DOE OSTI · 3366659
Shaping with water: linking moisture perception to development in plant roots
Abstract
Water is the most limiting resource for plant growth and development. Heterogeneity in the environmental distribution of water requires plants to direct root growth toward water and to avoid investing resources in areas that lack water. Roots use hydrosignaling pathways—hydrotropism, hydropatterning, and xerobranching—to sense and respond to water availability. While molecular mechanisms of water perception remain unclear, recent studies suggest that organ-level processes using proxies like ethylene help detect spatial water patterns. This review summarizes advances in hydrosignaling and identifies key knowledge gaps to address how plants sense water. Understanding these processes will guide strategies to improve root water capture for sustainable agriculture.
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Dwyer, William P. [Stanford Univ., CA (United States)], Torres-Martínez, Héctor H. [Stanford Univ., CA (United States); Howard Hughes Medical Inst., Stanford, CA (United States)], Dinneny, José R. [Stanford Univ., CA (United States); Howard Hughes Medical Inst., Stanford, CA (United States)]. 2026-01-17. Shaping with water: linking moisture perception to development in plant roots. https://doi.org/10.1186/s12915-026-02503-z
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