L-Galactose-1,4-Lactone Dehydrogenase(Gal LDH) Activity Assay Kit

enzyme labeling method

  • Product Code: 111930
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Density: Storage Condition: 2-8℃
Product Description: The L-Galactose-1,4-Lactone Dehydrogenase (Gal LDH) Activity Assay Kit is primarily used in biochemical research to measure the enzymatic activity of Gal LDH, which plays a crucial role in the biosynthesis of ascorbic acid (vitamin C) in plants. This kit is essential for studying the metabolic pathways involved in vitamin C production, particularly in plant biology and agricultural research. It helps researchers understand the regulation and efficiency of ascorbic acid synthesis, which is vital for improving crop nutritional quality and stress resistance. Additionally, the kit is utilized in enzymology studies to investigate the kinetic properties and substrate specificity of Gal LDH, contributing to advancements in enzyme engineering and biotechnology. Its applications also extend to environmental studies, where it aids in assessing the impact of various stressors on plant metabolism and vitamin C biosynthesis.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
100.000 10-20 days $864.09
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L-Galactose-1,4-Lactone Dehydrogenase(Gal LDH) Activity Assay Kit
The L-Galactose-1,4-Lactone Dehydrogenase (Gal LDH) Activity Assay Kit is primarily used in biochemical research to measure the enzymatic activity of Gal LDH, which plays a crucial role in the biosynthesis of ascorbic acid (vitamin C) in plants. This kit is essential for studying the metabolic pathways involved in vitamin C production, particularly in plant biology and agricultural research. It helps researchers understand the regulation and efficiency of ascorbic acid synthesis, which is vital for improving crop nutritional quality and stress resistance. Additionally, the kit is utilized in enzymology studies to investigate the kinetic properties and substrate specificity of Gal LDH, contributing to advancements in enzyme engineering and biotechnology. Its applications also extend to environmental studies, where it aids in assessing the impact of various stressors on plant metabolism and vitamin C biosynthesis.
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