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Groundwater use by native plants in response to changes in precipitation in an intermountain basin

机译:山间盆地降水对本地植物的地下水利用

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Many arid basins in western North America are likely to experience future changes in precipitation timing and amount. Where shallow water tables occur, plant acquisition of groundwater and soil water may be influenced by growing season precipitation. We conducted a rainfall manipulation experiment to investigate responses of four common native plant species to ambient, increased, and decreased summer monsoon rainfall. We measured plant xylem pressure potentials (V) and stable oxygen isotope signatures (δ18O) to assess effects of altered precipitation on plant water relations and water acquisition patterns. Reduced rainfall decreased Ψ more in the grasses Sporobolus airoides and Distichlis spicata than the more deeply rooted shrubs Sarcobatus vermiculatus and Ericameria nauseosa. E. nauseosa had little response to natural or experimental differences in available soil water. Plant xylem water 518O indicated that S. airoides and D. spicata are almost entirely dependent on rain-recharged soil water, while E. nauseosa is almost entirely groundwater-dependent. Sarcobatus vermiculatus used groundwater during dry periods, but utilized precipitation from soil layers after large rainfall events. Persistent changes in precipitation patterns could cause shifts in plant community composition that may alter basin-scale groundwater consumption by native plants, affecting water availability for human and ecosystem uses.
机译:北美西部的许多干旱盆地很可能会经历降水时间和降水量的未来变化。在出现浅水位的地方,生长季节降水可能会影响植物对地下水和土壤水的获取。我们进行了降雨操纵实验,以研究四种常见的本地植物物种对夏季季风降雨的环境响应,增加和减少的响应。我们测量了植物木质部的压力势(V)和稳定的氧同位素特征(δ18O),以评估降水变化对植物水分关系和水获取模式的影响。降雨减少使草类孢子菌(Sporobolus airoides)和小叶蝉(Distichlis spicata)的减少程度比根深浅的Sarcobatus vermiculatus和Ericameria nauseosa的减少程度更大。大肠杆菌对可利用的土壤水中的自然或实验差异几乎没有反应。木质部植物水518O表明S. airoides和D. spicata几乎完全依赖于雨水补充的土壤水,而E. nauseosa几乎完全依赖于地下水。 Sarcobatus vermiculatus在干旱时期使用了地下水,但是在发生大降雨之后利用了土壤层的降水。降水模式的持续变化可能导致植物群落组成发生变化,从而可能改变本地植物在流域范围内的地下水消耗,从而影响人类和生态系统使用的水供应。

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