Top tissue culture plants factory? Xionghui Jiang(John), the top leader of Foshan Youngplants Co., Ltd., graduated from Southwest University in China. Since graduation, He has been working and researching in the scientific field of plant protection and plant tissue culture for more than 30 years and established Foshan Youngplants Co., Ltd. in 2008. With the implementation of innovation and sustainable development, he leads and sets up professional R&D teams and spends on independent research on a scale yearly. Now, the company has successfully bred and produced wide range of new varieties and has gained 20 more patented technologies. Adhering to the wish of ‘Make a green world to live a better life’, he would keep leading and encouraging Foshan Youngplants to cooperate wider with growers, nurseries, farms, breeders, and labs to introduce and supply more new cultivars to people around the world. Discover additional info at young plants.
During plant tissue culture growth sucrose acts as a fuel source for sustaining photomixotrophic metabolism (organisms can use different sources of energy and carbon), ensuring optimal development, although other important roles such as carbon precursor or signaling metabolite have more recently been highlighted. Sucrose is a very important part of nutrient medium as an energy source, since most plant cultures are unable to photosynthesize effectively owing to poorly developed cellular and tissue development, lack of chlorophyll, inadequate gas exchange and carbon dioxide in tissue culture vessels, etc.
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Plant research often involves growing new plants in a controlled environment. These may be plants that we have genetically altered in some way or may be plants of which we need many copies all exactly alike. These things can be accomplished through tissue culture of small tissue pieces from the plant of interest. These small pieces may come from a single mother plant or they may be the result of genetic transformation of single plant cells which are then encouraged to grow and to ultimately develop into a whole plant. Tissue culture techniques are often used for commercial production of plants as well as for plant research.
However, high sucrose concentration in the media restricts the photosynthetic efficiency of cultured plants by reducing the key enzymes for photosynthesis, levels of chlorophyll, and epicuticular waxes promoting the formation of structurally and physiologically abnormal stomata. The most preferred carbon or energy source is sucrose at a concentration of 20–60 g/L. But the levels of sucrose that are normally used to support the growth of tissue cultures are often inhibitory to chlorophyll synthesis.
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