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Molecular Ecology · 2025 · Vol. 34 · Issue 23 · Wiley
The intensification of land use over past millennia has accelerated habitat loss and fragmentation. This is hypothesized to lead to reductions in population sizes and restrictions in gene flow, processes that amplify genetic drift with profound negative impacts on species and populations. However, empirical data on the population genetic impacts of habitat fragmentation remain limited, particularly for presumed abundant specie...
Ecology Letters · 2025 · Vol. 28 · Issue 9 · Wiley
Following rapid climate change, tundra plant communities are experiencing extensive compositional shifts. A conservation concern is the potential encroachment of boreal species into the tundra (‘borealisation’). Tundra borealisation has been sporadically reported, but not systematically quantified. Here, we synthesised data from across 32 study areas, spanning 1137 plots and 287 vascular plant species, resurveyed between 1981...
Conservation Genetics · 2025 · Vol. 26 · Issue 4 · Springer
The current global crisis of biodiversity loss calls for urgent conservation actions for many species, not the least wild species related to crop plants. These crop wild relatives are considered harbouring genetic diversity of major importance for future crop plant improvement, e.g. adaptation to climate change. Hence, their conservation needs to be a priority. To ensure the long-term conservation and to maximize the utility v...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 3 · Wiley
Aim Pre‐degradation baseline conditions (references) provide crucial context for restoration actions. Here, we compare vegetation structure and its driving processes across the main pre‐agricultural references discussed for temperate Europe: the Last Interglacial and the early‐mid Holocene—before and after the arrival of Homo sapiens , respectively. Location Temperate Europe. Time Period The first ~4000–6000 years, excluding t...
Global Ecology and Biogeography · 2024 · Vol. 33 · Issue 6 · Wiley
Julia Kemppinen; Jonas J. Lembrechts; Koenraad Van Meerbeek; Jofre Carnicer; Nathalie Isabelle Chardon; Paul Kardol; Jonathan Lenoir; Daijun Liu; Ilya Maclean; Jan Pergl; Patrick Saccone; Rebecca A. Senior; Ting Shen; Sandra Słowińska; Vigdis Vandvik; Jonathan von Oppen; Juha Aalto; Biruk Ayalew; Olivia Bates; Cleo Bertelsmeier; Romain Bertrand; Rémy Beugnon; Jeremy Borderieux; Josef Brůna; Lauren Buckley; Jelena Bujan; Angelica Casanova‐Katny; Ditte Marie Christiansen; Flavien Collart; Emiel De Lombaerde; Karen De Pauw; Leen Depauw; Michele Di Musciano; Raquel Díaz Borrego; Joan Díaz‐Calafat; Diego Ellis‐Soto; Raquel Esteban; Geerte Fälthammar de Jong; Elise Gallois; Maria Begoña Garcia; Loïc Gillerot; Caroline Greiser; Eva Gril; Stef Haesen; Arndt Hampe; Per‐Ola Hedwall; Gabriel Hes; Helena Hespanhol; Raúl Hoffrén; Kristoffer Hylander; Borja Jiménez‐Alfaro; Tommaso Jucker; David Klinges; Joonas Kolstela; Martin Kopecký; Bence Kovács; Eduardo Eiji Maeda; František Máliš; Matěj Man; Corrie Mathiak; Eric Meineri; Ilona Naujokaitis‐Lewis; Ivan Nijs; Signe Normand; Martin Nuñez; Anna Orczewska; Pablo Peña‐Aguilera; Sylvain Pincebourde; Roman Plichta; Susan Quick; David Renault; Lorenzo Ricci; Tuuli Rissanen; Laura Segura‐Hernández; Federico Selvi; Josep M. Serra‐Diaz; Lydia Soifer; Fabien Spicher; Jens‐Christian Svenning; Anouch Tamian; Arno Thomaes; Marijke Thoonen; Brittany Trew; Stijn Van de Vondel; Liesbeth van den Brink; Pieter Vangansbeke; Sanne Verdonck; Michaela Vitkova; Maria Vives‐Ingla; Loke von Schmalensee; Runxi Wang; Jan Wild; Joseph Williamson; Florian Zellweger; Xiaqu Zhou; Emmanuel Junior Zuza; Pieter De Frenne
Brief introduction: What are microclimates and why are they important? Microclimate science has developed into a global discipline. Microclimate science is increasingly used to understand and mitigate climate and biodiversity shifts. Here, we provide an overview of the current status of microclimate ecology and biogeography in terrestrial ecosystems, and where this field is heading next. Microclimate investigations in ecology...
