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- W4280492414 endingPage "111312" @default.
- W4280492414 startingPage "111312" @default.
- W4280492414 abstract "The regulation of photosynthesis occurs at different levels including the control of nuclear and plastid genes transcription, RNA processing and translation, protein translocation, assemblies and their post translational modifications. Out of all these, post translational modification enables rapid response of plants towards changing environmental conditions. Among all post-translational modifications, reversible phosphorylation is known to play a crucial role in the regulation of light reaction of photosynthesis. Although, phosphorylation of PS II subunits has been extensively studied but not much attention is given to other photosynthetic complexes such as PS I, Cytochrome b6f complex and ATP synthase. Phosphorylation reaction is known to protect photosynthetic apparatus in challenging environment conditions such as high light, elevated temperature, high salinity and drought. Recent studies have explored the role of photosynthetic protein phosphorylation in conferring plant immunity against the rice blast disease. The evolution of phosphorylation of different subunits of photosynthetic proteins occurred along with the evolution of plant lineage for their better adaptation to the changing environment conditions. In this review, we summarize the progress made in the research field of phosphorylation of photosynthetic proteins and highlights the missing links that need immediate attention." @default.
- W4280492414 created "2022-05-22" @default.
- W4280492414 creator A5021670795 @default.
- W4280492414 creator A5033759687 @default.
- W4280492414 creator A5045907831 @default.
- W4280492414 date "2022-08-01" @default.
- W4280492414 modified "2023-10-13" @default.
- W4280492414 title "Regulation of photosynthetic light reaction proteins via reversible phosphorylation" @default.
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- W4280492414 doi "https://doi.org/10.1016/j.plantsci.2022.111312" @default.
- W4280492414 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35696912" @default.
- W4280492414 hasPublicationYear "2022" @default.
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