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Meir, P.

Publications and source records attributed to Meir, P..

2 recordsLinked to original sources

Induced drought strongly affects richness and composition of ground-dwelling ants in the eastern Amazon

Environmental change scenarios caused by low precipitation forecast species loss in tropical regions. We use one year of data from a long-term rainwater exclusion experiment in primary Amazonian rainforest to test whether induced water stress and covarying changes in soil moisture, soil respiration, tree species richness, diversity, size, and total biomass affected species richness and composition (relative abundance) of ground-dwelling ants. Induced drought reduced ant richness, whereas increased soil moisture and variability in tree biomass increased it. Species composition differed between control and rainfall-excluded plots. Occurrence of many ant species was strongly reduced by induced drought, but some generalist groups of ants were favored by it. The expected loss of ant species and changes in ant species composition in tropical forests likely will lead to cascading effects on ecosystem processes and the services they mediate.

ecology

Evolutionary heritage shapes tree distributions along an Amazon-to-Andes elevation gradient

Understanding how evolutionary constraints shape the elevational distributions of tree lineages provides valuable insight into the future of tropical montane forests under global change. With narrow elevational ranges, high taxonomic turnover, frequent habitat specialisation, and exceptional levels of endemism, tropical montane forests and trees are predicted to be highly sensitive to environmental change. Using plot census data from a gradient traversing >3000 m in elevation on the Amazonian flank of the Peruvian Andes, we employ phylogenetic approaches to assess the influence of evolutionary heritage on distribution trends of trees at the genus level. We find that closely related lineages tend to occur at similar mean elevations, with sister genera pairs occurring a mean 254 m in elevation closer to each other than the mean elevational difference for all genera pairs. We also demonstrate phylogenetic clustering both above and below 1750 m a.s.l, corresponding roughly to the cloud-base ecotone. Belying these general trends, some lineages occur across many different elevations. However, these highly plastic lineages are not phylogenetically clustered. Overall, our findings suggest that tropical montane forests are home to unique tree lineage diversity, constrained by their evolutionary heritage and vulnerable to substantial losses under environmental changes, such as rising temperatures or an upward shift of the cloud base.

ecology