Published June 26, 2024 | Version v1

Coupling Stem Water Potential and Soil Water Potential on irrigated and not irrigated vines. Preliminary results for Vitis vinifera L. cv Teroldego

Description

Improving wine quality necessitates precise control over plant water stress, which requires accurate scheduling of irrigation 
based on the plant's water status and the soil's water availability. The aim of this experiment is to monitor the water status of 
grapevines and soil in both irrigated and not-irrigated conditions to quantify differences in the plant's physiological response 
and yield. In addition, novel microtensiometer probes for measuring continuously the Stem Water Potential were tested for 
efficacy. These probes were coupled with a handcrafted tensiometer to monitor the Soil Water status and at the end of the 
season all the yield was analyzed to determine the main oenological parameters driving the final quality of the musts. Initial 
findings indicate that the microtensiometers gave effective estimates of the vines’ water status, revealing rapid plant responses 
to water inputs and atmospheric changes. Notably for the experiment, soil moisture exceeded field capacity under irrigated 
vines before irrigation, suggesting potential water loss through deep percolation, and both the irrigated and not-irrigated vines 
were in water comfort for all the vegetative season without any detriment both in production and quality. 

Notes

Best Poster award at the XXVI National Conference Of Agrometeorology, L’Aquila (AQ), Italy, 5-7 June 2024

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Poster_Mattedi et al.pdf

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Dates

Copyrighted
2024-06-05