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Sap flow of black locust in response to short-term drought in southern Loess Plateau of China

机译:黄土高原南部干旱对短期干旱的响应

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摘要

Soil water shortage is a major factor influencing the ecology and hydrology of vegetation in China’s semihumid Loess Plateau. However, few studies have experimentally assessed how expected changes in precipitation will affect sap flow in semihumid forest ecosystems. In this study, we measured the sap flow of black locust (Robinia pseudoacacia Linn.) under ambient and drought (induced by throughfall exclusion) conditions in 2015 and 2016, and investigated the relationship between stand transpiration and environmental factors in the semihumid China’s Loess Plateau. Throughfall exclusion significantly decreased sap flux density and stand transpiration by 39% and 28%, respectively, in 2016, which may have been due to the cumulative droughts effect from both 2015 and 2016. Throughfall exclusion caused a significant reduction in soil moisture, leaf area index (LAI), and stem diameter. Stand transpiration was positively correlated with LAI (P < 0.01), but precipitation and soil moisture did not correlate with stand transpiration at a daily timescale, suggesting that LAI can be used as a proxy for stand transpiration. Our results highlight that precipitation must be considered when planting black locust in semihumid regions. These findings provide basic information about the management of water resources and vegetation restoration in the semihumid China’s Loess Plateau and possibly other water-limited regions around the world.
机译:土壤缺水是影响中国半湿润黄土高原植被生态和水文学的主要因素。然而,很少有研究通过实验评估降水的预期变化将如何影响半湿润森林生态系统中的汁液流动。在这项研究中,我们测量了2015年和2016年在环境和干旱(通过通流排斥引起)条件下刺槐(Robinia pseudoacacia Linn。)的汁液流动,并研究了半湿润中国黄土高原林分蒸腾量与环境因子之间的关系。 。 2016年,排除通透性使汁液通量密度和林分蒸腾分别分别降低了39%和28%,这可能是由于2015年和2016年的累积干旱效应所致。排除通透性导致土壤水分,叶面积显着减少指数(LAI)和茎直径。林分蒸腾量与LAI呈正相关(P <0.01),但降水和土壤水分与林分蒸腾量在每天的时间尺度上均不相关,这表明LAI可以用作林分蒸腾的代表。我们的结果表明,在半湿润地区种植刺槐时必须考虑降水。这些发现为中国半湿润的黄土高原以及世界其他可能缺水地区的水资源管理和植被恢复提供了基本信息。

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