首页> 外文期刊>Nutrient Cycling in Agroecosystems >Nitrogen contributions of alley cropped Trifolium pratense may sustain short rotation woody crop yields on marginal lands
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Nitrogen contributions of alley cropped Trifolium pratense may sustain short rotation woody crop yields on marginal lands

机译:胡同裁剪三宝层的氮贡献可能维持在边缘土地上的短旋转木质作物产量

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摘要

Incorporating nitrogen-fixing cover crops into short rotation woody crop (SWRC) plantations may increase soil and tree nitrogen while sustaining, or even improving, yields. This study examined the impacts of Trifolium pratense L. at different seeding rates on soil and poplar N and poplar growth when alley cropped in a one-year old plantation for 2 years compared to natural vegetation and a bare-soil control. These vegetation types were applied in the field under a wide (3.05 m) and narrow (1.82 m) tree alley width. Results showed two of four variations including red clover had 151% and 222% higher soil NO3- levels compared to controls in the second year (wide spacing/full seed rate and narrow spacing/half seed rate, respectively). This correlated with a 26% and 23% increase, respectively, in poplar leaf N concentrations compared to controls. At the wide spacing and full clover seed rate, poplar foliar P was 80% lower compared to controls, implying significant competition. However, results also showed the potential to mitigate this effect with wider tree spacing and lower cover crop seeding rates, without compromising nitrogen benefits. Although higher foliar nitrogen levels did not correlate with increased poplar productivity within 2 years, the results of this study suggest nitrogen-fixing cover crops can improve soil and poplar nitrogen and may sustain SWRC nitrogen requirements over one or multiple rotations.
机译:将氮气固定罩作物掺入短旋转木质作物(SWRC)种植园可能会增加土壤和树脂,同时持续,甚至改善产量。该研究检测了Trifolium Praatense L.在与天然植被和裸机相比的一岁种植园中的一岁时种植苗中的土壤和白杨和杨树生长的不同播种率。这些植被类型在宽(3.05米)和窄(1.82米)的树胡小宽度下施加在该领域。结果显示,与第二年的对照组(分别宽间距/全种子率和窄间距/半种子率)相比,包括红三叶草在内的四种变异中的两种变异有151%和222%的土壤NO3-平等。与对照相比,这种情况分别在杨树叶N浓度增加26%和23%。在宽间距和全三叶草种子率下,与对照相比,杨树叶酸P为80%,暗示显而易见的竞争。然而,结果还表明可能用更宽的树间距和较低的覆盖作物播种率减轻这种效果的可能性,而不会影响氮气益处。尽管在2年内更高的叶状氮水平与杨木生产率增加不相关,但本研究的结果表明氮固定罩作物可以改善土壤和挥发性氮,并且可以在一个或多个旋转上维持SWRC氮要求。

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