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Stem CO2 efflux and its contribution to ecosystem CO2 efflux decrease with drought in a Mediterranean forest stand

机译:地中海林分中干二氧化碳排放量及其对生态系统二氧化碳排放量的贡献随干旱而降低

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摘要

tThe rate of metabolic processes demanding energy in tree stems changes in relation with prevailing cli-matic conditions. Tree water availability can affect stem respiration through impacts on growth, phloemtransport or maintenance of diverse cellular processes, but little is known on this topic. Here we moni-tored seasonal changes in stem CO2efflux (Fs), radial growth, sap flow and non-structural carbohydrates intrees of Quercus ilex in a Mediterranean forest stand subjected since 2003 to either partial (33%) through-fall exclusion (E) or unchanged throughfall (C). Fsincreased exponentially during the day by an effectof temperature, although sap flow attenuated the increase in Fsduring the day time. Over the year, Fsalso increased exponentially with increasing temperatures, but Fscomputed at a standard temperatureof 15?C (F15s) varied by almost 4-fold among dates. F15swas the highest after periods of stem growth anddecreased as tree water availability decreased, similarly in C and E treatments. The decline in F15swas notlinked to a depletion of soluble sugars, which increased when water stress was higher. The proportionof ecosystem respiration attributed to the stems was highest following stem growth (23.3%) and lowestduring the peak of drought (6.5%). High within-year variability in F15smakes unadvisable to pool annualdata of Fsvs. temperature to model Fsat short time scales (hours to months) in Mediterranean-type for-est ecosystems. We demonstrate that water availability is an important factor governing stem CO2effluxand suggest that trees in Mediterranean environments acclimate to seasonal drought by reducing stemrespiration. Stem respiratory rates do not seem to change after a long-term increase in drought intensity,however.
机译:t树木中需要能量的新陈代谢过程的速率随主要气候条件而变化。树木的水可利用性通过影响生长,韧皮部转运或维持各种细胞过程而影响茎呼吸,但对该主题知之甚少。在这里,我们监测了2003年以来地中海森林中栎栎茎干的CO2外流(Fs),径向生长,树液流量和非结构性碳水化合物树的季节变化,自2003年以来受到部分或全部(33%)贯通降雨排除(E)或不变的穿透(C)。尽管白天液流减弱了Fs在白天的增加,但温度的影响Fs在白天呈指数增长。一年中,Fs随温度升高也呈指数增长,但在15°C(F15s)的标准温度下计算的Fs在日期之间变化了近4倍。在茎生长期之后,F15最高,并且随着树木水分利用率的下降而降低,与C和E处理相似。 F15的下降与可溶性糖的减少无关,可溶性糖在水分胁迫较高时会增加。茎生长后,生态系统呼吸所占比例最高(23.3%),干旱高峰期间最低(6.5%)。 F15的年内高变异性不建议汇总Fsv的年度数据。温度以模拟地中海型森林生态系统中短时间尺度(数小时至数月)的Fsat。我们证明水的可用性是控制茎中CO2流出的重要因素,并表明地中海环境中的树木通过减少茎呼吸来适应季节性干旱。但是,长期干旱强度增加后,干呼吸频率似乎没有变化。

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