Check out the accompanying Research Briefing for a summary of background, methods, main results and what we think this means for marine fishes under climate change.
Read it here: doi.org/10.1038/s415...
@natecoevo.nature.com
Analysis of marine fish populations reveals that nonlinear dynamics are widespread and that the degree of nonlinearity is elevated by high temperature variation and for species with fast life historie...
New in @natecoevo.nature.com, we show that nonlinear dynamics like oscillations & chaos occur in 81% of marine fish populations worldwide. Nonlinearity was correlated with the magnitude of fluctuations & amplified by temperature variation & in fast-lived species. 🌍🌐
Link: doi.org/10.1038/s415...
A global analysis of marine fish populations involving 243 recruitment and 266 spawner time series across 143 species finds that nonlinear dynamics are widespread and that the degree of nonlinearity i...