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Response of temperate grasslands at different altitudes to simulated summer drought differed but scaled with annual precipitation

机译:不同海拔的温带草原对模拟夏季干旱的响应有所不同,但随年降水量而变化

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摘要

Water is an important resource for plant life. Since climate scenarios for Switzerland predict an average reduction of 20% in summer precipitation until 2070, understanding ecosystem responses to water shortage, e.g. in terms of plant productivity, is of major concern. Thus, we tested the effects of simulated summer drought on three managed grasslands along an altitudinal gradient in Switzerland from 2005 to 2007, representing typical management intensities at the respective altitude. We assessed the effects of experimental drought on above- and below-ground productivity, stand structure (LAI and vegetation height) and resource use (carbon and water). Responses of community above-ground productivity to reduced precipitation input differed among the three sites but scaled positively with total annual precipitation at the sites (R2=0.85). Annual community above-ground biomass productivity was significantly reduced by summer drought at the alpine site receiving the least amount of annual precipitation, while no significant decrease (rather an increase) was observed at the pre-alpine site receiving highest precipitation amounts in all three years. At the lowland site (intermediate precipitation sums), biomass productivity significantly decreased in response to drought only in the third year, after showing increased abundance of a drought tolerant weed species in the second year. No significant change in below-ground biomass productivity was observed at any of the sites in response to simulated summer drought. However, vegetation carbon isotope ratios increased under drought conditions, indicating an increase in water use efficiency. We conclude that there is no general drought response of Swiss grasslands, but that sites with lower annual precipitation seem to be more vulnerable to summer drought than sites with higher annual precipitation, and thus site-specific adaptation of management strategies will be needed, especially in regions with low annual precipitation.
机译:水是植物生命的重要资源。由于瑞士的气候情景预测,到2070年,夏季降水平均将减少20%,因此请了解生态系统对缺水的反应,例如在工厂生产率方面,是主要关注的问题。因此,我们测试了模拟夏季干旱对2005年至2007年瑞士沿海拔高度梯度的三个管理草原的影响,代表了各个海拔高度的典型管理强度。我们评估了实验干旱对地上和地下生产力,林分结构(LAI和植被高度)以及资源利用(碳和水)的影响。在这三个地点之间,社区地上生产力对减少降水输入的反应不同,但随着地点的年总降水量呈正相关(R2 = 0.85)。在每年降水量最少的高山地区,夏季干旱导致社区地上生物量的年生产力显着降低,而在过去三年中,降水量最高的高山前地区没有观测到显着的下降(而是增加)。 。在低地(中等降水量总和)处,生物量生产力仅在第三年才显着下降,这是在第二年显示出耐旱杂草物种的丰度增加之后。响应模拟的夏季干旱,在任何地点都未观察到地下生物量生产力的显着变化。但是,干旱条件下植被碳同位素比增加,表明水分利用效率增加。我们得出的结论是,瑞士草原没有普遍的干旱应对措施,但是年降水量较低的地区似乎比年降水量较高的地区更容易遭受夏季干旱的影响,因此需要针对具体地点调整管理策略,尤其是在年降水量低的地区。

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