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Root water uptake and profile soil water as affected by vertical root distribution

机译:Root water uptake and profile soil water as affected by vertical root distribution

摘要

Water uptake by plant roots is a main process controlling water balance in field profiles and vital for agro-ecosystem management. Based on the sap flow measurements for maize plants (Zea mays L.) in a field under natural wet- and dry-soil conditions, we studied the effect of vertical root distribution on root water uptake and the resulted changes of profile soil water. The observations indicate that depth of the most densely rooted soil layer was more important than the maximum rooting depth for increasing the ability of plants to cope with the shortage of water. Occurrence of the most densely rooted layer at or below 30-cm soil depth was very conducive to maintaining plant water supply under the dry-soil conditions. In the soil layers colonized most densely by roots, daytime effective soil water saturation (S (e)) always dropped dramatically due to the high-efficient local water depletion. Restriction of the rooting depth markedly increased the difference of S (e) between the individual soil layers particularly under the dry-soil conditions due likely to the physical non-equilibrium of water flow between the layers. This study highlights the importance of root distribution and pattern in regulating soil water use and thereby improving endurance of plants to seasonal droughts for sustainable agricultural productivity.
机译:植物根系吸收水分是控制田间剖面水分平衡的主要过程,对于农业生态系统管理至关重要。基于在自然湿土和干土条件下田间玉米植物(Zea mays L.)的液流测量,我们研究了垂直根系分布对根系水分吸收的影响以及剖面土壤水分的变化。观察结果表明,对于增加植物应对缺水的能力而言,最密集的土壤层的深度比最大的土壤深度更重要。在土壤深度为30 cm或以下时,发生最密集的根系非常有利于在干土条件下维持植物供水。在根部最密集的土壤层中,由于高效的局部耗水,白天的有效土壤水分饱和度(S(e))始终急剧下降。生根深度的限制显着增加了各个土壤层之间的S(e)之差,特别是在干土条件下,这可能是由于各层之间水流的物理不平衡所致。这项研究强调了根系分布和模式在调节土壤水分利用方面的重要性,从而提高了植物对季节性干旱的耐受性,以实现可持续的农业生产力。

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