Shrub expansion in tundra ecosystems: dynamics, impacts and research priorities

Author:

Myers-Smith Isla H,Forbes Bruce C,Wilmking Martin,Hallinger Martin,Lantz Trevor,Blok Daan,Tape Ken D,Macias-Fauria Marc,Sass-Klaassen Ute,Lévesque Esther,Boudreau Stéphane,Ropars Pascale,Hermanutz Luise,Trant Andrew,Collier Laura Siegwart,Weijers Stef,Rozema Jelte,Rayback Shelly A,Schmidt Niels Martin,Schaepman-Strub Gabriela,Wipf Sonja,Rixen Christian,Ménard Cécile B,Venn Susanna,Goetz Scott,Andreu-Hayles Laia,Elmendorf Sarah,Ravolainen Virve,Welker Jeffrey,Grogan Paul,Epstein Howard E,Hik David S

Abstract

Abstract Recent research using repeat photography, long-term ecological monitoring and dendrochronology has documented shrub expansion in arctic, high-latitude and alpine tundra ecosystems. Here, we (1) synthesize these findings, (2) present a conceptual framework that identifies mechanisms and constraints on shrub increase, (3) explore causes, feedbacks and implications of the increased shrub cover in tundra ecosystems, and (4) address potential lines of investigation for future research. Satellite observations from around the circumpolar Arctic, showing increased productivity, measured as changes in ‘greenness’, have coincided with a general rise in high-latitude air temperatures and have been partly attributed to increases in shrub cover. Studies indicate that warming temperatures, changes in snow cover, altered disturbance regimes as a result of permafrost thaw, tundra fires, and anthropogenic activities or changes in herbivory intensity are all contributing to observed changes in shrub abundance. A large-scale increase in shrub cover will change the structure of tundra ecosystems and alter energy fluxes, regional climate, soil–atmosphere exchange of water, carbon and nutrients, and ecological interactions between species. In order to project future rates of shrub expansion and understand the feedbacks to ecosystem and climate processes, future research should investigate the species or trait-specific responses of shrubs to climate change including: (1) the temperature sensitivity of shrub growth, (2) factors controlling the recruitment of new individuals, and (3) the relative influence of the positive and negative feedbacks involved in shrub expansion.

Publisher

IOP Publishing

Subject

Public Health, Environmental and Occupational Health,General Environmental Science,Renewable Energy, Sustainability and the Environment

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