Global Ecology and Biogeography · 2024 · Vol. 33 · Issue 1 · Wiley
Aim Reconstructing megafauna diversity in the past before anthropogenic impacts is crucial for developing targeted restoration strategies. We estimated the diversity and functional decline of European megafauna in the present compared with the nearest in‐time climate period analogue to the present but prior to the worldwide diffusion of Homo sapiens. Location Europe. Time Period Last Interglacial (LIG; ca. 127,000 years ago) t...
Oecologia · 2023 · Vol. 201 · Issue 4 · Springer
The exploration of factors and processes affecting biodiversity loss is central to nature management and wildlife conservation, but only recently has knowledge about the absence of species been recognized as a valuable asset to understand the current biodiversity crisis. In this paper, we explore the dark diversity (species that belong to a site-specific species pool but that are not locally present) of breeding birds in Denma...
Global Change Biology · 2022 · Vol. 28 · Issue 24 · Wiley
Climate warming is inducing widespread vegetation changes in Arctic tundra ecosystems, with the potential to alter carbon and nutrient dynamics between vegetation and soils. Yet, we lack a detailed understanding of how variation in vegetation and topography influences fine‐scale temperatures (“microclimate”) that mediate these dynamics, and at what resolution vegetation needs to be sampled to capture these effects. We monitore...
Global Change Biology · 2022 · Vol. 28 · Issue 9 · Wiley
Jonas J. Lembrechts; Johan van den Hoogen; Juha Aalto; Michael B. Ashcroft; Pieter De Frenne; Julia Kemppinen; Martin Kopecký; Miska Luoto; Ilya M. D. Maclean; Thomas W. Crowther; Joseph J. Bailey; Stef Haesen; David H. Klinges; Pekka Niittynen; Brett R. Scheffers; Koenraad Van Meerbeek; Peter Aartsma; Otar Abdalaze; Mehdi Abedi; Rien Aerts; Negar Ahmadian; Antje Ahrends; Juha M. Alatalo; Jake M. Alexander; Camille Nina Allonsius; Jan Altman; Christof Ammann; Christian Andres; Christopher Andrews; Jonas Ardö; Nicola Arriga; Alberto Arzac; Valeria Aschero; Rafael L. Assis; Jakob Johann Assmann; Maaike Y. Bader; Khadijeh Bahalkeh; Peter Barančok; Isabel C. Barrio; Agustina Barros; Matti Barthel; Edmund W. Basham; Marijn Bauters; Manuele Bazzichetto; Luca Belelli Marchesini; Michael C. Bell; Juan C. Benavides; José Luis Benito Alonso; Bernd J. Berauer; Jarle W. Bjerke; Robert G. Björk; Mats P. Björkman; Katrin Björnsdóttir; Benjamin Blonder; Pascal Boeckx; Julia Boike; Stef Bokhorst; Bárbara N. S. Brum; Josef Brůna; Nina Buchmann; Pauline Buysse; José Luís Camargo; Otávio C. Campoe; Onur Candan; Rafaella Canessa; Nicoletta Cannone; Michele Carbognani; Jofre Carnicer; Angélica Casanova‐Katny; Simone Cesarz; Bogdan Chojnicki; Philippe Choler; Steven L. Chown; Edgar F. Cifuentes; Marek Čiliak; Tamara Contador; Peter Convey; Elisabeth J. Cooper; Edoardo Cremonese; Salvatore R. Curasi; Robin Curtis; Maurizio Cutini; C. Johan Dahlberg; Gergana N. Daskalova; Miguel Angel de Pablo; Stefano Della Chiesa; Jürgen Dengler; Bart Deronde; Patrice Descombes; Valter Di Cecco; Michele Di Musciano; Jan Dick; Romina D. Dimarco; Jiri