Short-term carbon dynamics in a temperate grassland and heathland ecosystem exposed to 104 days of drought followed by irrigation
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Temperate ecosystems are susceptible to drought events. The effect of a severe drought (104 days) followed by irrigation on the plant C uptake, its assimilation and input of C in soil were examined using a triple <sup>13</sup>CO<sub>2</sub> pulse-chase labelling experiment in model grassland and heathland ecosystems. First <sup>13</sup>CO<sub>2</sub> pulse at day 0 of the experiment revealed much higher <sup>13</sup>C tracer uptake for shoots, roots and soil compared to the second pulse (day 44), where all plants showed significantly lower <sup>13</sup>C tracer uptake. After the third <sup>13</sup>CO<sub>2</sub> pulse (day 70), very low <sup>13</sup>C uptake in shoots led to a negligible allocation of <sup>13</sup>C into roots and soil. During irrigation after the severe drought, the <sup>13</sup>C tracer that was allocated in plant tissues during the second and third pulse labelling was re-allocated in roots and soil, as soon as the irrigation started. This re-allocation was higher and longer lasting in heathland compared to grassland ecosystems.



