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- W1966100661 abstract "The biosynthesis of organic selenium compounds has been investigated in Stanleya pinnata (Cruciferae), Oonopsis condensata (Compositae) and six species of Astragalus (Leguminosae), plants that are known to accumulate selenium. Excised leaves were supplied with 75SeO42−, 75SeO32−, or 35SO42−. Analysis of the trichloroacetic acid soluble components revealed that selenate was less efficiently utilized than was selenite. The major soluble organic selenium compound in all plants was Se-methylselenocysteine (CH3SeCH2CHNH2COOH). Stanleya pinnata also synthesized appreciable amounts of selenocystathionine (HOOCCHNH2CH2SeCH2CH2CHNH2COOH). Small amounts of a compound tentatively identified as Se-methylselenomethionine and of a selenium-containing peptide were found in several of the accumulators. Plants supplied with 35SO42− made approximately equal amounts of S-methylcysteine and glutathione. The absence of selenoglutathione in several of the plants that biosynthesized glutathione was noted, suggesting that sulfur and selenium may not entirely follow the same pathway in these particular plants." @default.
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- W1966100661 date "1965-04-01" @default.
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- W1966100661 title "Seleno-amino acids in selenium-accumulating plants" @default.
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- W1966100661 doi "https://doi.org/10.1016/0304-4165(65)90428-9" @default.
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