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Phenotypic plasticity of the coarse root system of Prosopis flexuosa, a phreatophyte tree, in the Monte Desert (Argentina)

机译:阿根廷沙漠Monte Desert(flexumosa)的一类拟生藻类植物Prosopis flexuosa的粗根系统的表型可塑性

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摘要

Prosopis flexuosa trees in the Monte Desert grow in dune and inter-dune valleys, where the water table is located at 6–14 m depth. We asked whether trees in the dunes, which are less likely to access the water table, present a coarse surface root architecture that might favor the exploration / exploitation of dune resources, compensating for water table inaccessibility. We characterized the architecture of surface roots of valley and dune trees, together with the soil environment. The dune held 50 % less and deeper gravimetric soil water (along a 4 m profile), 3-times less organic matter, 2-times less available phosphorous, and a sharper contrast of ammonium and nitrate concentration between plant canopies and uncovered soil than the valley. Coarse surface roots of dune trees were highly branched and grew tortuously at 0.56 ± 0.16 m depth before sinking downward near the tree crown, suggesting an intensive exploitation of the ephemeral, deep, and canopy-linked resources. In contrast, trees from the valley spread their profuse and less branched surface roots mainly horizontally at 0.26 ± 0.08 m depth, several meters outside the crown probably exploring this resource-rich site. A model for the environmental control of root architecture together with potential ecological effects is discussed.
机译:蒙地沙漠中的鸢形Prosopis flexuosa树生长在沙丘和沙丘间的山谷中,那里的地下水位位于6-14 m的深度。我们询问沙丘中不太可能进入地下水位的树木是否呈现出粗糙的地表根结构,从而可能有利于沙丘资源的勘探/开发,从而弥补了地下水位的不可获取性。我们描述了山谷和沙丘树的表面根的结构以及土壤环境。沙丘的重量比土壤少50%,深度更深(沿着4 m剖面),有机物少3倍,有效磷少2倍,并且植物冠层和裸露土壤之间的铵盐和硝酸盐浓度对比要强得多。谷。沙丘树的粗面根部高度分支,并在0.56±0.16 m的深度弯曲地生长,然后向下沉到树冠附近,这表明对短时,深层和冠层相关资源的密集开发。相比之下,山谷中的树木散布着大量的枝条,较少的表层根部主要在0.26±0.08 m的深度水平分布,在树冠外几米处可能是在探索这个资源丰富的地方。讨论了根系建筑的环境控制模型以及潜在的生态效应。

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