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The impact of changes in the timing of precipitation on the herbaceous understorey of Mediterranean evergreen oak woodlands

机译:降水时间变化对地中海常绿橡树林地草本下层的影响

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Climate change scenarios for the Iberian Peninsula predict increasing temperatures and increasingly variable precipitation regimes, which will challenge the sustainability and biodiversity of Mediterranean ecosystems such as the semi-natural evergreen oak woodlands. To assess the effects of precipitation variability on productivity, species composition and vegetation gas exchange of the understorey vegetation in a typical managed cork oak woodland, a large-scale rainfall manipulation experiment was established. We studied the impacts of a change in the timing of precipitation events on this ecosystem, without altering total annual precipitation inputs. The two water manipulation treatments were: 'weekly watering treatment', where natural conditions were simulated with a normal dry period of 7 days, and '3-weekly watering treatment', with the normal dry period increased three-fold to 21 days. Our experimental precipitation patterns resulted in significant differences in temporal soil moisture dynamics between the two treatments. Average soil water content (SWC) at 3 cm depth during the growing season was 16.1 +/- 0.17% and 15.8 +/- 0.18% in the weekly and 3-weekly watering treatments, respectively, with a mere 5% increase in the variability of SWC when extending the dry period from one to three weeks. Water infiltration into deeper soil layers (>50 cm) was significantly higher in the 3-weekly watering treatment as compared to the weekly watering treatment. This might be beneficial to Quercus suber, the tree component in this ecosystem, as its extensive tree root system enables water acquisition from deeper soil layers. However, manipulation of the within-season precipitation variability, with a shift to fewer, but larger rain events, without change in total precipitation amount, had no significant effect on aboveground net primary productivity (ANPP), belowground net primary productivity (BNPP) and species composition, with average values of peak biomass of 385 g m(-2) and 222 g m(-2) for ANPP and BNPP, respectively. The experimental precipitation patterns did not result in significant differences in the vegetation gas exchange between the two watering treatments. The CO2 and H2O exchange parameters correlated well with air temperature. In addition, evapotranspiration showed a good correlation with SWC. Incorporating the data of SWC in the conceptual 'bucket model' showed that, independently of the watering regime, soil water availability during the life-cycle of these annual plants did not reach severe water stress conditions, which can explain the lack of a significant treatment effect in our study. In addition, our results showed that the annual plant community in these Mediterranean ecosystems is well adapted to short-term drought, through their phenological patterns and physiological adaptations
机译:伊比利亚半岛的气候变化情景预测温度会升高,降水机制会不断变化,这将挑战地中海生态系统(如半天然常绿橡树林地)的可持续性和生物多样性。为了评估降水变化对典型的管理性软木栎林下层植被生产力,物种组成和植被气体交换的影响,建立了大规模的降雨操纵实验。我们研究了降水事件时间变化对这个生态系统的影响,而没有改变每年的降水总量。两种水处理方法是:“每周浇水处理”,模拟自然条件,正常干燥时间为7天,“ 3周浇水处理”,正常干燥时间增加三倍,至21天。我们的实验降水模式导致两种处理之间的土壤水分动态变化存在显着差异。在生长季节的3 cm深度处,平均水含量(SWC)在每周和每周3次的浇水处理中分别为16.1 +/- 0.17%和15.8 +/- 0.18%,而变异性仅增加了5%将干燥时间从一星期延长至三周时的SWC值。与每周浇水处理相比,每周浇水处理的3周水渗入更深的土壤层(> 50 cm)明显更高。这可能有益于该生态系统中的树木组成部分Quercus suber,因为其广泛的树根系统能够从更深的土壤层中获取水。但是,控制季节内降水变异性(转移到较少但较大的降雨事件),而总降水量没有变化,对地上净初级生产力(ANPP),地下净初级生产力(BNPP)和地表净初级生产力没有显着影响。物种组成,ANPP和BNPP的峰值生物量平均值分别为385 gm(-2)和222 gm(-2)。实验的降水模式在两种浇水处理之间的植被气体交换中并未导致显着差异。 CO2和H2O交换参数与气温密切相关。此外,蒸散量与SWC有很好的相关性。将SWC的数据纳入概念性的“桶模型”中表明,与浇水方式无关,这些一年生植物的生命周期内土壤水分利用率并未达到严重的水分胁迫条件,这可以解释为缺乏有效的处理方法在我们的研究中的效果。此外,我们的结果表明,这些地中海生态系统中的年度植物群落通过其物候模式和生理适应性,非常适合短期干旱。

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