Fructosyltransferase
Product Name:Fructosyltransferase
Color:Colorless or pale yellow liquid
CAS NO.:/
MOQ:1kg
Packaging:Bag or Drum
Package Size:1kg/bag
Shelf life:24 Months
Sample:Free sample available
Storage:Store in cool & dry place not freeze, keep away from strong light and heat
Color:Colorless or pale yellow liquid
CAS NO.:/
MOQ:1kg
Packaging:Bag or Drum
Package Size:1kg/bag
Shelf life:24 Months
Sample:Free sample available
Storage:Store in cool & dry place not freeze, keep away from strong light and heat
AP612
Quantity


The main functions of Fructosyltransferase include:
Catalytic reaction: By transferring fructose molecules, fructose polymers (such as inulin and fructans) are synthesized, which serve as stored sugars in plants.
Regulating the structure of sugar: In plants, Fructosyltransferase helps regulate the structure and storage form of sugar, thereby influencing the growth and development of plants.
Catalytic reaction: By transferring fructose molecules, fructose polymers (such as inulin and fructans) are synthesized, which serve as stored sugars in plants.
Regulating the structure of sugar: In plants, Fructosyltransferase helps regulate the structure and storage form of sugar, thereby influencing the growth and development of plants.

Food industry: is used to produce low-calorie sweeteners (such as glycans) to improve the taste and texture of food.
Nutritional supplements: In functional foods and nutritional supplements, Fructosyltransferase can be used to synthesize prebiotics and promote intestinal health.
Biotechnology: In bioengineering, Fructosyltransferase can be used to synthesize specific sugar compounds as a carrier or excipient for drugs.
In agriculture, in the regulation of plant growth and soil improvement, fructose polymers synthesized from Fructosyltransferase can be utilized to enhance the soil's water retention capacity and the stress resistance of plants.
Nutritional supplements: In functional foods and nutritional supplements, Fructosyltransferase can be used to synthesize prebiotics and promote intestinal health.
Biotechnology: In bioengineering, Fructosyltransferase can be used to synthesize specific sugar compounds as a carrier or excipient for drugs.
In agriculture, in the regulation of plant growth and soil improvement, fructose polymers synthesized from Fructosyltransferase can be utilized to enhance the soil's water retention capacity and the stress resistance of plants.



