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Live-Cell Monitoring of Piecemeal Chloroplast Autophagy.

Bio-protocol · 5 Nov 2025 · 10.21769/bioprotoc.5482

Abstract

When plants undergo senescence or experience carbon starvation, leaf cells degrade proteins in the chloroplasts on a massive scale via autophagy, an evolutionarily conserved process in which intracellular components are transported to the vacuole for degradation to facilitate nutrient recycling. Nonetheless, how portions of chloroplasts are released from the main chloroplast body and mobilized to the vacuole remains unclear. Here, we developed a method to observe the autophagic transport of chloroplast proteins in real time using confocal laser-scanning microscopy on transgenic plants expressing fluorescently labeled chloroplast components and autophagy-associated membranes. This protocol enabled us to track changes in chloroplast morphology during chloroplast-targeted autophagy on a timescale of seconds, and it could be adapted to monitor the dynamics of other intracellular processes in plant leaves. Key features • This protocol enables real-time monitoring of chloroplast morphology in living Arabidopsis leaves. • The method is based on confocal microscopy of transgenic plants that express fluorescent protein markers for specific organelles or suborganellar compartments. • We used this protocol to monitor the piecemeal autophagic degradation of chloroplasts, but it could also be extended to other intracellular phenomena.

Plant phenotyping relevance

生きた植物葉の葉緑体形態を共焦点画像でリアルタイム取得・追跡するプロトコルが中心であり、植物の形態状態を測定するフェノタイピング手法に該当する。

abstractHere, we developed a method to observe the autophagic transport of chloroplast proteins in real time using confocal laser-scanning microscopy on transgenic plants expressing fluorescently labeled chloroplast components and autophagy-associated membranes.
abstractThis protocol enabled us to track changes in chloroplast morphology during chloroplast-targeted autophagy on a timescale of seconds

Code and data availability

This is a Bio-protocol methods article describing live-cell confocal imaging of chloroplast autophagy in Arabidopsis. It references commercial software (ZEN, ZEN lite, Imaris) and transgenic plant lines, but contains no public phenotype/trait datasets, no deposited images or sensor data, and no author analysis code, or

No evidence-backed public reproduction asset is currently recorded.

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