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Gilroy, J. J.

Publications and source records attributed to Gilroy, J. J..

2 recordsLinked to original sources

Biogeographic multi-species occupancy models for large-scale survey data

O_LIEcologists often seek to infer patterns of species occurrence or community structure from survey data. Hierarchical models, including multi-species occupancy models (MSOMs), can improve inference by pooling information across multiple species via random effects. Originally developed for local-scale survey data, MSOMs are increasingly applied to larger spatial scales that transcend major abiotic gradients and dispersal barriers. At biogeographic scales, the benefits of partial pooling in MSOMs trade off against the difficulty of incorporating sufficiently complex spatial effects to account for biogeographic variation in occupancy across multiple species simultaneously. C_LIO_LIWe show how this challenge can be overcome by incorporating pre-existing range information into MSOMs, yielding a biogeographic multi-species occupancy model (bMSOM). We illustrate the bMSOM using two published datasets: Parulid warblers in the United States Breeding Bird Survey, and entire avian communities in forests and pastures of Colombias West Andes. C_LIO_LICompared to traditional MSOMs, the bMSOM provides dramatically better predictive performance at lower computational cost. The bMSOM avoids severe spatial biases in predictions of the traditional MSOM and provides principled species-specific inference even for never-observed species. C_LIO_LIIncorporating pre-existing range data enables principled partial pooling of information across species in large-scale MSOMs. Our biogeographic framework for multi-species modeling should be broadly applicable in hierarchical models that predict species occurrences, whether or not false-absences are modeled in an occupancy framework. C_LI

ecology↗

Trade-driven trapping dampens the biodiversity benefits of forest restoration in Southeast Asia

Tropical forest restoration stands to deliver important conservation gains, particularly in lowland Southeast Asia, which has suffered some of the worlds highest rates of forest loss and degradation. This promise, however, depends on the extent to which biodiversity at forest restoration sites continues to be exposed to threats. A key knowledge gap concerns the extent to which biodiversity recovery in naturally regenerating tropical forests is impacted by trapping for the multi-million-dollar wildlife trade. Here, we use a repeated survey dataset to quantify rates of avian community recovery under forest regeneration, at a flagship restoration site in the lowland rainforests of Sumatra, Indonesia. We show that over a decade, forest regeneration was associated with significant abundance increases for 43.8% of bird species. However, the apparent negative impacts of trade-driven trapping on avian populations also intensified: the proportion of species that show increased abundance only in very remote forests increased from 5.4% to 16.2%, while the overall accessibility of the forest increased. We found that 14% of species did not recover as fast as predicted based on the observed improvement in forest conditions over the study period. Our results highlight the potential for rapid avifaunal recovery in regenerating tropical forests, but also emphasize the urgency of tackling the serious threat of wildlife trade to Southeast Asias biodiversity.

ecology↗