<p>Plant cells are highly compartmentalised. Photosynthesis takes place in plastids, oxidative phosphorylation occurs in mitochondria, and vacuoles can serve as storage compartments. While many functions of compartments are described in detail at a molecular level, the connections between subcellular metabolic pathways frequently remain elusive. Thus, combining protein and metabolite analysis with fractionation techniques can enhance our understanding of plant metabolism at a subcellular level.</p>

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Stoffwechselregulation auf subzellulärer Ebene

  • Thomas Nägele

摘要

Plant cells are highly compartmentalised. Photosynthesis takes place in plastids, oxidative phosphorylation occurs in mitochondria, and vacuoles can serve as storage compartments. While many functions of compartments are described in detail at a molecular level, the connections between subcellular metabolic pathways frequently remain elusive. Thus, combining protein and metabolite analysis with fractionation techniques can enhance our understanding of plant metabolism at a subcellular level.