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Legume Performance and Nitrogen Acquisition Strategies in a Tree-Based Agroecosystem

机译:基于树的农业生态系统中的豆类表现和氮素吸收策略

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Legume N-2 fixation is a critical plant-mediated nutrient pathway highly dependent on site and management conditions, yet little is known of annual crop N-2 fixation associated with established trees in tree-based intercropping systems. Our objective was to investigate the performance and N acquisition strategies of soybean in a tree-based intercropping system with four tree species (genera Juglans, Fraxinus, Acer, and Populus) at two distances from the tree row (1- and 4-m tree-crop interface) in comparison to monocropped soybean. Soil nitrification rates were inversely related to soybean nodule production at the 1-m tree-crop interface (r = -0.64; p = 0.0260). However, regardless of inhibited nodule production, soybeans at the 1-m tree-crop interface were fixing N at high rates as compared to monocropped soybeans, possibly stimulated by belowground interspecies competition; nitrogen derived from atmosphere (Ndfa) in soybeans was highest when intercropped with spruce (75% Ndfa) and poplar (65% Ndfa) at the 1- and 4-m tree-crop interface, respectively. We show a shift in crop N acquisition strategies, as modified by tree species and distance. We suggest that an often overlooked nutrient pathway, nitrate deposition via tree canopy wash, may be an unaccounted abiotic factor influencing nodule formation of associated legume crops.
机译:豆科植物N-2固定是一种关键的植物介导的养分途径,高度依赖于场所和管理条件,但与基于树际系统的成熟树木相关的年度作物N-2固定知之甚少。我们的目的是研究在距行距两行(1-和4-m树)的四种树种(胡桃属,水曲柳,宏cer和胡杨)的树基间作系统中大豆的性能和氮获取策略-crop界面)。土壤硝化速率与1-m树-作物界面处的大豆根瘤产量成反比关系(r = -0.64; p = 0.0260)。但是,不管抑制结节的产生如何,与单作大豆相比,在1-m树-作物界面处的大豆都以较高的固氮率,这可能是由于地下种间竞争的刺激。当在1和4 m的树-作物界面上分别套用云杉(75%Ndfa)和杨树(65%Ndfa)间作时,大豆中来自大气(Ndfa)的氮含量最高。我们显示了作物氮素获取策略的变化,该变化已被树种和距离修改。我们建议通常被忽略的营养途径,即通过树冠层冲洗产生的硝酸盐沉积,可能是影响相关豆类作物根瘤形成的非生物因素。

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