L-Threonine

Origin
China
HS Code
2922.50.90

Basic Info

Physical State
Solid
Appearance / Color
White crystalline powder
Odor
Characteristic
Moisture Content (%)
<0.5%
pH
5.0-7.0
Synonyms & Trade Names
L-Threonine; (2S,3R)-2-amino-3-hydroxybutanoic acid
Total Plate Count (TPC)
<50,000 CFU/g
Yeast & Mould
<500 CFU/g
E. Coli
Negative/25g
Salmonella
Negative/25g
Shelf Life
24 months
Packaging Size
25 kg
Packaging Type
PP woven bag
Storage Conditions
Cool, dry place
Halal Certification
Available
Kosher Certification
Available
ISO / HACCP
Yes
Food Grade / Regulatory Status
Feed grade
Crude Protein (%, min)
~68%
Total Volatile Basic Nitrogen (TVN/TVBN, mg/100g)
Not applicable
Active Ingredient Assay (%)
98.5% min
Antioxidant Treatment
None
Species of Origin Declaration
N/A (fermentation)
EU Feed Additive Authorization No.
E921
Aflatoxin B1
Not applicable
Heavy Metals — Feed (As, Pb, Hg, Cd)
Compliant

Categories

Technical Document

Brief Overview
Threonine is an amino acid with the chemical formula of C4H9NO3 and is used in the biosynthesis of proteins. It contains an α-amino group, a carboxyl group, and a side chain containing a hydroxyl group, making it a polar, uncharged amino acid. Threonine is synthesized from aspartate in bacteria such as E. coli.
Manufacturing Process
Threonine is an important amino acid which is used in animal feeds and medicines. One process which is known for its production is a fermentation method. In this technique a mutant of the genus Brevibacterium having resistance to bacterial α-amino-β-hydroxyvaleric acid (hereinafter referred to as AHV) which is a threonine analog is cultured. This process employs as an AHV-resistant mutant, a strain having homoserine dehydrogenase (hereinafter referred to as HD) in which feedback inhibition due to threonine has been removed. The yield of threonin produced by this process is low, and therefore, it is not an economical method for the production of threonine which is added to animal feeds. Accordingly, in order to enhance the yield of threonine, a mutant which is frequently used is one which is a lysine-producing strain. However, in this case, lysine is frequently produced as a by-product, which adversely affects the yield of threonine. Further, the separation of lysine from the medium is a complicating factor. A need therefore continues to exist for a method of producing threonine in improved yields by a fermentation technique.