When the Mediterranean becomes harsh: Heat pulses strongly affect C allocation in plant-soil-atmosphere continuum in Eucalyptus camaldulensis

Mediterranean vegetation is frequently subjected to the heat waves with temperature peaks exceeding 45 °C. While the effects of drought on assimilates allocation are deeply studied, little information is available regarding the effects of the acute heat stress on this aspect of the plant physiology. We evaluated the effects of acute heat pulses on plant C internal allocation in Eucalyptus camaldulensis saplings and its transfer into the soil. Shoots of Eucalyptus were subjected to an increase of the air temperatures up to 45 °C. Allocation of C was inferred after pulse labelling of heated and non-heated shoots with 13 CO 2 . Heat pulse lowered the photosynthesis and almost tripled the C losses from shoots through respiration. Assimilated 13 C was preferentially allocated to leaf soluble sugar fractions rather than to starch. Heat pulse interrupted 13 C allocation to the trunk, roots and soil. 13 C allocation to new non labelled leaves was detected in some replicate plants, independently of treatment, suggesting that this process is sink-driven. Although, shoots subjected to the heat pulse modified allocation strategy, “saving” assimilated 13 C at a leaf level, the rate of 13 C involvement in shoot respiration was restricted by photosynthetic rates measured during the labelling. The results suggest that photosynthetic and non-photosynthetic organs may be constrained to rely on C reserves under elevated temperatures with further negative consequences for C balance in case the duration and frequency of the heat waves will increase as projected by climate change. © 2019 Elsevier B.V.

Authors
Gavrichkova O. 1, 2 , Scartazza A.1 , Guidolotti G.1 , Kuzyakov Y. 3, 6 , Leonardi L.1 , Mattioni M.1 , Nawrocka J.4 , Pallozzi E.1 , Skwarek M.4 , Tomczyska M.4 , Calfapietra C. 1, 5
Publisher
Elsevier B.V.
Language
English
Pages
181-191
Status
Published
Volume
162
Year
2019
Organizations
  • 1 Institute of Research on Terrestrial Ecosystems, National Research Council, Porano, Pisa and Montelibretti, Italy
  • 2 Agro-Technology Institute, Peoples Friendship University of Russia, Moscow, Russian Federation
  • 3 Department of Soil Science of Temperate Ecoystems, Department of Agricultural Soil Science, University of Gottingen, Gottingen, Germany
  • 4 University of Lodz, Lodz, Poland
  • 5 Global Change Research Institute, Brno, Czech Republic
  • 6 Institute of Environmental Sciences, Kazan Federal University, Kazan, 420049, Russian Federation
Keywords
13 C labelling; Canopy warming; Carbon cycle; Flux partitioning; Heat stress response; Stable isotopes
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