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Co-limitation and stoichiometry capture the interacting effects of nitrogen and sulfur on maize yield and nutrient use efficiency

机译:共限制和化学计量捕获氮和硫对玉米产量和营养利用效率的相互作用

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摘要

Nitrogen (N) and sulfur (S) deficiencies, individually and in combination, produce gaps between actual and potential yields in maize (Zea mays L.). Our objectives were to evaluate the effect of N and S status and their interaction on yield gap, and nutrient use efficiency (yield per unit of nutrient supply) using frameworks of co-limitation and stoichiometry. Factorial trials were established combining two N (unfertilized, N-fertilized) and two S (unfertilized, S-fertilized) treatments in five site-years. Yield ranged from 6.7 to 15.4 Mg ha(-1). In a scale from 0 (no stress) to 1 (maximum stress), N stress varied from 0 to 0.67, and S stress from 0 to 0.66. Yield gap varied from 0 to 10 Mg ha(-1), diminished as both N and S stresses reduced, and with higher N-S co-limitation. Both N and S use efficiencies increased with reductions in nutrient stresses and with increases in some of the N-S co-limitation indices. Co-limitation between N and S was maximized with N:S ratio similar to 9.6 in shoot biomass and similar to 11.2 in grain, indicating the balanced nutrient ratio in each plant organ at maturity. Both co-limitation and stoichiometry frameworks captured the interacting N and S effects on yield and nutrient use efficiency.
机译:氮(n)和硫(s)缺乏,单独和组合,在玉米(Zea mays L.)的实际和潜在产率之间产生间隙。我们的目标是评估N和S状态的效果及其对产量间隙的相互作用,以及利用共限和化学计量框架的营养效率(每单位营养供应量的产量)。建立阶乘试验,将两种(未受精,抗施肥)和两个(未受精,S-受精)治疗组合在一起,在五个遗址中组合。产量为6.7至15.4 mg ha(-1)。从0(没有应力)到1(最大应力),N应力从0到0.67变化,并且S应力为0至0.66。产率间隙从0到10mg ha(-1)变化,随着n和s的应力降低,并且具有较高的N-s的合并限制。 N和S使用效率都随着营养应力的减少而增加,并且在一些N-S限制指数中增加。 N和S之间的共限优于N:S比率与9.6的芽生物质中的比率最大化,并且类似于11.2颗粒,表明在成熟时每个植物器官中的平衡营养比。共同限制和化学计量框架均捕获了对产量和营养利用效率的相互作用和S效果。

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