6-Benzylaminopurine CAS 1214-39-7
6-benzylaminopurine CAS 1214-39-76-benzylaminopurine CAS 1214-39-7

6-Benzylaminopurine CAS 1214-39-7

6-benzylaminopurine CAS 1214-39-7, 6-benzylaminopurine, CAS 1214-39-7

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In the field of plant growth regulators, 6-benzylaminopine (6-BA) plays a crucial role. Its main function lies in significantly promoting the formation of buds. During the growth process of plants, this characteristic is like injecting powerful impetus into the germination and growth of new buds, enabling plants to grow and develop in the expected direction.

1214-39-7

C12H11N5

225.25

214-927-5

 

6-Benzylaminopurine CAS 1214-39-7 Infortmation


Chemical Name

6-Benzylaminopurine

Other Name

6-Benzylamino purine; 6-BA; Benzyl adenine

CAS

1214-39-7

EINECS

214-927-5

Type

Food additives; Feed additives; Pharmaceutical raw materials; Organic raw materials; Plant Extracts

Molecular Formula

C12H11N5

Molecular Weight

225.25



6-Benzylaminopurine CAS 1214-39-7 Properties


Melting point 

230-233 °C

Boiling point 

145 °C(lit.)

density 

0.899 g/mL at 20 °C

vapor density 

>1 (vs air)

vapor pressure 

3.3 mm Hg ( 20 °C)

refractive index 

n20/D 1.418(lit.)

Fp 

103 °F

storage temp. 

2-8°C

solubility 

H2O: soluble

pka

9.36±0.20(Predicted)

form 

Liquid

color 

White to very faint yellow

Odor

Characteristic acrylic.

Water Solubility 

Soluble in water, methanol and acetone. Slightly soluble in ethyl acetate and dichloromethane and toluene. Insoluble in n-hexane.



What is 6-Benzylaminopurine CAS 1214-39-7?


In the field of plant growth regulators, 6-benzylaminopine (6-BA) plays a crucial role. Its main function lies in significantly promoting the formation of buds. During the growth process of plants, this characteristic is like injecting powerful impetus into the germination and growth of new buds, enabling plants to grow and develop in the expected direction. Moreover, under suitable conditions, it can also prompt plants to produce callus. This provides an important foundation for research and applications such as tissue culture and regeneration of plants.

In the field of agricultural economy, 6-benzyladenine (6-BA) has extensive and practical value. In terms of tea cultivation, it can precisely act on the growth process of tea. By regulating the internal physiological mechanisms of plants, it optimizes the quality of tea, enhancing its taste, aroma, and nutritional components. This, in turn, improves the quality and profits of tea in the market, bringing greater economic benefits to tea farmers. Similarly, in cigarette production, it can also have a positive impact on the growth and quality of tobacco leaves, which helps to improve the overall quality of cigarettes and meet consumers' demands for high-quality cigarettes.

In daily life, 6-benzyladenine (6-BA) also plays an indispensable role. It can effectively preserve vegetables and fruits. By inhibiting their aging and spoilage processes, it can extend their freshness period, reduce losses caused by spoilage and deterioration, and ensure that people can enjoy fresh and healthy fruits and vegetables for a long time. In terms of bean sprout cultivation, it can be used to grow rootless bean sprouts. It not only promotes the growth of bean sprouts, making them thicker and more tender, but also significantly improves the quality of fruits and leaves, providing people with higher-quality ingredients.

From the perspective of industrial application, 6-benzyladenine (6-BA) is a highly promising monomer substance, widely used in the manufacturing of adhesives, synthetic resins, special rubbers and plastics, and other industries. During the production process of adhesives, it can interact with other components to enhance the bonding performance and stability of the adhesives. In the synthesis of synthetic resins, it can serve as an important reactive monomer, endowing the resins with specific properties and characteristics. For the production of special rubber and plastics, 6-benzyladenine (6-BA) can also improve the quality and performance of products by participating in chemical reactions, meeting the demands of different fields for high-performance materials.

As a broad-spectrum plant growth regulator, 6-benzylaminopine (6-BA) has multiple important physiological functions. It can promote the development of plant cells, just as it provides sufficient nutrients and a suitable environment for the growth of plant cells, enabling the cells to divide and grow healthily, thereby promoting the vigorous growth of the entire plant. At the same time, it can effectively inhibit the degradation of chlorophyll in plants, maintain the green color and photosynthetic capacity of leaves, extend the functional period of leaves, and provide continuous energy support for the growth and development of plants. In addition, 6-benzyladenine (6-BA) can also increase the content of amino acid web, enhance the metabolic capacity and stress resistance of plants, and enable plants to better adapt to various environmental conditions. More importantly, it can delay the aging of leaves, allowing plants to maintain vitality and vigor for a longer period of time, and further enhance the photosynthetic efficiency and yield of plants.

In the practice of bean sprout cultivation, the application of 6-benzylaminopine (6-BA) is very common and has a remarkable effect. Whether it is the cultivation of mung bean sprouts or soybean sprouts, it can play an important role. By using 6-benzylaminopine (6-BA) reasonably, the growth rate and quality of bean sprouts can be precisely controlled, making their appearance more beautiful, taste more crisp and rich in nutrition.

