Invariant scaling of the Species Abundance Distribution in observed and simulated marine plankton communities
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Marine plankton are functionally diverse and span over five orders of magnitude in diameter, with important consequences for marine biogeochemical cycles. Marine ecosystem simulations are beginning to resolve this diversity; however, major uncertainties persist regarding the structure and function of planktonic ecosystems. Here we diagnosed plankton Species Abundance Distributions (SADs) in large-scale surveys and in a global, mechanistic plankton community simulation. The fitted slopes of the SADs vary by less than 10% across latitude, season, and biome in both observations and the simulation. Fitting parametric SADs further reveals spatial structure in the shape and functional form of the SAD aligned with established biogeographic provinces. Together, these results demonstrate a largely invariant structure of marine plankton communities that persists despite strong environmental gradients and taxonomic turnover. These findings suggest that the emergent shape and scaling of plankton SADs reflect fundamental constraints on community assembly and provide a compact quantitative diagnostic for planktonic ecosystem structure.