Dolezal; Ellen Dorrepaal; Jiří Dušek; Nico Eisenhauer; Lars Eklundh; Todd E. Erickson; Brigitta Erschbamer; Werner Eugster; Robert M. Ewers; Dan A. Exton; Nicolas Fanin; Fatih Fazlioglu; Iris Feigenwinter; Giuseppe Fenu; Olga Ferlian; M. Rosa Fernández Calzado; Eduardo Fernández‐Pascual; Manfred Finckh; Rebecca Finger Higgens; T'ai G. W. Forte; Erika C. Freeman; Esther R. Frei; Eduardo Fuentes‐Lillo; Rafael A. García; María B. García; Charly Géron; Mana Gharun; Dany Ghosn; Khatuna Gigauri; Anne Gobin; Ignacio Goded; Mathias Goeckede; Felix Gottschall; Keith Goulding; Sanne Govaert; Bente Jessen Graae; Sarah Greenwood; Caroline Greiser; Achim Grelle; Benoit Guénard; Mauro Guglielmin; Joannès Guillemot; Peter Haase; Sylvia Haider; Aud H. Halbritter; Maroof Hamid; Albin Hammerle; Arndt Hampe; Siri V. Haugum; Lucia Hederová; Bernard Heinesch; Carole Helfter; Daniel Hepenstrick; Maximiliane Herberich; Mathias Herbst; Luise Hermanutz; David S. Hik; Raúl Hoffrén; Jürgen Homeier; Lukas Hörtnagl; Toke T. Høye; Filip Hrbacek; Kristoffer Hylander; Hiroki Iwata; Marcin Antoni Jackowicz‐Korczynski; Hervé Jactel; Järvi Järveoja; Szymon Jastrzębowski; Anke Jentsch; Juan J. Jiménez; Ingibjörg S. Jónsdóttir; Tommaso Jucker; Alistair S. Jump; Radoslaw Juszczak; Róbert Kanka; Vít Kašpar; George Kazakis; Julia Kelly; Anzar A. Khuroo; Leif Klemedtsson; Marcin Klisz; Natascha Kljun; Alexander Knohl; Johannes Kobler; Jozef Kollár; Martyna M. Kotowska; Bence Kovács; Juergen Kreyling; Andrea Lamprecht; Simone I. Lang; Christian Larson; Keith Larson; Kamil Laska; Guerric le Maire; Rachel I. Leihy; Luc Lens; Bengt Liljebladh; Annalea Lohila; Juan Lorite; Benjamin Loubet; Joshua Lynn; Martin Macek; Roy Mackenzie; Enzo Magliulo; Regine Maier; Francesco Malfasi; František Máliš; Matěj Man; Giovanni Manca; Antonio Manco; Tanguy Manise; Paraskevi Manolaki; Felipe Marciniak; Radim Matula; Ana Clara Mazzolari; Sergiy Medinets; Volodymyr Medinets; Camille Meeussen; Sonia Merinero; Rita de Cássia Guimarães Mesquita; Katrin Meusburger; Filip J. R. Meysman; Sean T. Michaletz; Ann Milbau; Dmitry Moiseev; Pavel Moiseev; Andrea Mondoni; Ruth Monfries; Leonardo Montagnani; Mikel Moriana‐Armendariz; Umberto Morra di Cella; Martin Mörsdorf; Jonathan R. Mosedale; Lena Muffler; Miriam Muñoz‐Rojas; Jonathan A. Myers; Isla H. Myers‐Smith; Laszlo Nagy; Marianna Nardino; Ilona Naujokaitis‐Lewis; Emily Newling; Lena Nicklas; Georg Niedrist; Armin Niessner; Mats B. Nilsson; Signe Normand; Marcelo D. Nosetto; Yann Nouvellon; Martin A. Nuñez; Romà Ogaya; Jérôme Ogée; Joseph Okello; Janusz Olejnik; Jørgen Eivind Olesen; Øystein H. Opedal; Simone Orsenigo; Andrej Palaj; Timo Pampuch; Alexey V. Panov; Meelis Pärtel; Ada Pastor; Aníbal Pauchard; Harald Pauli; Marian Pavelka; William D. Pearse; Matthias Peichl; Loïc Pellissier; Rachel M. Penczykowski; Josep Penuelas; Matteo Petit Bon; Alessandro Petraglia; Shyam S. Phartyal; Gareth K. Phoenix; Casimiro Pio; Andrea Pitacco; Camille Pitteloud; Roman Plichta; Francesco Porro; Miguel Portillo‐Estrada; Jérôme Poulenard; Rafael Poyatos; Anatoly S. Prokushkin; Radoslaw Puchalka; Mihai Pușcaș; Dajana Radujković; Krystal