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Conservation Biology · 2026 · Wiley
The use and trade of biodiversity involve tens of thousands of species that are exploited at a range of scales, intensities, and degrees of sustainability. As a result, some are highly threatened. Key biodiversity areas (KBAs) are sites of significance for the persistence of biodiversity identified nationally based on standardized criteria. The degree to which biodiversity in KBAs is likely to be used and traded is not well un...
Conservation Biology · 2026 · Vol. 40 · Issue 1 · Wiley
Key Biodiversity Areas (KBAs) are sites of significance for the global persistence of biodiversity. Based on the Global Standard for the Identification of Key Biodiversity Areas (KBA Standard), published in 2016, sites are currently being assessed for KBA designation in a growing number of countries across the world. For these assessments, the KBA criteria are applied to all species and ecosystems with available data. We revie...
Conservation Biology · 2026 · Vol. 40 · Issue 1 · Wiley
Area of habitat (AOH) maps provide a high‐resolution representation of the habitat available in a species’ range and can support conservation policy and planning processes. However, until recently, there was insufficient knowledge on the distribution of inland wetlands and freshwater biodiversity to develop AOH mapping methods specifically tailored to inland wetlands. We used a combined empirical and thematic approach to trans...
Conservation Biology · 2025 · Vol. 39 · Issue 4 · Wiley
Key Biodiversity Areas (KBAs) are the largest and most complete network of significant sites for the global persistence of biodiversity. Although important sites for birds worldwide have been relatively well assessed, a key question is how effectively the global KBA network represents avian diversity. We identified bird species, orders, habitats, and geographic regions that are underrepresented by KBAs. Area of Habitat (AOH) m...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 2 · Wiley
Joanne M. Morten; Ana P. B. Carneiro; Martin Beal; Anne‐Sophie Bonnet‐Lebrun; Maria P. Dias; Marie‐Morgane Rouyer; Autumn‐Lynn Harrison; Jacob González‐Solís; Victoria R. Jones; Virginia A. Garcia Alonso; Michelle Antolos; Javier A. Arata; Christophe Barbraud; Elizabeth A. Bell; Mike Bell; Samhita Bose; Sharyn Broni; Michael de L Brooke; Stuart H. M. Butchart; Nicholas Carlile; Paulo Catry; Teresa Catry; Matt Charteris; Yves Cherel; Bethany L. Clark; Thomas A. Clay; Nik C. Cole; Melinda G. Conners; Igor Debski; Karine Delord; Carsten Egevang; Graeme Elliot; Jan Esefeld; Colin Facer; Annette L. Fayet; Ruben C. Fijn; Johannes H. Fischer; Kirsty A. Franklin; Olivier Gilg; Jennifer A. Gill; José P. Granadeiro; Tim Guilford; Jonathan M. Handley; Sveinn A. Hanssen; Lucy A. Hawkes; April Hedd; Audrey Jaeger; Carl G. Jones; Christopher W. Jones; Matthias Kopp; Johannes Krietsch; Todd J. Landers; Johannes Lang; Matthieu Le Corre; Mark L. Mallory; Juan F. Masello; Sara M. Maxwell; Fernando Medrano; Teresa Militão; Craig D. Millar; Børge Moe; William A. Montevecchi; Leia Navarro‐Herrero; Verónica C. Neves; David G. Nicholls; Malcolm A. C. Nicoll; Ken Norris; Terence W. O'Dwyer; Graham C. Parker; Hans‐Ulrich Peter; Richard A. Phillips; Petra Quillfeldt; Jaime A. Ramos; Raül Ramos; Matt J. Rayner; Kalinka Rexer‐Huber; Robert A. Ronconi; Kevin Ruhomaun; Peter G. Ryan; Paul M. Sagar; Sarah Saldanha; Niels M. Schmidt; Hendrik Schultz; Scott A. Shaffer; Iain J. Stenhouse; Akinori Takahashi; Vikash Tatayah; Graeme A. Taylor; David R. Thompson; Theo Thompson; Rob van Bemmelen; Diego Vicente‐Sastre; Freydís Vigfúsdottir; Kath J. Walker; Jim Watts; Henri Weimerskirch; Takashi Yamamoto; Tammy E. Davies
Aim To identify the broad‐scale oceanic migration routes (‘marine flyways’) used by multiple pelagic, long‐distance migratory seabirds based on a global compilation of tracking data. Location Global. Time Period 1989–2023. Major Taxa Studied Seabirds (Families: Phaethontidae, Hydrobatidae, Diomedeidae, Procellariidae, Laridae and Stercorariidae). Methods We collated a comprehensive global tracking dataset that included the mig...
Conservation Biology · 2024 · Vol. 38 · Issue 5 · Wiley
Trade represents a significant threat to many wild species and is often clandestine and poorly monitored. Information on which species are most prevalent in trade and potentially threatened by it therefore remains fragmentary. We used 7 global data sets on birds in trade to identify species or groups of species at particular risk and assessed the extent to which they were congruent in terms of the species recorded in trade. We...
