International audienceAutophagy is an intracellular degradation mechanism critical for plant acclimation to environmental stresses. Central to autophagy is the formation of specialized vesicles, the autophagosomes, which target and deliver cargo to the lytic vacuole. How autophagosomes form in plant cells remains poorly understood. Here, we uncover the importance of the lipid phosphatidylinositol-4-phosphate in autophagy using pharmacological and genetical approaches. Combining biochemical and live-microscopy analyses, we show that PI4K activity is required for early stages of autophagosome formation. Further, our results show that the plasma membrane-localized PI4Kα1 is involved in autophagy and that a substantial portion of autophagy stru...
Plant autophagy is a crucial evolutionary conserved process for recycling cytoplasmic material under...
Phosphatidylinositol 3-phosphate (PI3P) is an essential membrane signature for both autophagy and en...
Autophagosome formation is stimulated by VPS34-dependent PI(3)P formation and by alternative VPS34-i...
International audienceAutophagy is an intracellular degradation mechanism critical for plant acclima...
International audienceAutophagy is an intracellular degradation mechanism critical for plant acclima...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
Phosphoinositides are low-abundant lipids that participate in the acquisition of membrane identity t...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
Plant autophagy is a crucial evolutionary conserved process for recycling cytoplasmic material under...
Phosphatidylinositol 3-phosphate (PI3P) is an essential membrane signature for both autophagy and en...
Autophagosome formation is stimulated by VPS34-dependent PI(3)P formation and by alternative VPS34-i...
International audienceAutophagy is an intracellular degradation mechanism critical for plant acclima...
International audienceAutophagy is an intracellular degradation mechanism critical for plant acclima...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
Phosphoinositides are low-abundant lipids that participate in the acquisition of membrane identity t...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
International audiencePhosphoinositides are low-abundant lipids that participate in the acquisition ...
Plant autophagy is a crucial evolutionary conserved process for recycling cytoplasmic material under...
Phosphatidylinositol 3-phosphate (PI3P) is an essential membrane signature for both autophagy and en...
Autophagosome formation is stimulated by VPS34-dependent PI(3)P formation and by alternative VPS34-i...