Comparative proteomic study reveals the involvement of diurnal cycle in cell division, enlargement, and starch accumulation in developing endosperm of Oryza sativa.
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Summary
Diurnal input-regulated diverse cellular and metabolic processes in rice endosperm are demonstrated, and coordination among these processes is essential for development and starch accumulation with diurnal input.
- Type
- article
- Published
- 2012-01-01
- Cited by
- 26
- References
- 72
- Access
- Open access
- OpenAlex
- https://openalex.org/W22053951
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22003542
Keywords
Caking, Bituminous coal, Coal, Asphalt, Environmental science
References
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- New insights into the mechanism of chloroplast protein import and its integration with protein quality control, organelle biogenesis and development
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- Rice proteomics: A model system for crop improvement and food security
- A genome scale metabolic network for rice and accompanying analysis of tryptophan, auxin and serotonin biosynthesis regulation under biotic stress
- Molecular dissection of complex agronomic traits of rice: a team effort by Chinese scientists in recent years
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- Separation of ovule proteins during female gametophyte cellularization of Pinus tabuliformis using 2D-DIGE.
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- Proteomics of Important Food Crops in the Asia Oceania Region: Current Status and Future Perspectives.
- Proteomic Dissection of Endosperm Starch Granule Associated Proteins Reveals a Network Coordinating Starch Biosynthesis and Amino Acid Metabolism and Glycolysis in Rice Endosperms
- Gene Expression and Physiological Analysis to Study Differences Between Oryza Sativa Cultivars Susceptible and Resistant to Chalky Grain Formation Subjected to High Nighttime Temperatures
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- The integration of chloroplast protein targeting with plant developmental and stress responses
- Diurnal changes in concerted plant protein phosphorylation and acetylation in Arabidopsis organs and seedlings.
- A rapid and universal method for isolating starch granules in plant tissues.
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