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Ultraviolet-B Radiation and Nitrogen Affect Nutrient Concentrations and the Amount of Nutrients Acquired by Above-Ground Organs of Maize

机译:紫外线B辐射和氮素影响玉米地上器官获得的养分含量和养分含量

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摘要

UV-B radiation effects on nutrient concentrations in above-ground organs of maize were investigated at silking and maturity at different levels of applied nitrogen under field conditions. The experiment simulated a 20% stratospheric ozone depletion over Portugal. At silking, UV-B increased N, K, Ca, and Zn concentrations, whereas at maturity Ca, Mg, Zn, and Cu increased and N, P and Mn decreased in some plant organs. Generally, at maturity, N, Ca, Cu, and Mn were lower, while P, K, and Zn concentrations in stems and nitrogen-use efficiency (NUE) were higher in N-starved plants. UV-B and N effects on shoot dry biomass were more pronounced than on nutrient concentrations. Nutrient uptake decreased under high UV-B and increased with increasing N application, mainly at maturity harvest. Significant interactions UV-B x N were observed for NUE and for concentration and mass of some elements. For instance, under enhanced UV-B, N, Cu, Zn, and Mn concentrations decreased in leaves, except on N-stressed plants, whereas they were less affected by N nutrition. In order to minimize nutritional, economical, and environmental negative consequences, fertiliser recommendations based on element concentration or yield goals may need to be adjusted.
机译:在田间条件下,在不同施氮水平下,蚕丝期和成熟期,研究了UV-B辐射对玉米地上器官养分浓度的影响。该实验模拟了整个葡萄牙的平流层臭氧消耗量为20%。在蚕丝时,UV-B增加了某些植物器官中的N,K,Ca和Zn浓度,而在成熟时,Ca,Mg,Zn和Cu则增加了,而N,P和Mn有所降低。通常,在氮饥饿的植物中,成熟时的氮,钙,铜和锰含量较低,茎中的磷,钾和锌含量以及氮利用效率(NUE)较高。 UV-B和N对茎干生物量的影响比对营养物浓度的影响更明显。在高UV-B下,养分吸收量下降,并随着施氮量的增加而增加,主要在成熟期收获。对于NUE以及某些元素的浓度和质量,观察到了显着的UV-B x N相互作用。例如,在增强UV-B的条件下,除氮胁迫植物外,叶片中的N,Cu,Zn和Mn浓度降低,而它们受N营养的影响较小。为了最大程度地减少营养,经济和环境方面的不利影响,可能需要根据元素浓度或产量目标调整肥料建议。

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