109 citations
,
February 2018 in “CB/Current biology” This study concluded that the receptor-like kinase ERULUS, regulated by auxin, is crucial for modulating cell wall composition and pectin dynamics during root hair growth in Arabidopsis.
19 citations
,
May 2022 in “International journal of molecular sciences” This study suggests that PRX01, PRX44, and PRX73 regulate extensin-mediated cell wall properties during root hair cell growth, influencing growth patterns, peroxidase activity, and cell wall thickness.
2 citations
,
July 2023 in “Agronomy” This study found that treating wheat with 100 µM melatonin under drought conditions significantly improved root and shoot growth, increased melatonin levels, and enhanced drought resistance, potentially clarifying the mechanisms of melatonin's protective effects in plants facing water scarcity.
October 2022 in “Legume Research” This study developed a protocol for callus induction and found that certain hormone concentrations enhance the production of flavonoids, phenols, and terpenes in Bituminaria bituminosa.
This study found that the Arabidopsis cation chloride cotransporter CCC1 is critical for regulating pH in the trans-Golgi network/early endosome, impacting plant growth and stress response.
July 2014 in “Americanae (AECID Library)” This study found that extracts from Tridax procumbens and Ouratea spectabilis reduced seed germination and inhibited root and hypocotyl growth in lettuce, indicating potential allelopathic effects.
141 citations
,
June 2002 in “Philosophical Transactions of the Royal Society B Biological Sciences” This review discusses recent physiological and genetic advances in understanding tip growth in Arabidopsis thaliana root hairs and reports no new experimental results.
26 citations
,
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.
6 citations
,
May 2024 in “Developmental Biology” 147 citations
,
August 2005 in “The Plant Cell” This study identified a key Arabidopsis thaliana gene, TIP1, whose product is involved in S-acylation crucial for normal plant cell growth, particularly affecting root hair development.
80 citations
,
November 2017 in “New Phytologist” In this study, the researchers used the dual-flow-RootChip to show that Arabidopsis roots can locally adapt their hair development in response to asymmetric phosphate conditions.
16 citations
,
January 2005 in “The International Journal of Developmental Biology” This study found that Hex gene expression patterns in chick embryo dorsal skin during feather bud development suggest a significant role in initiating feather morphogenesis.
December 2022 in “Frontiers in plant science” This study identifies two new proteins, CCDC22 and CCDC93, essential for root and root hair growth in Arabidopsis, and demonstrates their genetic link to a VTI13-dependent vacuolar trafficking pathway.
July 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that Arabidopsis thaliana mutants with altered AtRBOHC/RHD2 enzyme function showed abnormal protein regulation linked to increased drought sensitivity due to disrupted plasma membrane protein balance and cytoskeleton changes, as revealed through proteomic analysis and advanced microscopy.
56 citations
,
January 1970 in “Cell and Tissue Research” 8 citations
,
August 2020 in “International Journal of Molecular Sciences” This study found that in Arabidopsis root hairs, oscillating cytoplasmic potassium dynamics precede growth oscillations, suggesting a complex interplay with calcium signaling and microfilament structure in regulating root hair growth.
7 citations
,
December 2007 in “Poultry Science” In this study, beta-catenin expression was found to be significant in embryonic goose skin during early feather bud development, with patterns similar to Shh expression, suggesting its importance in normal development.
8 citations
,
October 2010 in “Advances in plant biology” 317 citations
,
August 1997 in “The Plant Journal” This study observed that while calcium influx does not initiate root hairs in Arabidopsis thaliana, it may be crucial for sustaining their elongation through elevated calcium levels at the root hair tip.
This thesis explores the role of the actin cytoskeleton in plant cell growth, highlighting its involvement in signal transduction and the regulation of tip growth in cells like root hairs.
188 citations
,
May 2009 in “Plant physiology” This study identified 19 specific genes involved in root hair growth and morphogenesis in Arabidopsis, using a combination of computational and experimental methods.
July 2024 in “PLANT PHYSIOLOGY” In this study on Arabidopsis, the researchers identified CIPK13 and CIPK18 as crucial genes for root hair growth, finding that deficiencies in these genes resulted in shorter root hairs and reduced growth rates due to altered calcium oscillations.
January 2023 in “Methods in molecular biology” This article reviews methods for examining the localization and activity of ROP GTPase, cortical microtubule organization, and F-actin dynamics in plant cell models, but reports no new experimental results.
April 2017 in “bioRxiv (Cold Spring Harbor Laboratory)” This study introduced the dual-flow-RootChip platform to demonstrate that Arabidopsis roots exhibit non-autonomous adaptations, such as hair growth regulation, when subjected to varied environmental conditions on opposite sides.
109 citations
,
January 1997 in “Journal of Experimental Botany” This paper discusses the cellular and molecular processes involved in root hair growth in higher plants, focusing on cytological phenomena and the effects of growth regulators and mutations, but reports no new experimental findings.
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.
287 citations
,
March 1999 in “The Plant Journal” This study found that disrupting the microtubule cytoskeleton in Arabidopsis root hairs caused loss of growth directionality and suggested microtubules interact with calcium gradients to regulate apical growth stability.
19 citations
,
March 2016 in “Frontiers in Plant Science” This study identified that spermidine-mediated activation of eIF5A by hypusination plays a significant role in Arabidopsis thaliana growth, flowering time, stress adaptation, and development, including changing root and aerial architecture.
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.
This study analyzed inner root sheath-specific genes in Tan sheep during various growth stages, finding peak expression at birth. The pattern of genes KRT71, KRT72, and TCHH is consistent with wool crimp, potentially influencing wool morphology.