Luke Shoo results 11
· Newest (Page 1/1, per page 25)
Author: Luke Shoo ×Clear All Filters
Search Results
Vertical (arboreality) and horizontal (dispersal) movement increase the resilience of vertebrates to climatic instabilityNARA Subscribed
Aim Species that respond favourably to environmental change tend to be mobile or dispersive. Living within trees has some benefits over life on the ground. Species that move vertically within forest canopies can take advantage of increased complexity and resource availability, which should correspond to increased resilience to environmental variability and change. Here we show that two modes of movement, arboreality and horizo...
Slow recovery of tropical old‐field rainforest regrowth and the value and limitations of active restorationNARA Subscribed
There is current debate about the potential for secondary regrowth to rescue tropical forests from an otherwise inevitable cascade of biodiversity loss due to land clearing and scant evidence to test how well active restoration may accelerate recovery. We used site chronosequences to compare developmental trajectories of vegetation between self‐organized (i.e., spontaneous) forest regrowth and biodiversity plantings (establish...
Patterns of rain forest plant endemism in subtropical Australia relate to stable mesic refugia and species dispersal limitationsNARA Subscribed
Aim Our aims were to identify centres of endemism and to infer whether these areas have functioned as refugia for subtropical rain forest plants through historical climate fluctuations. Location Subtropical eastern A ustralia (23–33° S; 145–155° E). Methods We collated 25,000 records of 179 endemic rain forest plants to identify geographical areas with unusually high concentrations of endemic taxa and range‐restricted endemics...
Making decisions to conserve species under climate changeNARA Subscribed
Immigrants and refugees: the importance of dispersal in mediating biotic attrition under climate changeNARA Subscribed
Montane tropical rainforests are critically important areas for global bird diversity, but are projected to be highly vulnerable to contemporary climate change. Upslope shifts of lowland species may partially offset declines in upland species but also result in a process of lowland biotic attrition. This latter process is contingent on the absence of species adapted to novel warm climates, and isolation from pools of potential...
New approaches to understanding late Quaternary climate fluctuations and refugial dynamics in Australian wet tropical rain forestsNARA Subscribed
Aim We created spatially explicit models of palaeovegetation stability for the rain forests of the Australia Wet Tropics. We accounted for the climatic fluctuations of the late Quaternary, improving upon previous palaeovegetation modelling for the region in terms of data, approach and coverage of predictions. Location Australian Wet Tropics. Methods We generated climate‐based distribution models for broad rain forest vegetatio...
Potential decoupling of trends in distribution area and population size of species with climate changeNARA Subscribed
Global climates are changing rapidly and biological responses are becoming increasingly apparent. Here, we use empirical abundance patterns across an altitudinal gradient and predicted altitudinal range shifts to estimate change in total population size relative to distribution area in response to climate warming. Adopting this approach we predict that, for nine out of 12 species of regionally endemic birds, total population s...
Previous1Next