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Forest Science Database

Supporting your research in forest and wood science

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Abstract

Forests sequester large amounts of carbon annually and are integral in buffering against effects of global change. Increasing atmospheric CO2 may enhance photosynthesis and/or decrease stomatal conductance (gs) thereby enhancing intrinsic water-use efficiency (iWUE), having potential indirect and...

Author(s)
Reed, C. C.; Ballantyne, A. P.; Cooper, L. A.; Sala, A.
Publisher
Wiley, Oxford, UK
Citation
Global Change Biology, 2018, 24, 9, pp 3922-3937
Abstract

Future droughts are expected to become more severe and frequent under future climate change scenarios, likely causing widespread tree mortality in the western USA. Coping with an uncertain future requires an understanding of long-term ecosystem responses in areas where prolonged drought is...

Author(s)
Truettner, C.; Anderegg, W. R. L.; Biondi, F.; Koch, G. W.; Ogle, K.; Schwalm, C.; Litvak, M. E.; Shaw, J. D.; Ziaco, E.
Publisher
Elsevier Ltd, Oxford, UK
Citation
Forest Ecology and Management, 2018, 418, pp 55-62
Abstract

Soil properties can buffer forest response to global climate change. However, it is unclear how soil characteristics, water availability and their interactions can affect drought response of trees. The aim of this study was to assess the influence of soil nutrients and physical soil properties on...

Author(s)
Lévesque, M.; Walthert, L.; Weber, P.
Publisher
Wiley-Blackwell, Oxford, UK
Citation
Journal of Ecology (Oxford), 2016, 104, 2, pp 377-387
Abstract

Forest mortality related to climate change is an increasingly common global phenomenon. We provide a case study of the U.S. Southwest to investigate the interactions among forest restoration treatments that alter stand density, tree growth and drought resistance in trees of different size classes....

Author(s)
Kerhoulas, L. P.; Kolb, T. E.; Hurteau, M. D.; Koch, G. W.
Publisher
Wiley-Blackwell, Oxford, UK
Citation
Journal of Applied Ecology, 2013, 50, 6, pp 1311-1320

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