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Water source niche overlap increases with site moisture availability in woody perennials

机译:水源利基重叠随着木质多年生植物的网站湿度可用性增加

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Classical niche partitioning theory posits increased competition for and partitioning of the most limiting resource among coexisting species. Coexisting plant species may vary in rooting depth, reflecting niche partitioning in water source use. Our goal was to assess the soil water partitioning of woody plant communities across northern Arizona along an elevational moisture gradient using stem and soil water isotopes from two sampling periods to estimate the use of different water sources. We hypothesized that niche overlap of water sources would be higher and monsoon precipitation uptake would be lower at sites with higher moisture availability. Pairwise niche overlap of coexisting species was calculated using mixing model estimates of proportional water use for three sources. Across the moisture gradient, niche overlap increased with site moisture index (precipitation/potential evapotranspiration) across seasons, and site moisture index explained 37% of the variation in niche overlap of intermediate and deeper sources of water. Desert trees utilized more winter source water than desert shrubs, suggesting the partitioning of water sources between functional groups. However, seasonal differences in surface water use were primarily found at intermediate levels of site moisture availability. Our findings support classical niche partitioning theory in that plants exhibit higher overlap of water sources when water is not a limiting resource.
机译:古典的利基分区理论在共存物种中增加了对最限制性资源的竞争和分区。共存植物物种可能因生根深度而变化,反映了水源使用中的利基分区。我们的目标是评估沿着两次采样时期的茎和土壤水同位素沿着高度水分梯度对亚利桑那州北部北部北部北部北部的木本植物群落进行土壤水分分配,从而估计不同水源的使用。我们假设水源的利基重叠将较高,季风降水摄取在具有较高水分的地方的场地下降。使用混合模型估计计算三种来源的比例用水估计来计算共存物种的成对利基重叠。在水分梯度,利基重叠随着季节的现场水分指数(沉淀/潜在蒸发)而重叠,网站湿度指数解释了中间和更深的水源的利基重叠变化的37%。沙漠树木利用比沙漠灌木更多的冬季来源水,这表明官能团之间的水源分区。然而,地表用水的季节性差异主要是在地点水分水平的中间水平发现。我们的研究结果支持古典的利基分区理论,当水不是限制资源时,植物展示了更高的水源重叠。

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