting grass dominance rather than complementarity. At harvest, mixtures equalled but did not exceed the best monoculture, but generally showed greater biomass stability and enhanced net diversity effects under CDHW. Dominance of L. perenne increased under CDHW, from on average 72% biomass under control to 96%. Conclusion Grassland mixtures buffered biomass losses during CDHW events but lacked physiological facilitation. Biomass stability did not prevent reinforced grass dominance, highlighting a specific risk: should CDHWs strike during establishment, they can undermine successful grassland mixture formation, limiting long-term ecosystem service delivery under climate change.
The authors' abstract, as published at the source. Plant and Soil, 2026 · DOI ↗
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ForestryAgricultural and Biological Sciences