Randall; Amanda Ratier Backes; Sabine Remmele; Wolfram Remmers; David Renault; Anita C. Risch; Christian Rixen; Sharon A. Robinson; Bjorn J. M. Robroek; Adrian V. Rocha; Christian Rossi; Graziano Rossi; Olivier Roupsard; Alexey V. Rubtsov; Patrick Saccone; Clotilde Sagot; Jhonatan Sallo Bravo; Cinthya C. Santos; Judith M. Sarneel; Tobias Scharnweber; Jonas Schmeddes; Marius Schmidt; Thomas Scholten; Max Schuchardt; Naomi Schwartz; Tony Scott; Julia Seeber; Ana Cristina Segalin de Andrade; Tim Seipel; Philipp Semenchuk; Rebecca A. Senior; Josep M. Serra‐Diaz; Piotr Sewerniak; Ankit Shekhar; Nikita V. Sidenko; Lukas Siebicke; Laura Siegwart Collier; Elizabeth Simpson; David P. Siqueira; Zuzana Sitková; Johan Six; Marko Smiljanic; Stuart W. Smith; Sarah Smith‐Tripp; Ben Somers; Mia Vedel Sørensen; José João L. L. Souza; Bartolomeu Israel Souza; Arildo Souza Dias; Marko J. Spasojevic; James D. M. Speed; Fabien Spicher; Angela Stanisci; Klaus Steinbauer; Rainer Steinbrecher; Michael Steinwandter; Michael Stemkovski; Jörg G. Stephan; Christian Stiegler; Stefan Stoll; Martin Svátek; Miroslav Svoboda; Torbern Tagesson; Andrew J. Tanentzap; Franziska Tanneberger; Jean‐Paul Theurillat; Haydn J. D. Thomas; Andrew D. Thomas; Katja Tielbörger; Marcello Tomaselli; Urs Albert Treier; Mario Trouillier; Pavel Dan Turtureanu; Rosamond Tutton; Vilna A. Tyystjärvi; Masahito Ueyama; Karol Ujházy; Mariana Ujházyová; Domas Uogintas; Anastasiya V. Urban; Josef Urban; Marek Urbaniak; Tudor‐Mihai Ursu; Francesco Primo Vaccari; Stijn Van de Vondel; Liesbeth van den Brink; Maarten Van Geel; Vigdis Vandvik; Pieter Vangansbeke; Andrej Varlagin; G. F. Veen; Elmar Veenendaal; Susanna E. Venn; Hans Verbeeck; Erik Verbrugggen; Frank G. A. Verheijen; Luis Villar; Luca Vitale; Pascal Vittoz; Maria Vives‐Ingla; Jonathan von Oppen; Josefine Walz; Runxi Wang; Yifeng Wang; Robert G. Way; Ronja E. M. Wedegärtner; Robert Weigel; Jan Wild; Matthew Wilkinson; Martin Wilmking; Lisa Wingate; Manuela Winkler; Sonja Wipf; Georg Wohlfahrt; Georgios Xenakis; Yan Yang; Zicheng Yu; Kailiang Yu; Florian Zellweger; Jian Zhang; Zhaochen Zhang; Peng Zhao; Klaudia Ziemblińska; Reiner Zimmermann; Shengwei Zong; Viacheslav I. Zyryanov; Ivan Nijs; Jonathan Lenoir
Research in global change ecology relies heavily on global climatic grids derived from estimates of air temperature in open areas at around 2 m above the ground. These climatic grids do not reflect conditions below vegetation canopies and near the ground surface, where critical ecosystem functions occur and most terrestrial species reside. Here, we provide global maps of soil temperature and bioclimatic variables at a 1‐km 2 r...
Journal of Biogeography · 2020 · Vol. 47 · Issue 1 · Wiley
Recent years have seen an exponential increase in the amount of data available in all sciences and application domains. Macroecology is part of this “Big Data” trend, with a strong rise in the volume of data that we are using for our research. Here, we summarize the most recent developments in macroecology in the age of Big Data that were presented at the 2018 annual meeting of the Specialist Group Macroecology of the Ecologic...
