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Leaf nitrogen and phosphorus of temperate desert plants in response to climate and soil nutrient availability

机译:温带荒漠植物的叶氮和磷对气候和土壤养分有效性的响应

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In desert ecosystems, plant growth and nutrient uptake are restricted by availability of soil nitrogen (N) and phosphorus (P). The effects of both climate and soil nutrient conditions on N and P concentrations among desert plant life forms (annual, perennial and shrub) remain unclear. We assessed leaf N and P levels of 54 desert plants and measured the corresponding soil N and P in shallow (0–10?cm), middle (10–40?cm) and deep soil layers (40–100?cm), at 52 sites in a temperate desert of northwest China. Leaf P and N:P ratios varied markedly among life forms. Leaf P was higher in annuals and perennials than in shrubs. Leaf N and P showed a negative relationship with mean annual temperature (MAT) and no relationship with mean annual precipitation (MAP), but a positive relationship with soil P. Leaf P of shrubs was positively related to soil P in the deep soil. Our study indicated that leaf N and P across the three life forms were influenced by soil P. Deep-rooted plants may enhance the availability of P in the surface soil facilitating growth of shallow-rooted life forms in this N and P limited system, but further research is warranted on this aspect.
机译:在沙漠生态系统中,土壤氮(N)和磷(P)的可利用性限制了植物的生长和养分吸收。气候和土壤养分状况对荒漠植物生命形式(一年生,多年生和灌木)中氮和磷浓度的影响尚不清楚。我们评估了54种荒漠植物的叶N和P水平,并在以下温度测量了浅层(0–10?cm),中层(10–40?cm)和深层(40–100?cm)的相应土壤N和P在中国西北部的温带沙漠中有52个站点。叶片P和N:P比率在生命形式之间显着变化。一年生和多年生植物的叶片P均高于灌木。叶片N和P与年平均温度(MAT)呈负相关,与年平均降水量(MAP)无关系,但与土壤P呈正相关。灌木的叶片P与深层土壤的P呈正相关。我们的研究表明,三种生命形式的叶片氮和磷均受土壤磷的影响。在该氮磷限量体系中,深根植物可能会提高表层土壤中磷的利用率,从而促进浅根生物的生长,但是在这方面有待进一步研究。

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