Proteomics analysis reveals a dynamic diurnal pattern of photosynthesis-related pathways in maize leaves.
basic_science · Level V
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- Record sourced from PubMed, PMID 28732011.
- Also identified by DOI 10.1371/journal.pone.0180670 and PMC identifier 5521766.
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Abstract
Plant leaves exhibit differentiated patterns of photosynthesis rates under diurnal light regulation. Maize leaves show a single-peak pattern without photoinhibition at midday when the light intensity is maximized. This mechanism contributes to highly efficient photosynthesis in maize leaves. To understand the molecular basis of this process, an isobaric tag for relative and absolute quantitation (iTRAQ)-based proteomics analysis was performed to reveal the dynamic pattern of proteins related to photosynthetic reactions. Steady, single-peak and double-peak protein expression patterns were discovered in maize leaves, and antenna proteins in these leaves displayed a steady pattern. In contrast, the photosystem, carbon fixation and citrate pathways were highly controlled by diurnal light intensity. Most enzymes in the limiting steps of these pathways were major sites of regulation. Thus, maize leaves optimize photosynthesis and carbon fixation outside of light harvesting to adapt to the changes in diurnal light intensity at the protein level.
Medical subject headings
- Circadian Rhythm
- Photosynthesis
- Plant Leaves
- Plant Proteins
- Proteome
- Zea mays