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Leaf respiration is differentially affected by leaf vs. stand-level night-time warming
Authors:Kevin L Griffin  Matthew Turnbull†  Ramesh Murthy‡  Guanghui Lin‡  John Adams‡  Blake Farnsworth‡  Tilak Mahato‡  Guerric Bazin§  Mark Potasnak  Joe A Berry¶
Institution:Department of Earth and Environmental Sciences, Columbia University, Palisades NY, 10964, USA;, Department of Plant and Microbial Sciences, University of Canterbury, Private Bag 4800, Christchurch, New Zealand;, Biosphere 2 Center of Columbia University, Oracle AZ, 85624, USA;, Ecole Superieure d'Ingenieurs et de Techniciens pour l'Agriculture, Rouen FR.;, Department of Plant Biology, Carnegie Institution of Washington, Stanford CA, 94305, USA
Abstract:Plant respiration is an important physiological process in the global carbon cycle serving as a major carbon flux from the biosphere to the atmosphere. Respiration is sensitive to temperature providing a link between environmental variability, climate change and the global carbon cycle. We measured leaf respiration in Populus deltoides after manipulating the air temperature surrounding part of a single leaf, and compared this to the temperature response of the same leaves after manipulating the temperature of the stand. The short‐term temperature response of respiration (Q10– change in the respiration rate with a 10 °C increase in leaf temperature) was 1.7 when the leaf temperature was manipulated, but 2.1 when the stand‐level temperature was changed. As a result, total night‐time carbon release during the five‐day experiment was 21% lower when using the Q10 estimates from the tradition leaf manipulation compared to the stand‐level manipulation. We conclude that the temperature response of leaf respiration is related to whole plant carbon and energy demands, and that appropriate experimental procedures are required in examining respiratory CO2 release under variable temperature conditions.
Keywords:Biosphere 2              Populus deltoides            Q10  respiration  temperature
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