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- W4387639573 abstract "Plants distribute many nutrients to chloroplasts during leaf development and maturation. When leaves senesce or experience sugar starvation, the autophagy machinery degrades chloroplast proteins to facilitate efficient nutrient reuse. Here, we report on the intracellular dynamics of an autophagy pathway responsible for piecemeal degradation of chloroplast components. Through live-cell monitoring of chloroplast morphology, we observed the formation of chloroplast budding structures in sugar-starved leaves. The buds were then released and incorporated into the vacuolar lumen as an autophagic cargo termed a Rubisco-containing body. These budding structures did not accumulate in mutants of core autophagy machinery, suggesting that autophagosome creation is required for forming chloroplast protrusions. Simultaneous tracking of chloroplast morphology and autophagosome development revealed that the isolation membranes of autophagosomes tightly interact with part of the chloroplast surface before forming chloroplast buds. Chloroplasts then protrude at the site associated with the isolation membranes, which divide synchronously with autophagosome maturation. This autophagy-related division does not require DYNAMIN-RELATED PROTEIN 5B (DRP5B), which constitutes the division ring for chloroplast proliferation in growing leaves. An unidentified division machinery may thus fragment chloroplasts for degradation in coordination with the development of the chloroplast-associated isolation membrane." @default.
- W4387639573 created "2023-10-15" @default.
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- W4387639573 date "2023-10-14" @default.
- W4387639573 modified "2023-10-15" @default.
- W4387639573 title "Autophagosome development and chloroplast segmentation occur synchronously for piecemeal degradation of chloroplasts" @default.
- W4387639573 doi "https://doi.org/10.1101/2023.10.11.561947" @default.
- W4387639573 hasPublicationYear "2023" @default.
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