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Lepori, V. J.

Publications and source records attributed to Lepori, V. J..

2 recordsLinked to original sources

Interplay of immigration and coevolution constrains the structure of specialist-generalist communities

Species and populations in nature fall along a specialist-generalist continuum in habitat preferences and resource use. However, most studies focusing on assembly, niche packing and diversification have considered solely niche positions within a community. We study how the co-evolution of niche position and degree of specialization affects packing, coexistence, and properties of the resulting communities under different modes of community assembly. We observe that evolution can lead to diversification and spontaneous emergence of asymmetric configurations of generalist and specialist phenotypes. Moreover, there exist multiple alternative evolutionarily stable states, with either many specialists or fewer generalists, some of which are only locally uninvadable. Contingency on assembly history shows that both local evolutionary adaptation and dispersal processes influence community-level eco-evolutionary dynamics and the structure of communities. By comparing communities along a continuum of assembly modes going from pure coevolution to pure dispersal, we find that high rates of evolution constrain richness while promoting generalism, partly because pure evolutionary communities become trapped at local evolutionary optima. In contrast, communities shaped by strong immigration tend to be rich in specialist species. Finally, high rates of evolution decrease invasion success in mixed assembly scenarios, a pattern consistent with the phenomenon of community monopolization.

ecology↗

Robustness vs productivity during evolutionary community assembly: short-term synergies and long-term trade-offs

The realization that evolutionary feedbacks need to be considered to fully grasp ecological dynamics has sparked interest in the effect of evolution on community properties like coexistence and productivity. However, little is known about the evolution of community robustness and productivity along diversification processes in species-rich systems. We leverage the recent structural approach to coexistence together with adaptive dynamics to study such properties and their relationships in a general trait-based model of competition on a niche axis. We show that the effects of coevolution on coexistence are two-fold and contrasting depending on the timescale considered. In the short term, evolution of niche differentiation strengthens coexistence, while long-term diversification leads to niche packing and decreased robustness. Moreover, we find that co-evolved communities tend to be on average more robust and more productive than non-evolutionary assemblages. We illustrate how our theoretical predictions echo in observed empirical patterns and the implications of our results for empiricists and applied ecologists. We suggest that some of our results such as the improved robustness of Evolutionary Stable Communities could be tested experimentally in suitable model systems.

ecology↗