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首页> 外文期刊>Frontiers in Plant Science >A simple framework to analyze water constraints on seasonal transpiration in rubber tree ( Hevea brasiliensis) plantations
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A simple framework to analyze water constraints on seasonal transpiration in rubber tree ( Hevea brasiliensis) plantations

机译:分析橡胶树人工林季节性蒸腾水分限制的简单框架

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Climate change and fast extension in climatically suboptimal areas threaten the sustainability of rubber tree cultivation. A simple framework based on reduction factors of potential transpiration was tested to evaluate the water constraints on seasonal transpiration in tropical sub-humid climates, according pedoclimatic conditions. We selected a representative, mature stand in a drought-prone area. Tree transpiration, evaporative demand and soil water availability were measured every day over 15 months. The results showed that basic relationships with evaporative demand, leaf area index and soil water availability were globally supported. However, the implementation of a regulation of transpiration at high evaporative demand whatever soil water availability was necessary to avoid large overestimates of transpiration. The details of regulation were confirmed by the analysis of canopy conductance response to vapor pressure deficit. The final objective of providing hierarchy between the main regulation factors of seasonal and annual transpiration was achieved. In the tested environmental conditions, the impact of atmospheric drought appeared larger importance than soil drought contrary to expectations. Our results support the interest in simple models to provide a first diagnosis of water constraints on transpiration with limited data, and to help decision making toward more sustainable rubber plantations.
机译:气候变化和气候欠佳地区的快速扩张威胁着橡胶树种植的可持续性。测试了一个基于潜在蒸腾量减少因子的简单框架,以根据气候条件评估热带亚湿润气候下季节性蒸腾量的水分限制。我们在干旱多发地区选择了具有代表性的成熟林分。在15个月中每天测量树木的蒸腾,蒸发需求和土壤水分的利用率。结果表明,与蒸发需求,叶面积指数和土壤水分利用率之间的基本关系得到了全球支持。但是,无论土壤水的可用性如何,为了避免大量高估蒸腾作用,在高蒸发需求下实施蒸腾调节措施都是必要的。通过对冠层电导率对蒸气压不足的响应的分析,证实了调节的细节。最终目的是在季节性和年度蒸腾的主要调节因子之间提供层次结构。在测试的环境条件下,与预期相反,大气干旱的影响显得比土壤干旱更重要。我们的结果支持对简单模型的兴趣,该模型可以用有限的数据对水分蒸发中的水分限制进行首次诊断,并有助于制定更可持续的橡胶种植园的决策。

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