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Nitrogen and phosphorus uptake and yield of wheat and maize intercropped with poplar

机译:间作的杨麦间作对小麦和玉米氮磷吸收及产量的影响。

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This study investigated the N and P uptake and yield performances of winter wheat (Triticum aestivum) and maize (Zea mays) upon intercropping with 1- to 2-year-old poplar (Populus x euramericana cl. "74/76'') trees compared to a sole wheat and maize rotation in fertilized and unfertilized subplots. Aboveground biomass, grain yield, yield components, and N and P contents of wheat and maize were measured in each plot, in addition to soil available N and P. No significant differences in biomass, grain yield, and N and P uptake of wheat were found between the intercropping and sole-crop systems within the same fertilization treatment. Maize biomass and grain yield decreased by 37% and 31%, and 28% and 34% for the fertilized and unfertilized treatment at maize maturity in the same order. The N and P contents in maize intercropped with poplar were found to be significantly lower than in the sole-maize. For the fertilized treatment, intercropping with poplar led to significantly lower soil NO3-N and Olsen-P in the 0-20-cm layer during the active wheat growth period and a significant increase in soil NO3-N and Olsen-P during the active maize growth period due to less N and P uptake by maize. The poplar induced a decrease in soil NO3-N and Olsen-P during both wheat and maize season under unfertilized conditions, thereby influencing the yield and nutrient uptake of intercrops. Therefore, enough available nutrients had to be provided for the agroforestry systems, especially during the active growth period of intercrops.
机译:这项研究调查了冬小麦(Triticum aestivum)和玉米(Zea mays)与1至2岁的杨树(Populus x euramericana cl。“ 74/76”)间作后的氮和磷吸收量及产量表现。与单独施肥和未施肥子图中小麦和玉米的轮作相比,除土壤有效氮和磷外,还测量了每个样地的地上生物量,谷物产量,产量构成以及氮和磷含量。在同一施肥处理下,套作系统和单作系统之间发现了小麦生物量,籽粒产量以及氮,磷的吸收,玉米生物量和籽粒产量分别下降了37%和31%,分别为28%和34%。在玉米成熟度相同的施肥和未施肥处理中,发现套作杨树的玉米中的氮和磷含量显着低于单独种植的玉米;对于施肥处理来说,与杨木间作的土壤氮含量显着降低在小麦活跃生育期,0-20 cm层中的3-N和Olsen-P含量较高,而在玉米活跃生育期中,土壤NO3-N和Olsen-P含量显着增加,这是因为玉米对N和P的吸收较少。在未施肥的条件下,杨树在小麦和玉米季节都导致土壤NO3-N和Olsen-P减少,从而影响了间作的产量和养分吸收。因此,必须为农林业系统提供足够的可用养分,尤其是在间作作物活跃生长期间。

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