Journal of Biogeography · 2020 · Vol. 47 · Issue 1 · Wiley
Aim Tundra ecosystems are highly vulnerable to climate change, and climate–growth responses of Arctic shrubs are variable and altered by microsite environmental conditions and biotic factors. With warming and drought during the growing season, insect‐driven defoliation is expected to increase in frequency and severity with potential broad‐scale impacts on tundra ecosystem functioning. Here we provide the first broad‐scale reco...
Global Ecology and Biogeography · 2019 · Vol. 28 · Issue 11 · Wiley
Aim Theory suggests that increasing productivity and climate stability towards the tropics favours specialization, thus contributing to the latitudinal richness gradient. A positive relationship between species richness and specialization should therefore emerge as a fundamental biogeographical pattern. However, land‐use and climate changes disproportionally increase the local extirpation risk for specialists, potentially weak...
Global Ecology and Biogeography · 2019 · Vol. 28 · Issue 10 · Wiley
Aims Phylogenetic endemism describes the extent to which unique phylogenetic lineages are constrained to restricted geographic areas. Previous studies indicate that species endemism is related to both past and modern climate, but studies of phylogenetic endemism are relatively rare and mainly focused on smaller regions. Here, we provide the first assessment of the patterns of species and phylogenetic endemism in angiosperm tre...
Global Ecology and Biogeography · 2018 · Vol. 27 · Issue 12 · Wiley
Anne D. Bjorkman; Isla H. Myers‐Smith; Sarah C. Elmendorf; Signe Normand; Haydn J. D. Thomas; Juha M. Alatalo; Heather Alexander; Alba Anadon‐Rosell; Sandra Angers‐Blondin; Yang Bai; Gaurav Baruah; Mariska te Beest; Logan Berner; Robert G. Björk; Daan Blok; Helge Bruelheide; Agata Buchwal; Allan Buras; Michele Carbognani; Katherine Christie; Laura S. Collier; Elisabeth J. Cooper; J. Hans C. Cornelissen; Katharine J. M. Dickinson; Stefan Dullinger; Bo Elberling; Anu Eskelinen; Bruce C. Forbes; Esther R. Frei; Maitane Iturrate‐Garcia; Megan K. Good; Oriol Grau; Peter Green; Michelle Greve; Paul Grogan; Sylvia Haider; Tomáš Hájek; Martin Hallinger; Konsta Happonen; Karen A. Harper; Monique M. P. D. Heijmans; Gregory H. R. Henry; Luise Hermanutz; Rebecca E. Hewitt; Robert D. Hollister; James Hudson; Karl Hülber; Colleen M. Iversen; Francesca Jaroszynska; Borja Jiménez‐Alfaro; Jill Johnstone; Rasmus Halfdan Jorgensen; Elina Kaarlejärvi; Rebecca Klady; Jitka Klimešová; Annika Korsten; Sara Kuleza; Aino Kulonen; Laurent J. Lamarque; Trevor Lantz; Amanda Lavalle; Jonas J. Lembrechts; Esther Lévesque; Chelsea J. Little; Miska Luoto; Petr Macek; Michelle C. Mack; Rabia Mathakutha; Anders Michelsen; Ann Milbau; Ulf Molau; John W. Morgan; Martin Alfons Mörsdorf; Jacob Nabe‐Nielsen; Sigrid Schøler Nielsen; Josep M. Ninot; Steven F. Oberbauer; Johan Olofsson; Vladimir G. Onipchenko; Alessandro Petraglia; Catherine Pickering; Janet S. Prevéy; Christian Rixen; Sabine B. Rumpf; Gabriela Schaepman‐Strub; Philipp Semenchuk; Rohan Shetti; Nadejda A. Soudzilovskaia; Marko J. Spasojevic; James David Mervyn Speed; Lorna E. Street; Katharine Suding; Ken D. Tape; Marcello Tomaselli; Andrew Trant; Urs A. Treier; Jean‐Pierre Tremblay; Maxime Tremblay; Susanna Venn; Anna‐Maria Virkkala; Tage Vowles; Stef Weijers; Martin Wilmking; Sonja Wipf; Tara Zamin
Motivation The Tundra Trait Team (TTT) database includes field‐based measurements of key traits related to plant form and function at multiple sites across the tundra biome. This dataset can be used to address theoretical questions about plant strategy and trade‐offs, trait–environment relationships and environmental filtering, and trait variation across spatial scales, to validate satellite data, and to inform Earth system mo...