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Ecology Letters · 2026 · Vol. 29 · Issue 8 · Wiley
Plant recruitment—the transition from seed dispersal to seedling establishment—is a vulnerable stage strongly shaped by canopy plants, which modify microclimates, soils, and biotic interactions relative to open ground. Using a global database covering 142 communities across ten terrestrial biomes, we examined canopy effects on taxonomic and phylogenetic diversity at global and local scales, quantified with Hill numbers ( q = 0...
Ecology Letters · 2023 · Vol. 26 · Issue 10 · Wiley
Theory suggests that increasingly long, negative feedback loops of many interacting species may destabilize food webs as complexity increases. Less attention has, however, been paid to the specific ways in which these ‘delayed negative feedbacks’ may affect the response of complex ecosystems to global environmental change. Here, we describe five fundamental ways in which these feedbacks might pave the way for abrupt, large‐sca...
Ecology Letters · 2020 · Vol. 23 · Issue 1 · Wiley
Changing conditions may lead to sudden shifts in the state of ecosystems when critical thresholds are passed. Some well‐studied drivers of such transitions lead to predictable outcomes such as a turbid lake or a degraded landscape. Many ecosystems are, however, complex systems of many interacting species. While detecting upcoming transitions in such systems is challenging, predicting what comes after a critical transition is t...
Ecology Letters · 2016 · Vol. 19 · Issue 1 · Wiley
Similarity among species in traits related to ecological interactions is frequently associated with common ancestry. Thus, closely related species usually interact with ecologically similar partners, which can be reinforced by diverse co‐evolutionary processes. The effect of habitat fragmentation on the phylogenetic signal in interspecific interactions and correspondence between plant and animal phylogenies is, however, unknow...
Ecology Letters · 2014 · Vol. 17 · Issue 3 · Wiley
Declines in pollinator populations may harm biodiversity and agricultural productivity. Little attention has, however, been paid to the systemic response of mutualistic communities to global environmental change. Using a modelling approach and merging network theory with theory on critical transitions, we show that the scale and nature of critical transitions is likely to be influenced by the architecture of mutualistic networ...
FOOD WEB COHESIONNARA Subscribed
Ecology · 2004 · Vol. 85 · Issue 2 · Wiley
Ecology Letters · 2002 · Vol. 5 · Issue 6 · Wiley
Recent studies of biological networks have focused on the distribution of the number of links per node. However, the connectivity distribution does not uncover all the complexity of their topology. Here, we analyse the relation between the connectivity of a species and the average connectivity of its nearest neighbours in three of the most resolved community food webs. We compare the pattern arising with the one recently repor...
Ecology Letters · 2002 · Vol. 5 · Issue 1 · Wiley
In this paper we explore simple food web models to study how metacommunity structure affects species response to habitat loss. We find that patch abundances and extinction thresholds vary according to the kind of food web. Second, for intermediate species, a slight decrease in the exploration cost of the better competitor has a strong effect on the extinction threshold of the poorer competitor. When predicting extinction risk...