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Article

Quantitative Lasting Effects of Drought Stress at a Growth Stage on Soybean Evapotranspiration and Aboveground BIOMASS

1
School of Civil Engineering, Hefei University of Technology, Hefei 230009, China
2
Institute of Water Resources and Environmental Systems Engineering, Hefei University of Technology, Hefei 230009, China
3
Key Laboratory of Water Conservancy and Water Resources of Anhui Province, Water Resources Research Institute of Anhui Province and Huaihe River Commission, Ministry of Water Resources, Hefei 230088, China
*
Author to whom correspondence should be addressed.
Water 2021, 13(1), 18; https://doi.org/10.3390/w13010018
Submission received: 27 November 2020 / Revised: 17 December 2020 / Accepted: 22 December 2020 / Published: 24 December 2020
(This article belongs to the Special Issue Hydrological Modeling in Water Cycle Processes)

Abstract

Quantifying the lasting effects of drought stress on crop growth is a theoretical basis for revealing agricultural drought risk mechanism and formulating adaptive irrigation strategies. Based on two-season pot experiments of soybean in the Huaibei Plain, quantitative responses of plant evapotranspiration and aboveground biomass at each growth stage from a drought were carried out. The results showed that drought stress at a certain stage of soybean not only significantly reduced the current evapotranspiration and aboveground biomass accumulation during this stage, compared with full irrigation, but also generated the after-effects, which resulted in the reductions of evapotranspiration and biomass accumulation at the subsequent periods. Furthermore, the damaged transpiration and growth mechanism caused by drought gradually recovered through the rewatering later, and the compensation phenomenon even occurred. Nevertheless, the specific recovery effect was decided by both the degree and period of drought before. It is practical to implement deficit irrigation at the seedling and branching stages, but the degree should be controlled. Meanwhile, it is crucial to ensure sufficient water supply during the reproductive growth phase, especially at the flowering and pod-enlargement stage, to guarantee a normal transpiration function and a high biomass yield for soybeans in the Huaibei Plain.
Keywords: crop response to drought stress; after-effect of drought; evapotranspiration; aboveground biomass; crop growth process; soybean; Huaibei Plain crop response to drought stress; after-effect of drought; evapotranspiration; aboveground biomass; crop growth process; soybean; Huaibei Plain

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MDPI and ACS Style

Cui, Y.; Ning, S.; Jin, J.; Jiang, S.; Zhou, Y.; Wu, C. Quantitative Lasting Effects of Drought Stress at a Growth Stage on Soybean Evapotranspiration and Aboveground BIOMASS. Water 2021, 13, 18. https://doi.org/10.3390/w13010018

AMA Style

Cui Y, Ning S, Jin J, Jiang S, Zhou Y, Wu C. Quantitative Lasting Effects of Drought Stress at a Growth Stage on Soybean Evapotranspiration and Aboveground BIOMASS. Water. 2021; 13(1):18. https://doi.org/10.3390/w13010018

Chicago/Turabian Style

Cui, Yi, Shaowei Ning, Juliang Jin, Shangming Jiang, Yuliang Zhou, and Chengguo Wu. 2021. "Quantitative Lasting Effects of Drought Stress at a Growth Stage on Soybean Evapotranspiration and Aboveground BIOMASS" Water 13, no. 1: 18. https://doi.org/10.3390/w13010018

APA Style

Cui, Y., Ning, S., Jin, J., Jiang, S., Zhou, Y., & Wu, C. (2021). Quantitative Lasting Effects of Drought Stress at a Growth Stage on Soybean Evapotranspiration and Aboveground BIOMASS. Water, 13(1), 18. https://doi.org/10.3390/w13010018

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