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- W83854088 abstract "Protochlorophyllide oxidoreductase (POR) that has no sequence similarity to any of the subunits of the light-independent enzyme, catalyzes the photoreduction of Pchlide to Chlide in all oxygenic photosynthetic organisms including cyanobacteria, algae, liverworts, mosses, ferns, gymnosperms, and angiosperms. Among higher plants angiosperms absolutely require light for Chl biosynthesis and stable accumulation of both nuclear- and plastid-encoded Chl-binding proteins in chloroplasts. In addition to the light-dependent reduction of Pchlide to Chlide, Chl biosynthesis in higher plants is also controlled at the level of δ-aminolevulinic acid (ALA) synthesis. When seedlings of higher plants are grown in darkness, plastid development is arrested at an early stage, termed the etioplast. On illumination the first light-dependent step toward the formation of a chloroplast is the photoreduction of Pchlide to Chlide.POR is an enzyme that is not only necessary for the light-dependent synthesis of chlorophyll but at the same time is required for the protection of the plastid compartment against photooxidative damage during the initial steps of light-induced chloroplast development. A simple screening procedure was used to identify mutants with an impaired protection against photooxidation." @default.
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- W83854088 date "1998-01-01" @default.
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- W83854088 title "[16] Molecular and genetic analysis of light-dependent chlorophyll biosynthesis" @default.
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- W83854088 doi "https://doi.org/10.1016/s0076-6879(98)97018-5" @default.
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