Litcius/Paper detail

Tipping point arises earlier under a multiple-stressor scenario

Charlotte Carrier‐Belleau, Ludovic Pascal, Scott D. Tiegs, Christian Nozais, Philippe Archambault

2023Scientific Reports29 citationsDOIOpen Access PDF

Abstract

Anthropogenic impacts and global changes have profound implications for natural ecosystems and may lead to their modification, degradation or collapse. Increases in the intensity of single stressors may create abrupt shifts in biotic responses (i.e. thresholds). The effects of multiple interacting stressors may create non-additive responses, known as synergistic or antagonistic interactions. Here we combine both concepts-ecological thresholds and interactions between multiple stressors-to understand the effects of multiple interacting stressors along environmental gradients, and how this can affect the occurrence of thresholds. Using an experimental approach to investigate the effect of nutrient enrichment and saltwater intrusion on mortality in the zebra mussel, Dreissena polymorpha, we show that multiple stressors can create thresholds at lower levels of an environmental gradient. Our results reveal a major shortcoming in how we currently investigate these two ecological concepts, as considering them separately may be causing underestimation of thresholds and stressor-interaction impacts.

Topics & Concepts

StressorDreissenaEcosystemEcologyEnvironmental scienceTipping point (physics)Cumulative effectsIntrusionZebra musselBiologyMusselNeuroscienceMolluscaGeologyBivalviaElectrical engineeringEngineeringGeochemistryEcosystem dynamics and resilienceAquatic Invertebrate Ecology and BehaviorAnimal Ecology and Behavior Studies