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A Range-Wide Experiment to Investigate Nutrient and Soil Moisture Interactions in Loblolly Pine Plantations

机译:调查火炬松人工林中养分与土壤水分相互作用的范围广泛的实验

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The future climate of the southeastern USA is predicted to be warmer, drier and more variable in rainfall, which may increase drought frequency and intensity. Loblolly pine (Pinus taeda) is the most important commercial tree species in the world and is planted on ~11 million ha within its native range in the southeastern USA. A regional study was installed to evaluate effects of decreased rainfall and nutrient additions on loblolly pine plantation productivity and physiology. Four locations were established to capture the range-wide variability of soil and climate. Treatments were initiated in 2012 and consisted of a factorial combination of throughfall reduction (approximate 30% reduction) and fertilization (complete suite of nutrients). Tree and stand growth were measured at each site. Results after two growing seasons indicate a positive but variable response of fertilization on stand volume increment at all four sites and a negative effect of throughfall reduction at two sites. Data will be used to produce robust process model parameterizations useful for simulating loblolly pine growth and function under future, novel climate and management scenarios. The resulting improved models will provide support for developing management strategies to increase pine plantation productivity and carbon sequestration under a changing climate.
机译:预计美国东南部的未来气候将更温暖,更干燥且降雨量更多,这可能会增加干旱的频率和强度。火炬松(Pinus taeda)是世界上最重要的商业树种,在美国东南部的本土范围内种植了约1100万公顷。安装了一项区域研究,以评估降雨减少和养分添加量对火炬松人工林生产力和生理的影响。建立了四个地点来捕获土壤和气候在整个范围内的变化。治疗始于2012年,包括减少通量(减少约30%)和施肥(提供全套营养素)的因子组合。在每个地点测量树木和林分的生长。两个生长季节后的结果表明,在所有四个站点上,施肥对林分体积增加的反应都是积极的但变化很大,而在两个站点上,穿透量减少的负面影响是负面的。数据将用于产生可靠的过程模型参数化,可用于模拟火炬松在未来,新型气候和管理情景下的生长和功能。由此产生的改进模型将为制定管理策略提供支持,以在气候变化的情况下提高松树人工林的生产力和固碳。

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