Conservation Biology · 2024 · Vol. 38 · Issue 3 · Wiley
Indigenous Peoples’ lands (IPL) cover at least 38 million km 2 (28.1%) of Earth's terrestrial surface. These lands can be important for biodiversity conservation. Around 20.7% of IPL intersect areas protected by government (PAs). Many sites of importance for biodiversity within IPL could make a substantial but hitherto unquantified contribution to global site‐based conservation targets. Key Biodiversity Areas (KBAs) represent...
Biological Conservation · 2024 · Vol. 293 · Elsevier
Juan Serratosa; Steffen Oppel; Shay Rotics; Andrea Santangeli; Stuart H.M. Butchart; Luis S. Cano-Alonso; Jose Luis Tellería; Ryno Kemp; Aaron Nicholas; Aigars Kalvāns; Aitor Galarza; Aldina M.A. Franco; Alessandro Andreotti; Alexander N.G. Kirschel; Alex Ngari; Alvaro Soutullo; Ana Bermejo-Bermejo; Andre J. Botha; Andrea Ferri; Angelos Evangelidis; Anna Cenerini; Anton Stamenov; Antonio Hernández-Matías; Arianna Aradis; Atanas P. Grozdanov; Beneharo Rodríguez; Çağan H. Şekercioğlu; Catuxa Cerecedo-Iglesias; Christina Kassara; Christos Barboutis; Claire Bracebridge; Clara García-Ripollés; Corinne J. Kendall; Damijan Denac; Dana G. Schabo; David R. Barber; Dimitar V. Popov; Dobromir D. Dobrev; Egidio Mallia; Elena Kmetova-Biro; Ernesto Álvarez; Evan R. Buechley; Evgeny A. Bragin; Fabrizio Cordischi; Fadzai M. Zengeya; Flavio Monti; Francois Mougeot; Gareth Tate; Georgi Stoyanov; Giacomo Dell'Omo; Giuseppe Lucia; Gradimir Gradev; Guido Ceccolini; Guilad Friedemann; Hans-Günther Bauer; Holger Kolberg; Hristo Peshev; Inês Catry; Ingar J. Øien; Isidoro Carbonell Alanís; Ivan Literák; Ivan Pokrovsky; Ivar Ojaste; Jan E. Østnes; Javier de la Puente; Joan Real; João L. Guilherme; José C. González; José M. Fernández-García; Juan Antonio Gil; Julien Terraube; Karel Poprach; Karen Aghababyan; Katharina Klein; Keith L. Bildstein; Kerri Wolter; Kjell Janssens; Kyle D. Kittelberger; Lindy J. Thompson; Mansoor H. AlJahdhami; Manuel Galán; Marcin Tobolka; Mario Posillico; Mario Cipollone; Marion Gschweng; Māris Strazds; Mark Boorman; Mark Zvidzai; Marta Acácio; Marta Romero; Martin Wikelski; Matthias Schmidt; Maurizio Sarà; Michael J. McGrady; Mindaugas Dagys; Monique L. Mackenzie; Muna Al Taq; Msafiri P. Mgumba; Munir Z. Virani; Nicolaos I. Kassinis; Nicolò Borgianni; Nikki Thie; Nikos Tsiopelas; Nili Anglister; Nina Farwig; Nir Sapir; Oddmund Kleven; Oliver Krone; Olivier Duriez; Orr Spiegel; Osama Al Nouri; Pascual López-López; Patrik Byholm; Pauline L. Kamath; Paweł Mirski; Peter Palatitz; Pietro Serroni; Rainer Raab; Ralph Buij; Ramūnas Žydelis; Ran Nathan; Rauri C.K. Bowie; Rigas Tsiakiris; Richard Stratton Hatfield; Roi Harel; Rolf T. Kroglund; Ron Efrat; Ruben Limiñana; Salim Javed; Saša P. Marinković; Sascha Rösner; Sasha Pekarsky; Shiv R. Kapila; Simeon A. Marin; Šimon Krejčí; Sinos Giokas; Siranush Tumanyan; Sondra Turjeman; Sonja C. Krüger; Steven R. Ewing; Stoycho Stoychev; Stoyan C. Nikolov; Tareq E. Qaneer; Theresa Spatz; Thomas G. Hadjikyriakou; Thomas Mueller; Todd E. Katzner; Tomas Aarvak; Tomáš Veselovský; Torgeir Nygård; Ugo Mellone; Ülo Väli; Urmas Sellis; Vicente Urios; Vladimír Nemček; Volen Arkumarev; Wayne M. Getz; Wolfgang Fiedler; Willem Van den Bossche; Yael Lehnardt; Victoria R. Jones
Global Change Biology · 2024 · Vol. 30 · Issue 1 · Wiley
Comparative extinction risk analysis—which predicts species extinction risk from correlation with traits or geographical characteristics—has gained research attention as a promising tool to support extinction risk assessment in the IUCN Red List of Threatened Species. However, its uptake has been very limited so far, possibly because existing models only predict a species' Red List category, without indicating which Red List c...
