bioRxiv Science⌕ Search

Biology subjects

Gleditsch, J. M.

Publications and source records attributed to Gleditsch, J. M..

2 recordsLinked to original sources

The great acceleration of island saturation by species introductions in the Anthropocene has altered species-area relationships

The species-area relationship (SAR) is a fundamental pattern of island biogeography which is often curvilinear due to reduced accumulation of species on mid-sized island caused by island isolation and the lack of speciation present on larger islands. The curvature of SARs represents lower saturation of species on mid-sized islands and therefore accelerated species accumulation should linearize island SARs. In the Anthropocene, island species accumulation has accelerated from introduced species. We hypothesize three new patterns. First, the saturation of species for the most unsaturated islands should increase more from introduced species than other islands. Second, SARs should become more linear as islands accumulate more species. Third, introduced species should greatly accelerate the island saturation process. We assessed these patterns for the reptile and amphibian of the Caribbean, a global hotspot of biodiversity. Mid-sized Caribbean islands are now more saturated causing a linearization of contemporary herpetofauna SARs resulting from a ca. 30 myr and 40 myr acceleration of island saturation for reptiles and amphibians, respectively. Thus, humans within the last few hundreds of years--starting with European colonization of the Americas--have greatly accelerated the natural process of island saturation by 30 million years within the Caribbean global biodiversity hotspot.

ecology↗

A functional trait approach reveals the effects of landscape context on ecosystem services provided by urban birds

Land use intensification in urban areas can have profound effects on biological communities that provide valuable ecosystem services to urban residents. We used a functional response and effect trait approach to determine how bird species responses to local and landscape-scale habitat of urban green spaces affects the supply of cultural and regulating ecosystem services. We sampled bird communities and habitat variables in urban green spaces that varied in local and landscape-scale habitat composition and compiled a dataset of species response and effect traits related to nesting, foraging, diet, and visual and acoustic aesthetic appeal. Overall, the landscape-scale context of a green space had a stronger influence on species abundances than local-scale habitat. Landscape-scale impervious surface surrounding our study sites interacted with response traits related to nesting in human-built structures, clutch size, and consumption of invertebrates to drive bird species abundances. Because correlations between response and effect traits can influence the effect traits available to provide ecosystem services at a site, we explored the correlation of these three response traits to a suite of effect traits and found the response traits were correlated with several effect traits related to diet and regulating services but correlated with few of the plumage and acoustic traits that produce cultural services. Finally, we found that effect traits associated with cultural and regulating ecosystem services varied strongly along the landscape-scale gradient of urbanization. Sites with high impervious surface cover are expected to have low levels of invertebrate pest control and visual appeal but high levels of acoustic appeal, diet evenness (generalism), and granivory. Overall, our study highlights the key role of landscape-scale habitat in driving bird-mediated ecosystem services and underscores the importance of regional urban planning to create healthy and livable cities.

ecology↗