Fluctuating growth rate and spatial diffusion shape plankton diversity
Giorgio Vittorio Visco, Kobe Simoens, Emanuele Pigani, Diana Sarno, Samir Suweis, Daniele Iudicone, Sandro Azaele
Abstract
Planktonic communities exhibit ubiquitous population distributions and patchy spatial structures, yet the fundamental mechanisms driving them remain debated. Here, we derive these regularities from a minimalistic theoretical description that incorporates stochastic fluctuations in growth rates and effective ocean dispersal. We combine global metabarcoding, microscopy, and high-resolution chlorophyll datasets and show that the decay of spatial correlations, the crossover regimes of Taylor's law, the patterns of local species diversity and biomass distributions agree with common underlying dynamics. These results suggest that the intertwined effect of diffusivity and fluctuating growth rate, captured by an emergent correlation length, shapes plankton spatial heterogeneity from local to long-range scales, reconciling local variability with macroecological patterns.
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