Literature DB >> 27107292

Fine-Scale Microclimatic Variation Can Shape the Responses of Organisms to Global Change in Both Natural and Urban Environments.

Sylvain Pincebourde1, Courtney C Murdock2, Mathew Vickers3, Michael W Sears4.   

Abstract

When predicting the response of organisms to global change, models use measures of climate at a coarse resolution from general circulation models or from downscaled regional models. Organisms, however, do not experience climate at such large scales. The climate heterogeneity over a landscape and how much of that landscape an organism can sample will determine ultimately the microclimates experienced by organisms. This past few decades has seen an important increase in the number of studies reporting microclimatic patterns at small scales. This synthesis intends to unify studies reporting microclimatic heterogeneity (mostly temperature) at various spatial scales, to infer any emerging trends, and to discuss the causes and consequences of such heterogeneity for organismal performance and with respect to changing land use patterns and climate. First, we identify the environmental drivers of heterogeneity across the various spatial scales that are pertinent to ectotherms. The thermal heterogeneity at the local and micro-scales is mostly generated by the architecture or the geometrical features of the microhabitat. Then, the thermal heterogeneity experienced by individuals is modulated by behavior. Second, we survey the literature to quantify thermal heterogeneity from the micro-scale up to the scale of a landscape in natural habitats. Despite difficulties in compiling studies that differ much in their design and aims, we found that there is as much thermal heterogeneity across micro-, local and landscape scales, and that the temperature range is large in general (>9 °C on average, and up to 26 °C). Third, we examine the extent to which urban habitats can be used to infer the microclimatic patterns of the future. Urban areas generate globally drier and warmer microclimatic patterns and recent evidence suggest that thermal traits of ectotherms are adapted to them. Fourth, we explore the interplay between microclimate heterogeneity and the behavioral thermoregulatory abilities of ectotherms in setting their overall performance. We used a random walk framework to show that the thermal heterogeneity allows a more precise behavioral thermoregulation and a narrower temperature distribution of the ectotherm compared to less heterogeneous microhabitats. Finally, we discuss the potential impacts of global change on the fine scale mosaics of microclimates. The amplitude of change may differ between spatial scales. In heterogeneous microhabitats, the amplitude of change at micro-scale, caused by atmospheric warming, can be substantial while it can be limited at the local and landscape scales. We suggest that the warming signal will influence species performance and biotic interactions by modulating the mosaic of microclimates.
© The Author 2016. Published by Oxford University Press on behalf of the Society for Integrative and Comparative Biology. All rights reserved. For permissions please email: journals.permissions@oup.com.

Mesh:

Year:  2016        PMID: 27107292     DOI: 10.1093/icb/icw016

Source DB:  PubMed          Journal:  Integr Comp Biol        ISSN: 1540-7063            Impact factor:   3.326


  22 in total

1.  Thermal landscape change as a driver of ectotherm responses to plant invasions.

Authors:  Raquel A Garcia; Susana Clusella-Trullas
Journal:  Proc Biol Sci       Date:  2019-06-26       Impact factor: 5.349

Review 2.  Developing a Method to Connect Thermal Physiology in Animals and Plants to the Design of Energy Efficient Buildings.

Authors:  Negin Imani; Brenda Vale
Journal:  Biomimetics (Basel)       Date:  2022-05-24

3.  Using naturalistic incubation temperatures to demonstrate how variation in the timing and continuity of heat wave exposure influences phenotype.

Authors:  Anthony T Breitenbach; Amanda W Carter; Ryan T Paitz; Rachel M Bowden
Journal:  Proc Biol Sci       Date:  2020-08-05       Impact factor: 5.530

4.  Global maps of soil temperature.

Authors:  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
Journal:  Glob Chang Biol       Date:  2022-02-11       Impact factor: 13.211

5.  Tree species matter for forest microclimate regulation during the drought year 2018: disentangling environmental drivers and biotic drivers.

Authors:  Ronny Richter; Helen Ballasus; Rolf A Engelmann; Christoph Zielhofer; Anvar Sanaei; Christian Wirth
Journal:  Sci Rep       Date:  2022-10-20       Impact factor: 4.996

Review 6.  Getting ahead of the curve: cities as surrogates for global change.

Authors:  Eleanor C Lahr; Robert R Dunn; Steven D Frank
Journal:  Proc Biol Sci       Date:  2018-07-04       Impact factor: 5.530

7.  Hovering in the heat: effects of environmental temperature on heat regulation in foraging hummingbirds.

Authors:  Donald R Powers; Kathleen M Langland; Susan M Wethington; Sean D Powers; Catherine H Graham; Bret W Tobalske
Journal:  R Soc Open Sci       Date:  2017-12-06       Impact factor: 2.963

8.  Structure is more important than physiology for estimating intracanopy distributions of leaf temperatures.

Authors:  H Arthur Woods; Marc Saudreau; Sylvain Pincebourde
Journal:  Ecol Evol       Date:  2018-04-27       Impact factor: 2.912

9.  Variation in photosynthesis and stomatal conductance among red maple (Acer rubrum) urban planted cultivars and wildtype trees in the southeastern United States.

Authors:  Eleanor C Lahr; Robert R Dunn; Steven D Frank
Journal:  PLoS One       Date:  2018-05-24       Impact factor: 3.752

10.  Fine-scale variation in microclimate across an urban landscape shapes variation in mosquito population dynamics and the potential of Aedes albopictus to transmit arboviral disease.

Authors:  Courtney C Murdock; Michelle V Evans; Taylor D McClanahan; Kerri L Miazgowicz; Blanka Tesla
Journal:  PLoS Negl Trop Dis       Date:  2017-05-30
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