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Agronomic implications of diflufenzopyr application in peanut: transient physiological responses and sustained yield performance

Erika R. Bucior; Ronald B. Sorensen; Joseph S. McIntyre; Amanda A. Cardoso; Matthew J. Taggart; Marshall C. Lamb
Journal of Crop Science and Biotechnology · Vol. 28, Issue 6 · pp. 869-878 · 2025

Abstract

Low-dose applications of certain herbicides have been hypothesized to induce physiological responses that conserve water and reduce aflatoxin contamination risk in peanut ( Arachis hypogaea L.). Motivated by reported leaf rolling following diflufenzopyr application, this study evaluated whether herbicide-induced stomatal closure and biomechanical changes could serve as a water-saving mechanism during late-season stress. Farm field, rainout shelter plot, and greenhouse experiments were conducted under irrigated and drought conditions to quantify the impacts of herbicide treatment on gas exchange, soil water potential, stem water potential, and leaf biomechanics. Herbicide application in well irrigated plots unexpectedly led to a short-term increase in transpiration, stomatal conductance, and photosynthesis without impacting plant physiological capacity or soil drying rate. However, herbicide application under drought conditions accelerated soil drying and promoted a more rapid physiological decline of plants in drier plots. However, stem water potential and leaf inclination data suggest only temporary disruption in stomatal regulation post-treatment, and after leaves had mechanically compensated to the stress by folding, physiological recovery was seen. Despite these physiological interruptions, responses were ultimately transient and not sustained more than a few days, and there was no significant yield or aflatoxin impacts measured in any treatments. These results revise the initial hypothesis of herbicide-induced water conservation by revealing a more complex, context-dependent interaction between plant water status herbicide response, and agronomic implications.

Bibliographic Information

JournalJournal of Crop Science and Biotechnology
PublisherSpringer
Publication Date2025-12-01
Publication Year2025
Volume28
Issue6
Pages869-878
Document TypeJournal Article
Print ISSN1975-9479
eISSN2005-8276
DOI10.1007/s12892-025-00320-4

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NARA Access Coverage2009-01-01~Current
Journal Homepagehttps://www.springer.com/journal/12892
Publisher PageOpen Publisher Page
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