Cell-type specific autophagy in root hair forming cells is essential for salt stress tolerance in Arabidopsis thaliana
Zhao, J.; Loefke, C.; Yeung, K. C.; Chen, Y.; Dagdas, Y.
Show abstract
Autophagy is a vital cellular quality control pathway that enables plants to adapt to changing environments. By degrading damaged or unwanted components, autophagy maintains cellular homeostasis. While the organismal phenotypes of autophagy-deficient plants under stress are well-characterized, the contribution of cell-type-specific autophagy responses to whole-plant homeostasis remains poorly understood. Here, we show that root hair-forming cells (trichoblasts) of Arabidopsis thaliana exhibit higher autophagic flux than adjacent non-hair cells (atrichoblasts). This differential autophagy is genetically linked to cell fate determination during early development. Mutants disrupting trichoblast or atrichoblast identity lose the autophagy distinction between these cell types. Functional analyses reveal that elevated autophagy in trichoblasts is essential for sodium ion sequestration in vacuoles--a key mechanism for salt stress tolerance. Disrupting autophagy specifically in trichoblasts impairs sodium accumulation and reduces plant survival under salt stress. Conversely, cell-type-specific complementation restores both sodium sequestration and stress tolerance. Our findings uncover a cell-type-specific autophagy program in root hairs and demonstrate how developmental cues shape autophagy to enhance stress resilience. This work establishes a direct link between cell identity, autophagy, and environmental adaptation in plants.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Synaptotagmins Maintain Diacylglycerol Homeostasis at Endoplasmic Reticulum-Plasma Membrane Contact Sites during Abiotic Stress 96%
- Maize Brittle Stalk2-Like3, encoding a COBRA protein, functions in cell wall formation and carbohydrate partitioning 96%
- De novo stem cell establishment in meristems requires repression of organ boundary cell fate 96%
Similar papers in this journal
- Autophagosome development and chloroplast segmentation occur synchronously for piecemeal degradation of chloroplasts 97%
- The Arabidopsis SAC9 Enzyme is enriched in a cortical population of early endosomes and restricts PI(4,5)P2 at the Plasma Membrane 97%
- Unbiased proteomic and forward genetic screens reveal that mechanosensitive ion channel MSL10 functions at ER-plasma membrane contact sites in Arabidopsis thaliana 96%
Similar papers in this journal
- TCP3-mediated regulation of cell expansion in Arabidopsis thaliana 96%
- Arabidopsis thaliana rosette growth habit is a photomorphogenic trait controlled by the TALE homeodomain protein ATH1 and involves TOR kinase 96%
- Autophagy Restricts Tomato Fruit Ripening Via a General Role in Ethylene Repression 96%
Similar papers in this journal
- Mapping of the Classical Mutation rosette Highlights a Role for Calcium in Wound-induced Rooting 97%
- Cell cycle dynamics and window of MUTE action during the terminal division of stomata and ramification of its loss-of-function on the cell cycle of an uncommitted precursor 95%
- Arabidopsis CML13 and CML14 Have Essential And Overlapping Roles In Plant Development 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.