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How the forest copes with the summer heat by Staff Writers Basel, Switzerland (SPX) Sep 11, 2018
Between April and August this year, Switzerland and central Europe have experienced the driest summer season since 1864. Especially the forest seems to suffer from this dry spell: As early as August, trees began to turn brown this year. A current study by the University of Basel indicates now that native forest trees can cope much better with the drought than previously expected. It is, however, too early to give the all-clear as a consistently warmer and dryer climate might still put our native forests at risk. Trees depend on photosynthesis to produce sugar for their metabolism. To this end, they have to absorb carbon dioxide (CO2) through small pores on their leaves. Considerable amounts of water evaporate in this process with adult beech trees losing up to 400 liters a day. This water has to be replaced on a daily bases by water uptake from the soil. The water is then transported from the roots to the leaves via vessels in the trunk. For the water to be transported, it requires a low pressure that is created by the loss of water in the leaves.
Drying out or starving Trees can, however, prevent dessication by closing their pores during low water availability. This reduces water loss and avoids extreme low pressures in the conductive pathways. Closing the pores, however, comes at a price as the rate of photosynthesis declines with the pores closed. If the pores remain closed for a long time, the tree can no longer produce sugars and ultimately risks starvation. Based on these principles it had been conventional wisdom that trees run the risk of either desiccation or starvation during extreme dry spells. Reliable data for this important phenomenon have, however, not been available until now.
Trees physiologically well prepared By closing their pores, they prevent damages to their conductive pathways and thus avoid the risk of desiccation. The researchers found no evidence that the long-lasting pore closure leads to a reduction in the trees` sugar reserves. Based on their investigations, the researchers conclude that the trees are physiologically surprisingly well equipped to survive extreme drought events as the one in 2015 by means of effective pore closure and adequate sugar storage. Initial data from the heat wave of 2018 confirm these results.
Controlled biological process "Although brown leaves are no longer able to carry out photosynthesis, the sugar reserves are already quite full at this time of year, so the tree should be able to survive the winter as well," explains the plant scientist. It is, however, crucial that the leaf buds survive the drought without damage. "The buds have already been planted to sprout new leaves next year. Whether this is the case, we can judge only next spring."
Too early to sound the all-clear The researchers also point out that although trees can physiologically resist a single year of drought, they might emerge weakened and thus become susceptible to insect infestation, for instance.
Species-rich forests better compensate environmental impacts Zurich, Switzerland (SPX) Aug 31, 2018 Forest ecosystems are elementary for a climatic balance. Countries such as China have recognized this fact; for years, they have been conducting extensive afforestation programs to compensate their rising CO2 emissions. As part of the global carbon cycle, forests take up about 45 percent of the carbon from the environment and bind it in the soil and as biomass over long periods of time. At the same time, trees can take up or release carbon in the short term, as well. Until now, however, ther ... read more
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