The range of action of 6-benzylaminopine (6-BA) is very wide and it has a significant growth-promoting effect on a variety of fruits and vegetables. In terms of fruits, whether it is common ones like apples, grapes, citrus fruits, peaches and cherries, or tropical fruits such as bananas, pineapples and mangoes, 6-benzyladenine (6-BA) can play its unique role. It can promote the flower bud differentiation of these fruits, increase the fruit setting rate, make the fruits fuller, more vivid in color and sweeter in taste, thereby enhancing the quality and market competitiveness of the fruits. In the field of vegetables, various vegetables such as mustard, spinach, broccoli and celery can also achieve better growth and development under the action of 6-benzylaminopine (6-BA). It can promote the root development of vegetables, enhance the plants' resistance to diseases and pests, increase the yield and quality of vegetables, and provide people with a more diverse range of high-quality vegetables.

In conclusion, 6-benzylaminopine (6-BA), as an important plant growth regulator and industrial monomer, has significant functions and application value. It plays an irreplaceable and crucial role in agriculture, industry, and daily life. Moreover, with the continuous deepening of research and the development of technology, its application prospects will become even broader.



6-Benzylaminopurine CAS 1214-39-7 Uses


6-benzylaminopine, as a broad-spectrum plant growth regulator, plays a key role in multiple aspects during the growth and development of plants. It can significantly promote the growth of plant cells and provide internal dynamic support for the vigorous growth of plants. At the same time, it also has the important function of inhibiting the degradation of chlorophyll in plants, enabling the leaves of plants to remain green for a relatively long time, maintaining normal photosynthesis, and thus ensuring that the synthesis of photosynthetic products of plants is not affected. This is of crucial significance for the growth and development of plants.

In addition, 6-benzylaminopine can effectively increase the content of amino acids in plants. As important nutrients and metabolic intermediate products in plants, the increase in the content of amino acids helps plants synthesize more important substances such as proteins, thereby further enhancing the growth vitality and stress resistance of plants. Moreover, it also has the effect of delaying leaf aging, enabling plant leaves to maintain good physiological functions for a longer period of time, prolonging the functional period of leaves, and continuously contributing to the growth and photosynthesis of plants.

In agricultural production practice, 6-benzyladenopine has a wide range of applications, including its use for growing mung bean sprouts and bean sprouts. However, during the usage process, the dosage must be strictly controlled. The maximum usage is 0.01g/kg, and at the same time, it is necessary to ensure that the residual amount is less than 0.2mg/kg to guarantee the quality and safety of the bean sprouts for consumption.

From the perspective of plant physiology, 6-benzylaminopine can induce bud differentiation and promote the growth of lateral buds, which is of great significance for the branching and reproduction of plants. It can also promote cell division by regulating the cell cycle and the expression of related genes, enabling cells to divide and proliferate in an orderly manner, thereby increasing the biomass and growth rate of plants. In addition, it can reduce the decomposition of chlorophyll in plants, stabilize the content of chlorophyll, and thereby maintain the photosynthetic efficiency of plants. This enables plants to fully utilize light energy for material synthesis and energy conversion during their growth process, achieving better growth and development. This anti-aging and green retention effect enables plants to maintain strong vitality and adaptability when facing various environmental pressures.

It is worth mentioning that 6-benzylaminopine was the first cytokinin synthesized artificially. 6-BA (also known as 6-benzylaminopine) has multiple important physiological functions. It can inhibit the decomposition process of chlorophyll, nucleic acids and proteins in plant leaves. By regulating the activities of related enzymes and gene expressions, it protects these important biological macromolecules from excessive degradation, thereby maintaining the normal physiological functions and structural integrity of the leaves. Achieve the effect of maintaining greenery and preventing aging. Not only that, 6-BA can also transport amino acids, auxin, inorganic salts and other nutrients to the treatment site, providing sufficient nutrients and hormone regulation for the growth and development of plants, and promoting the growth and metabolic activities of plants.

For this reason, 6-benzyladenopine has been widely applied in the production processes of agriculture, fruit trees and horticultural crops, covering all stages from germination to harvest. For instance, in terms of application, cytokinin 6-BA can be used to keep vegetables fresh. By regulating the physiological metabolism of vegetables, it can delay their aging process, extend their shelf life, and reduce the loss of vegetables during storage and transportation. In tissue culture work, cytokinin is an indispensable additional hormone in the differentiation medium. It can induce cell differentiation and regeneration, providing technical support for the tissue culture and rapid reproduction of plants. In addition, cytokinin 6-BA can also be used in the production of fruit trees and vegetables. Its main function is to promote cell expansion, increase the number and volume of cells, thereby enhancing the fruit setting rate and ensuring the normal development and growth of fruits. Meanwhile, it can also delay leaf senescence, maintain the photosynthetic capacity of fruit and vegetable plants, and increase yield and quality. Cytokinin can promote cell division in stem tips, root tips, immature seeds, germinated seeds, growing fruits and other parts, providing a fundamental guarantee for the growth and development of plants, and playing an indispensable and important role in the growth and development process of plants.




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