Conservation Biology · 2023 · Vol. 37 · Issue 6 · Wiley
Despite being central to the implementation of conservation policies, the usefulness of the International Union for Conservation of Nature (IUCN) Red List of Threatened Species is hampered by the 14% of species classified as data‐deficient (DD) because information to evaluate these species’ extinction risk was lacking when they were last assessed or because assessors did not appropriately account for uncertainty. Robust method...
Conservation Biology · 2023 · Vol. 37 · Issue 1 · Wiley
Although some sectors have made significant progress in learning from failure, there is currently limited consensus on how a similar transition could best be achieved in conservation and what is required to facilitate this. One of the key enabling conditions for other sectors is a widely accepted and standardized classification system for identifying and analyzing root causes of failure. We devised a comprehensive taxonomy of...
Conservation Biology · 2023 · Vol. 37 · Issue 1 · Wiley
The conservation of long‐distance migratory birds requires coordination between the multiple countries connected by the movements of these species. The recent expansion of tracking studies is shedding new light on these movements, but much of this information is fragmented and inaccessible to conservation practitioners and policy makers. We synthesized current knowledge on the connectivity established between countries by land...
Conservation Biology · 2022 · Vol. 36 · Issue 3 · Wiley
Area of habitat (AOH) is defined as the “habitat available to a species, that is, habitat within its range” and is calculated by subtracting areas of unsuitable land cover and elevation from the range. The International Union for the Conservation of Nature (IUCN) Habitats Classification Scheme provides information on species habitat associations, and typically unvalidated expert opinion is used to match habitat to land‐cover c...
Global Change Biology · 2022 · Vol. 28 · Issue 3 · Wiley
Despite their importance for biodiversity and ecosystem services, wetlands are among the most threatened ecosystems globally. The conservation of many migratory waterbirds depends on the conservation of a network of key sites along their flyways. However, the suitability of these sites is changing under climate change, and it is important that management of individual sites in the network adapts to these changes. Using bioclim...
Conservation Biology · 2022 · Vol. 36 · Issue 1 · Wiley
Species monitoring, defined here as the repeated, systematic collection of data to detect long‐term changes in the populations of wild species, is a vital component of conservation practice and policy. We created a database of nearly 1200 schemes, ranging in start date from 1800 to 2018, to review spatial, temporal, taxonomic, and methodological patterns in global species monitoring. We identified monitoring schemes through st...
Conservation Biology · 2020 · Vol. 34 · Issue 5 · Wiley
Birds have been comprehensively assessed on the International Union for Conservation of Nature (IUCN) Red List more times than any other taxonomic group. However, to date, generation lengths have not been systematically estimated to scale population trends when undertaking assessments, as required by the criteria of the IUCN Red List. We compiled information from major databases of published life‐history and trait data for all...
Conservation Biology · 2019 · Vol. 33 · Issue 6 · Wiley
To inform governmental discussions on the nature of a revised Strategic Plan for Biodiversity of the Convention on Biological Diversity (CBD), we reviewed the relevant literature and assessed the framing of the 20 Aichi Biodiversity Targets in the current strategic plan. We asked international experts from nongovernmental organizations, academia, government agencies, international organizations, research institutes, and the CB...
Conservation Biology · 2019 · Vol. 33 · Issue 5 · Wiley
The IUCN (International Union for Conservation of Nature) Red List categories and criteria are the most widely used framework for assessing the relative extinction risk of species. The criteria are based on quantitative thresholds relating to the size, trends, and structure of species’ distributions and populations. However, data on these parameters are sparse and uncertain for many species and unavailable for others, potentia...
Global Ecology and Biogeography · 2017 · Vol. 26 · Issue 10 · Wiley
Aim The species population density–range size relationship posits that locally abundant species are widely distributed. However, this proposed pattern has been insufficiently tested. The few tests conducted were usually limited in scale and gave conflicting results. We tested the generality of the positive population density–range size relationship. We then studied whether similar environmental niche requirements are correlate...
Global Change Biology · 2016 · Vol. 22 · Issue 7 · Wiley
Climate data created from historic climate observations are integral to most assessments of potential climate change impacts, and frequently comprise the baseline period used to infer species‐climate relationships. They are often also central to downscaling coarse resolution climate simulations from General Circulation Models ( GCM s) to project future climate scenarios at ecologically relevant spatial scales. Uncertainty in t...
Conservation Biology · 2016 · Vol. 30 · Issue 2 · Wiley
In International Union for Conservation of Nature (IUCN) Red List assessments, extent of occurrence (EOO) is a key measure of extinction risk. However, the way assessors estimate EOO from maps of species’ distributions is inconsistent among assessments of different species and among major taxonomic groups. Assessors often estimate EOO from the area of mapped distribution, but these maps often exclude areas that are not habitat...