在玉米水供应有限的情况下,高N可用性降低了N吸收和产量
Nora E Flynn1,2, Louise H Comas3,4,5, Catherine E Stewart6,7
1Department of Soil and Crop Sciences, Colorado State University, Fort Collins, CO, 80523, USA.
Scientific reports
|August 31, 2023
概括
水和 (N) 是植物生长的关键. 这项研究表明,有限的水减少了吸收,增加了土壤酸盐,强调了农业综合水和管理的必要性.
科学领域:
- 农业科学 农业科学
- 土壤科学 土壤科学
- 植物生理学 植物生理学
背景情况:
- 水和 (N) 是全球植物生产力的关键限制因素.
- 了解农业系统中的水供应和N动态之间的相互作用至关重要,但缺乏.
- 在水量有限的情况下,由于对生长,需求和吸收的相互作用影响,N工厂的需求是不确定的.
研究的目的:
- 调查的应用和水的可用性对植物生长和运动的影响.
- 分析水生产率,生产率,吸收,回收和温室气体排放.
- 了解在不同的水和N条件下植物食和资源可用性过程.
主要方法:
- 一个半干旱系统 (美国科罗拉多州东北部) 的实地实验.
- 操纵的土壤N可用性和水的可用性.
- 测量了地面和地下的植物生长,水和N生产力,N吸收,N回收和土壤酸盐水平.
主要成果:
- 在两种水条件下,中度高的土壤N压低了谷物产量和芽生长.
- 低的可用性导致地面组织中回收的增强.
- 由于水的供应有限,减少了的吸收,并增加了30%的深层土壤酸盐积累.
结论:
- 工厂N的需求与用水没有线性关系.
- 综合了解水-N相互作用,植物食和N可用性过程是必不可少的.
- 目前的管理策略可能需要根据水的可用性进行调整,以优化生产率并最大限度地减少损失.
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