Subcell Biochem. ; doi: /_3. DGDG and Glycolipids in Plants and Algae. Kalisch B(1), D?rmann P(2), H?lzl G(1).

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In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. The genes for glycolipid synthesis encode precursor proteins imported into the photosynthetic organelles. In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. The genes for glycolipid synthesis encode precursor proteins imported into the photosynthetic organelles.

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However, the relative contribution of the endoplasmic reticulum- and plastid-derived lipid pathways for glycolipid synthesis varies between plants and algae. Photosynthetic organelles in plants and algae are characterized by the high abundance of glycolipids, including the galactolipids mono- and digalactosyldiacylglycerol MGDG, DGDG and the sulfolipid sulfoquinovosyldiacylglycerol SQDG. However, the relative contribution of the endoplasmic reticulum- and plastid-derived lipid pathways for glycolipid synthesis varies between plants and algae. Photosynthetic organelles in plants and algae are characterized by the high abundance of glycolipids, including the galactolipids mono- and digalactosyldiacylglycerol MGDG, DGDG and the sulfolipid sulfoquinovosyldiacylglycerol SQDG.

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The pathways and genes for galactolipid and sulfolipid synthesis are largely conserved between plants, Chlorophyta, Rhodophyta and algae with complex plastids derived from secondary or tertiary endosymbiosis. In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids.

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Algae often use betaine lipids as surrogate for phospholipids. In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. The genes for glycolipid synthesis encode precursor proteins imported into the photosynthetic organelles. However, the relative contribution of the endoplasmic reticulum- and plastid-derived lipid pathways for glycolipid synthesis varies between plants and algae.

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Glycolipids are crucial to maintain an optimal efficiency of photosynthesis. In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. Glycolipids are crucial to maintain an optimal efficiency of photosynthesis.

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Glucuronosyldiacylglycerol GlcADG is a further glycolipid that accumulates under phosphate deprived conditions. In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. Photosynthetic organelles in plants and algae are characterized by the high abundance of glycolipids, including the galactolipids mono- and digalactosyldiacylglycerol MGDG, DGDG and the sulfolipid sulfoquinovosyldiacylglycerol SQDG.

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In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids. Glucuronosyldiacylglycerol GlcADG is a further glycolipid that accumulates under phosphate deprived conditions. The pathways and genes for galactolipid and sulfolipid synthesis are largely conserved between plants, Chlorophyta, Rhodophyta and algae with complex plastids derived from secondary or tertiary endosymbiosis.

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Glucuronosyldiacylglycerol GlcADG is a further glycolipid that accumulates under phosphate deprived conditions. Algae often use betaine lipids as surrogate for phospholipids.

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5 Commentsto Dgdg

  1. Kajigami says:

    The genes for glycolipid synthesis encode precursor proteins imported into the photosynthetic organelles.

  2. Tugul says:

    Algae often use betaine lipids as surrogate for phospholipids. However, the relative contribution of the endoplasmic reticulum- and plastid-derived lipid pathways for glycolipid synthesis varies between plants and algae.

  3. Maukus says:

    The pathways and genes for galactolipid and sulfolipid synthesis are largely conserved between plants, Chlorophyta, Rhodophyta and algae with complex plastids derived from secondary or tertiary endosymbiosis. Photosynthetic organelles in plants and algae are characterized by the high abundance of glycolipids, including the galactolipids mono- and digalactosyldiacylglycerol MGDG, DGDG and the sulfolipid sulfoquinovosyldiacylglycerol SQDG.

  4. Sazragore says:

    Algae often use betaine lipids as surrogate for phospholipids.

  5. Voodoora says:

    In contrast to plants, a number of eukaryotic algae contain very long chain polyunsaturated fatty acids of 20 or more carbon atoms in their glycolipids.

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