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Prowse, T. A.

Publications and source records attributed to Prowse, T. A..

2 recordsLinked to original sources

Global port survey quantifies commercial shippings effect on biodiversity

Spread of nonindigenous organisms by shipping is one of the largest threats to coastal ecosystems. Limited monitoring and understanding of this phenomenon currently hinder development of effective prevention policies. Surveying ports in North America, South America, Europe, Southeast Asia, and Australia we explored environmental DNA community profiles evident of ship-born species spread. We found that community similarities between ports increased with the number of ship voyages, particularly if the ports had similar environments, and when indirect stepping-stone connections were considered. We also found 57 known non-indigenous taxa, some in hitherto unreported locations. We demonstrate the usefulness of eDNA-based tools for global biodiversity surveys, and highlight that shipping homogenizes biodiversity in predictable that could inform policy and management.

ecology

The integrated role of resource memory and scent-mediated territoriality in the emergence of home-ranges

Despite decades of animal movement research, an integrated understanding of the processes underlying the emergence of home-ranges remains inadequate. We explored the effects of integrating two key processes of home-ranging arising from individual movement decisions: (i) memory-based resource use; and (ii) scent-based territoriality. Both mechanisms together led to the formation of exclusive, resource- and population density-dependent home-ranges, which were responsive to perturbations in the conspecific environment (i.e., removing individuals). Home-range patterns (size, size skewness and overlap) were primarily influenced by memory and scent decay rate parameters, demonstrating that home-ranging is ultimately a balance between an animals inherent exploratory tendency and its desire to avoid conspecifics. Model application to a population of feral cats demonstrated that general space use patterns could be approximated through simulation, and replication of finer-scale space use patterns is plausible with further model development. Our modelling framework provides a foundation for sophisticated theoretical models of space use in interacting animals.

ecology