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Journal Article

Monitoring cotton water status with microtensiometers

Clay G. Christenson; Mohammad R. Gohardoust; Sebastian Calleja; Kelly R. Thorp; Markus Tuller; Duke Pauli
Irrigation Science · Vol. 42, Issue 5 · pp. 995-1011 · 2024

Abstract

Stem water potential (Ψ stem ) is a key indicator for assessing plant water status, which is crucial in understanding plant health and productivity. However, existing measurement methods for Ψ stem , characterized by destructiveness and intermittency, limit its applicability. Microtensiometers, an emerging plant-based sensor, offer continuous monitoring capabilities and have shown success in certain vine and tree species. In this study, we investigate the efficacy of microtensiometers ability to monitor the Ψ stem of cotton ( Gossypium hirsutum L.) under three distinct irrigation treatments in Maricopa, Arizona, an extremely hot, arid environment. We analyze the diurnal dynamics of Ψ stem across the irrigation regimes and compare these measurements with midday leaf water potentials (Ψ leaf ) obtained using a dewpoint potentiometer. Our results demonstrate that the microtensiometer-derived Ψ stem closely follows known diurnal patterns of Ψ leaf , tracking with vapor pressure deficit (VPD) and responding to variations in irrigation levels and soil moisture content. Time cross-correlation analysis reveals an 80-minute lag in Ψ stem response to changing VPD under non-water limiting conditions, which shortens under water-limiting conditions. Additionally, we establish a robust linear relationship ( R 2 adj = 0.82) between Ψ stem and Ψ leaf , with this relationship strengthening as water availability decreases. Notably, we observe mean gradients of 1.2 and 0.06 MPa between soil vs. stem and stem vs. leaf water potentials, respectively. Moreover, Ψ stem data proves to be more sensitive in distinguishing between irrigation treatments earlier in the growing season compared to Ψ leaf , leaf temperature and leaf gas exchange parameters. These findings highlight the utility of microtensiometers as valuable tools for monitoring water status in smaller-stemmed row crops such as cotton.

Bibliographic Information

JournalIrrigation Science
PublisherSpringer
Publication Date2024-09-01
Publication Year2024
Volume42
Issue5
Pages995-1011
Document TypeJournal Article
Print ISSN0342-7188
eISSN1432-1319
DOI10.1007/s00271-024-00930-w

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NARA Access Coverage1978-01-01~Current
Journal Homepagehttps://www.springer.com/journal/271
Publisher PageOpen Publisher Page
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