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Pervasive translational control of photosynthesis genes during photomorphogenesis is acquired by C4 genes
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创建时间:
2026-01-20
相关数据集
Whole-genome transcriptome profiling of dark-grown cryptochrome 2 over-expressing indica rice seedlings. Whole-genome transcriptome profiling of dark-grown cryptochrome 2 over-expressing indica rice seedlings
We found that indica rice cryptochrome 2 overexpression (OsiCRY2) seedlings exhibited partial photomorphogenesis in dark. Therefore, we decided to use microarray technique to determine the genes whose
NIAID Data Ecosystem20
Gene expression ATLAS of Oryza sativa sp japonica (cv. Nipponbare) during photomorphogenesis (transition from dark to light). Gene expression ATLAS of Oryza sativa sp japonica (cv. Nipponbare) during photomorphogenesis (transition from dark to light)
Oryza sativa Japonica (rice) is the staple food for all over world population. At the time of germination, the exposure to light may play an important role in the early development of the rice seedlin
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HOT3/eIF5B1 confers Kozak motif-dependent translational control of photosynthesis-associated nuclear genes for chloroplast biogenesis. HOT3/eIF5B1 confers Kozak motif-dependent translational control of photosynthesis-associated nuclear genes for chloroplast biogenesis
Photosynthesis requires chloroplasts, where most proteins are nucleus-encoded and produced via cytoplasmic translation. The translation initiation factor eIF5B gates the transition from initiation (I)
NIAID Data Ecosystem10
A dynamic transcriptome underling the light inhibition of mesocotyl elongation in rice seedling
The mesocotyl, a structure separating the grass seedling cotyledon from the coleoptile, exerts a major influence over the seedling's ability to emerge. Its elongation is inhibited by light. A transcri
NIAID Data Ecosystem20
A degradome sequencing of rice mesocotyl from darkness to light exposure
Light exposure quickly inhibits the elongation of mesocotyl of rice seedling. The two corresponding periods from darkness to loght (D_5d, L_1h) were selected to perform degradome sequencing. Overall d
NIAID Data Ecosystem10



