充足和有限供水条件下玉米对自由空气CO2富集的响应:基于过程的水文植物生长模型的田间实验数据和输出

R. Manderscheid, M. Erbs, J. Kellner, L. Hüther, P. Kraft, H. Wieser, H. Weigel
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引用次数: 0

摘要

本文包含玉米(Zea mays L., cv.)为期两年的FACE试验数据。“Romario”)研究了两种二氧化碳浓度(378,550 ppm)和两种供水水平(充足:潮湿,有限:干燥)对作物生长和植物成分的相互作用。在第二年,还对土壤覆盖进行了变化,以测试秸秆覆盖是否会减少蒸发,从而增加CO2对水利用效率的影响。本文收集的数据集包括植株(叶、茎、穗轴)的天气、管理、土壤条件、土壤水分、物候、干重和N浓度、绿叶面积指数、茎储量、最终产量以及植株和籽粒的质量相关性状。大多数实验结果已经发表在科学期刊上。此外,这些数据已用于两项作物模型研究,并在这里显示了其中一项研究的模拟结果(土壤水分,蒸腾,蒸发和生物量)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maize response to free air CO2 enrichment under ample and restricted water supply: field experimental data and output of a process-based hydrological plant growth model
This paper contains data from a two year FACE experiment with maize (Zea mays L., cv. ‘Romario’) investigating the interaction of two CO2 concentrations (378, 550 ppm) and two levels of water supply (sufficient: wet, limited: dry) on crop growth and plant composition. In the second year soil cover was also varied to test whether mitigation of evaporation by straw mulch increases the CO2 effect on water use efficiency. The datasets assembled herein contain data on weather, management, soil condition, soil moisture, phenology, dry weights and N concentrations of the plant (leaves, stems, cobs), green leaf area index, stem reserves, final yield and quality-related traits in the total plant and grains. Most of the experimental findings have already been published in scientific journals. Moreover, the data have been used in two crop modeling studies, and simulation results (on soil moisture, transpiration, evaporation and biomass) of one of these studies are also shown here.
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