氮气
肥料
环境科学
农学
词根(语言学)
氮肥
氮气循环
化学
生物
语言学
哲学
有机化学
作者
Richard Brackin,Torgny Näsholm,Nicole Robinson,Stéphane Guillou,Kerry Vinall,Prakash Lakshmanan,Susanne Schmidt,Erich Inselsbacher
摘要
Abstract Globally only ≈50% of applied nitrogen (N) fertilizer is captured by crops and the remainder can cause pollution via runoff and gaseous emissions. Synchronizing soil N supply and crop demand will address this problem, however current soil analysis methods provide little insight into delivery and acquisition of N forms by roots. We used microdialysis, a novel technique for in situ quantification of soil nutrient fluxes, to measure N fluxes in sugarcane cropping soils receiving different fertilizer regimes and compare these with N uptake capacities of sugarcane roots. We show that in fertilized sugarcane soils, fluxes of inorganic N exceed the uptake capacities of sugarcane roots by several orders of magnitude. Contrary, fluxes of organic N closely matched roots’ uptake capacity. These results indicate root uptake capacity constrains plant acquisition of inorganic N. This mismatch between soil N supply and root N uptake capacity is a likely key driver for low N efficiency in the studied crop system. Our results also suggest that (i) the relative contribution of inorganic N for plant nutrition may be overestimated when relying on soil extracts as indicators for root-available N and (ii) organic N may contribute more to crop N supply than is currently assumed.
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