A review of open top chamber (OTC) performance across the ITEX Network

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  • Robert D. Hollister
  • Cassandra Elphinstone
  • Greg H. R. Henry
  • Anne D. Bjorkman
  • Kari Klanderud
  • Robert G. Bjoerk
  • Mats P. Bjoerkman
  • Stef Bokhorst
  • Michele Carbognani
  • Elisabeth J. Cooper
  • Ellen Dorrepaal
  • Sarah C. Elmendorf
  • Ned Fetcher
  • Elise C. Gallois
  • Jon Guomundsson
  • Nathan C. Healey
  • Ingibjorg Svala Jonsdottir
  • Ingeborg J. Klarenberg
  • Steven F. Oberbauer
  • Petr Macek
  • Jeremy L. May
  • Alessandro Mereghetti
  • Ulf Molau
  • Alessandro Petraglia
  • Christian Rixen
  • Philip A. Wookey

Open top chambers (OTCs) were adopted as the recommended warming mechanism by the International Tundra Experiment network in the early 1990s. Since then, OTCs have been deployed across the globe. Hundreds of papers have reported the im-pacts of OTCs on the abiotic environment and the biota. Here, we review the impacts of the OTC on the physical environment, with comments on the appropriateness of using OTCs to characterize the response of biota to warming. The purpose of this review is to guide readers to previously published work and to provide recommendations for continued use of OTCs to under -stand the implications of warming on low stature ecosystems. In short, the OTC is a useful tool to experimentally manipulate temperature; however, the characteristics and magnitude of warming varies greatly in different environments; therefore, it is important to document chamber performance to maximize the interpretation of biotic response. When coupled with long-term monitoring, warming experiments are a valuable means to understand the impacts of climate change on natural ecosystems.

Original languageEnglish
JournalArctic Science
Volume9
Issue number2
Number of pages14
ISSN2368-7460
DOIs
Publication statusPublished - 2023

    Research areas

  • Arctic, alpine, tundra, warming experiment, large-scale coordinated experiment, PLANT COMMUNITY RESPONSES, SIMULATED ENVIRONMENTAL-CHANGE, ALASKAN ARCTIC TUNDRA, CLIMATE-CHANGE, VASCULAR-PLANT, ERIOPHORUM-VAGINATUM, CASSIOPE-TETRAGONA, SEED PRODUCTION, SNOW ADDITION, CO2 EXCHANGE

ID: 337729798