26 citations
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September 1999 in “Canadian Journal of Botany” This study found that a recessive mutation in the RHD4 gene of Arabidopsis thaliana leads to slower and more variable tip growth in seedling root hairs, resulting in shorter and wider hairs than in wild-type plants.
October 2025 in “bioRxiv (Cold Spring Harbor Laboratory)” This study experimentally validated Lockhart's viscoplastic framework for tip growth in Arabidopsis root hairs by demonstrating alignment with observed growth rates and estimating yield turgor pressure and cell wall viscosity, offering a methodology adaptable to other species and conditions.
February 2026 in “The European Physical Journal E” This study introduced mechanical setups to analyze the mechanical properties of root hairs in Arabidopsis thaliana, finding that axial stiffness primarily relates to tip compression and turgor pressure, confirmed by independent methods adapted from work on animal cells.
August 2025 in “bioRxiv (Cold Spring Harbor Laboratory)” In this study, researchers developed innovative mechanical methods to measure the mechanical properties of Arabidopsis thaliana root hairs, concluding that axial stiffness is mainly due to tip compression and influenced by turgor pressure.
June 2026 in “Journal of Experimental Botany” In this review, the researchers discussed the role of cell wall components and proteins in root hair growth, emphasizing the complex interplay of subcellular factors, and identified open questions and future research directions in root hair mechanobiology.