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Bienertia sinuspersici performs C4 photosynthesis without Kranz anatomy through subcellular compartmentalization of carbon fixation within individual cells. In this species, central compartment chloroplasts (C) and peripheral chloroplasts (P) collaborate with cytosolic and mitochondrial components i...
ORGANISM(S): Bienertia sinuspersici Arabidopsis thaliana (Mouse-ear cress) 
2015-03-17 | PXD001910 | Pride
Single nuclei sequencing reveals C4 photosynthesis is based on rewiring of ancestral cell identity networks
Maize and rice are the two most economically important grass crops and utilize distinct forms of photosynthesis to fix carbon: C4 and C3 respectively. Relative to C3 photosynthesis, C4 photosynthesis reduces photorespiration and affords higher water and nitrogen use efficiencies under hot arid condi...
ORGANISM(S): Zea mays 
In multicellular systems changes to the patterning of gene expression drive modifications in cell function and trait evolution. One striking example is found in more than sixty plant lineages where compartmentation of photosynthesis between cell types allowed evolution of the efficient C4 pathway fr...
ORGANISM(S): Oryza sativa Sorghum bicolor 
2023-12-05 | GSE248919 | GEO
Photosynthesis underpins the viability of most ecosystems, with C4 plants that exhibit ‘Kranz’ anatomy being the most efficient primary producers. Kranz anatomy is characterized by closely spaced veins that are encircled by two morphologically distinct photosynthetic cell types. Although Kranz a...
ORGANISM(S): Zea mays 
We analysed genome-wide histone H3 lysine 4 trimethylation and histone H3 lysine 9 acetylation, two modifications typically associated with active genes, in meristematic cells at the base and expanding cells in the maturing zone of the maize (Zea mays) leaf. These data were compared to transcript le...
ORGANISM(S): Zea mays 
Investigating the cis-Regulatory Basis of C3 and C4 Photosynthesis in Grasses at Single-Cell Resolution
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