bioRxiv Science⌕ Search

Biology subjects

Ogawa, S. T.

Publications and source records attributed to Ogawa, S. T..

1 recordsLinked to original sources

MLO-mediated Ca2+ influx regulates root hair tip growth in Arabidopsis

O_LIRoot hair tip-growth involves coordinated Ca2+ and ROS signaling to promote growth while maintaining tip integrity. MILDEW RESISTANCE LOCUS-O (MLO) proteins act downstream of FERONIA (FER) receptor-like kinases in pollen tubes and synergids to regulate calcium dynamics. This study uses a constitutively active MLO (faNTA) to identify a new role for the FER/MLO signaling module in regulating [Ca2+]cyt oscillations in growing root hairs. C_LIO_LIfaNTA bypasses FER signaling in root hairs, complementing not only the previously reported fer-4 root hair bursting phenotype, but also the complete loss of polarity in spherical root hairs. This complementation correlates with the restoration of tip-focused [Ca2+]cyt oscillations that are disrupted in fer mutants, suggesting that MLOs are involved in regulating [Ca2+]cyt dynamics in growing root hairs. C_LIO_LIMLO15 was identified as a regulator of root hair tip-growth based on disrupted root hair growth and [Ca2+]cyt signatures in mlo15-4. We also link the FER/MLO module to ROS accumulation by showing that faNTA is sufficient to restore ROS levels in fer-4 root hairs and that ROS levels are decreased in mlo15-4 root hairs. C_LIO_LIWe propose that MLOs act downstream of FER to mediate Ca2+ influx and promote ROS production in order to regulate root hair tip-growth. C_LI Plain Language SummaryRoot hairs are important for expanding the surface area of the root for optimal absorption of water and minerals. A FERONIA/MLO signal module promotes tip growth in these specialized cells by regulating calcium and reactive oxygen species accumulation. Understanding tip growth mechanisms may help optimize root responses to environmental challenges.

plant biology↗