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Punctuated ecological equilibrium in mammal communities over evolutionary time scales

Fernando Blanco, Joaquín Calatayud, David Martín‐Perea, M. Soledad Domingo, Iris Menéndez, Johannes Müller, Manuel Hérnandez Fernández, Juan L. Cantalapiedra

2021Science43 citationsDOIOpen Access PDF

Abstract

The study of deep-time ecological dynamics has the ability to inform conservation decisions by anticipating the behavior of ecosystems millions of years into the future. Using network analysis and an exceptional fossil dataset spanning the past 21 million years, we show that mammalian ecological assemblages undergo long periods of functional stasis, notwithstanding high taxonomic volatility due to dispersal, speciation, and extinction. Higher functional richness and diversity promoted the persistence of functional faunas despite species extinction risk being indistinguishable among these different faunas. These findings, and the large mismatch between functional and taxonomic successions, indicate that although safeguarding functional diversity may or may not minimize species losses, it would certainly enhance the persistence of ecosystem functioning in the face of future disturbances.

Topics & Concepts

EcosystemEcologyPunctuated equilibriumFunctional ecologyMammalPeninsulaBiodiversityPerspective (graphical)GeographyBiologyEvolutionary biologyComputer scienceArtificial intelligenceEvolution and Paleontology StudiesAnimal Ecology and Behavior StudiesWildlife Ecology and Conservation
Punctuated ecological equilibrium in mammal communities over evolutionary time scales | Litcius