3 citations
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May 2025 in “Plant Cell & Environment” This study found that in Arabidopsis, the CLE14 peptide regulates root hair growth by promoting elongation, an effect that requires CLV2 and CRN proteins and involves ethylene signalling along with hydrogen peroxide and nitric oxide pathways.
April 2026 in “The Plant Journal” This study demonstrated that MYB83 plays a crucial negative role in ethylene-mediated root hair growth in Arabidopsis by directly inhibiting EIN3, and that manipulating the MYB83-EIN3 interaction is key to root hair development and plant tolerance to nutrient stress conditions.
February 2026 in “The Plant Journal” This study found that in Arabidopsis, root hair-specific proteins ADF8 and ADF11 are crucial for responding to hormonal signals like auxin and ethylene, which in turn modulate actin filament dynamics and are key for root hair growth under various environmental conditions.
16 citations
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April 2021 in “Plant Signaling & Behavior” This study found that in Arabidopsis, the MYB30-EIN3 module plays a role in adapting root hair development to phosphate deficiency, potentially enhancing phosphate uptake from soil.