Skip to main content

Search the SPREP Catalogue

Refine Search Results

Related Countries

Language

Available Online

Related Countries

Available Online

92 result(s) found.

Sort by

You searched for

  • Author PACC
    X
Global Economic Costs of Aquatic Invasive Alien Species
Biodiversity Conservation, BRB
Available Online

Ahmed, Danish A.

,

Angulo, Elena

,

Briski, Elizabeta

,

Capinha, César

,

Catford, Jane A.

,

Cuthbert, Ross N.

,

Dalu, Tatenda

,

Diagne, Christophe

,

Essl, Franz

,

Gozlan, Rodolphe E.

,

Leroy, Boris

,

Pattison, Zarah

,

Taylor, Nigel G.

,

Verbrugge, Laura

2021
Much research effort has been invested in understanding ecological impacts of invasive alien species (IAS) across ecosystems and taxonomic groups, but empirical studies about economic effects lack synthesis. Using a comprehensive global database, we determine patterns and trends in economic costs of aquatic IAS by examining: (i) the distribution of these costs across taxa, geographic regions, and cost types; (ii) the temporal dynamics of global costs; and (iii) knowledge gaps, especially compared to terrestrial IAS. Based on the costs recorded from the existing literature, the global cost of aquatic IAS conservatively summed to US$345 billion, with the majority attributed to invertebrates (62%), followed by vertebrates (28%), then plants (6%). The largest costs were reported in North America (48%) and Asia (13%) and were principally a result of resource damages (74%); only 6% of recorded costs were from management. The magnitude and number of reported costs were highest in the United States of America and for semi-aquatic taxa. Many countries and known aquatic alien species had no reported costs, especially in Africa and Asia. Accordingly, a network analysis revealed limited connectivity among countries, indicating disparate cost reporting. Aquatic IAS costs have increased in recent decades by several orders of magnitude, reaching at least US$23 billion in 2020. Costs are likely considerably underrepresented compared to terrestrial IAS; only 5% of reported costs were from aquatic species, despite 26% of known invaders being aquatic. Additionally, only 1% of aquatic invasion costs were from marine species. Costs of aquatic IAS are thus substantial, but likely underreported. Costs have increased over time and are expected to continue rising with future invasions. We urge increased and improved cost reporting by managers, practitioners and researchers to reduce knowledge gaps. Few costs are proactive investments; increased management spending is urgently needed to prevent and limit current and future aquatic IAS damages.
Climate change vulnerability assessment of species
Climate Change Resilience, BRB
Available Online

Akçakaya, H. Resit

,

Bickford, David

,

Carr, Jamie A.

,

Foden, Wendy B.

,

Garcia, Raquel A.

,

Hoffmann, Ary A.

,

Hole, David G.

,

Huntley, Brian

,

Martin, Tara G.

,

Pacifici, Michela

,

Pearce‐Higgins, James W.

,

Platts, Philip J.

,

Stein, Bruce A.

,

Thomas, Chris D.

,

Visconti, Piero

,

Watson, James E. M.

,

Wheatley, Christopher J.

,

Young, Bruce E.

2018
Assessing species' vulnerability to climate change is a prerequisite for developing effective strategies to conserve them. The last three decades have seen exponential growth in the number of studies evaluating how, how much, why, when, and where species will be impacted by climate change. We provide an overview of the rapidly developing field of climate change vulnerability assessment (CCVA) and describe key concepts, terms, steps and considerations. We stress the importance of identifying the full range of pressures, impacts and their associated mechanisms that species face and using this as a basis for selecting the appropriate assessment approaches for quantifying vulnerability. We outline four CCVA assessment approaches, namely trait?based, correlative, mechanistic and combined approaches and discuss their use. Since any assessment can deliver unreliable or even misleading results when incorrect data and parameters are applied, we discuss finding, selecting, and applying input data and provide examples of open?access resources. Because rare, small?range, and declining?range species are often of particular conservation concern while also posing significant challenges for CCVA, we describe alternative ways to assess them. We also describe how CCVAs can be used to inform IUCN Red List assessments of extinction risk. Finally, we suggest future directions in this field and propose areas where research efforts may be particularly valuable.