Exploring the water status of drip-irrigated apple trees based on variation in predawn stem water potential

Determining irrigation timing based on plant water status is essential for drip-irrigated apple orchards. Stem water potential (Ψ stem ) has been suggested as a tool for precision irrigation in fruit trees, but clear thresholds for drip-irrigated apple trees are lacking. In 2023 and 2024, this study used PSY1 technology to continuously monitor Ψ stem in apple trees under fully irrigated (NS), moderately water-deficient (MS), and severely water-deficient (SS) treatments on the Loess Plateau. The 2023 data were collected from a single tree per treatment and are therefore descriptive only. The results showed that Ψ stem exhibited a sinusoidal diurnal pattern, with NS treatment exhibiting the highest Ψ stem values in both years. Descriptively, SS reduced predawn and midday Ψ stem (Ψp and Ψm, respectively) by 0.13–0.14 MPa in 2023; in 2024, MS and SS reduced them by 0.22–0.33 and 0.22–0.34 MPa, respectively. Ψp exhibited a higher discrimination coefficient and significantly stronger signal intensity than Ψm. Moreover, as soil water potential (Ψ soil ) declined, the dynamics of Ψp exhibited three distinct phases: a gradual decline (Ψ soil ≥ −0.10 MPa), a sharp drop (−0.14 < Ψ soil < −0.10 MPa), and a rebound (Ψ soil ≤ −0.14 MPa), with critical thresholds identified at −0.51 MPa (95% CI: −0.78 to −0.39 MPa) and −0.92 MPa (95% CI: −1.05 to −0.82 MPa), respectively. These values can serve as indicators of water stress in apple trees and the need for irrigation. The findings provide important reference values for the formulation of orchard irrigation strategies.

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Publication Details

Journal
Agricultural Water Management
Published
2026-09-25
DOI
https://doi.org/10.1016/j.agwat.2026.110805
Primary Topic
Irrigation Practices and Water Management
Type
article
Field-Weighted Citation Impact
0.00

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article

Exploring the water status of drip-irrigated apple trees based on variation in predawn stem water potential

Ruixia Chen, Quanyue Xu, Lijian Zheng, Junliang Wan et al.
Agricultural Water Management
Irrigation Practices and Water Management
article

Exploring the water status of drip-irrigated apple trees based on variation in predawn stem water potential

Ruixia Chen, Quanyue Xu, Lijian Zheng, Junliang Wan, Juanjuan Ma
article en

Abstract

Determining irrigation timing based on plant water status is essential for drip-irrigated apple orchards. Stem water potential (Ψ stem ) has been suggested as a tool for precision irrigation in fruit trees, but clear thresholds for drip-irrigated apple trees are lacking. In 2023 and 2024, this study used PSY1 technology to continuously monitor Ψ stem in apple trees under fully irrigated (NS), moderately water-deficient (MS), and severely water-deficient (SS) treatments on the Loess Plateau. The 2023 data were collected from a single tree per treatment and are therefore descriptive only. The results showed that Ψ stem exhibited a sinusoidal diurnal pattern, with NS treatment exhibiting the highest Ψ stem values in both years. Descriptively, SS reduced predawn and midday Ψ stem (Ψp and Ψm, respectively) by 0.13–0.14 MPa in 2023; in 2024, MS and SS reduced them by 0.22–0.33 and 0.22–0.34 MPa, respectively. Ψp exhibited a higher discrimination coefficient and significantly stronger signal intensity than Ψm. Moreover, as soil water potential (Ψ soil ) declined, the dynamics of Ψp exhibited three distinct phases: a gradual decline (Ψ soil ≥ −0.10 MPa), a sharp drop (−0.14 < Ψ soil < −0.10 MPa), and a rebound (Ψ soil ≤ −0.14 MPa), with critical thresholds identified at −0.51 MPa (95% CI: −0.78 to −0.39 MPa) and −0.92 MPa (95% CI: −1.05 to −0.82 MPa), respectively. These values can serve as indicators of water stress in apple trees and the need for irrigation. The findings provide important reference values for the formulation of orchard irrigation strategies.

Agricultural Water ManagementVol. 336
Taiyuan University of Technology (CN)
National Natural Science Foundation of China, Natural Science Foundation of Shanxi Province
Clean water and sanitation
Openalex Percentile: Top 14%
Irrigation Practices and Water Management
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