Abstract
1. [(14)C(2)]Glyoxylate was rapidly metabolized by carrot storage tissues, pea leaves, pea cotyledons, sunflower cotyledons, corn coleoptiles, corn roots and pea roots. In many tissues over 70% of the supplied [(14)C(2)]glyoxylate was utilized during the 6hr. experimental periods. 2. In all tissues, the chief products of [(14)C(2)]-glyoxylate metabolism were carbon dioxide, glycine and serine. In several of the tissues, there was also a considerable incorporation of the label into the organic acids, particularly into glycollate. 3. Degradations of the labelled serine produced during [(14)C(2)]glyoxylate metabolism showed that glyoxylate carbon was incorporated into all three positions of the serine molecule. 4. The results are interpreted as indicating that glyoxylate is utilized by the tissues by pathways involving transamination, transmethylation, reduction and oxidative decarboxylation of the supplied glyoxylate.
Keywords
ACETATES
ACIDS
AMINO ACID METABOLISM
CARBOHYDRATES
CARBON DIOXIDE
EXPERIMENTAL LAB STUDY
GLYCINE
LIPIDS
METABOLISM
PLANTS
EDIBLE
SERINE
MeSH Terms
Acetates
Acids
Amino Acids/metabolism
Carbohydrates
Carbon Dioxide
Fabaceae
Glycine
Glycolates
Glyoxylates
Lipids
Metabolism
Plants
Plants, Edible
Research
Serine
Chemicals
Acetates
Acids
Amino Acids
Carbohydrates
Glycolates
Glyoxylates
Lipids
glycolic acid
Carbon Dioxide
Serine
glyoxylic acid
Glycine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
SINHA S K
COSSINS E A
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