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biotechnology |
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biotechnology![]() The genetic modification of a bacterium to produce insulin. The human gene for the production of insulin is collected from a donor chromosome and spliced into a vector plasmid (DNA found in bacteria but separate from the bacterial chromosomes). The plasmids and recipient bacteria are mixed together, during which process the bacteria absorb the plasmids. The plasmids replicate as the bacteria divide asexually (producing clones) and begin to produce insulin. Industrial use of living organisms. Examples of its uses include fermentation, genetic engineering (gene technology), and the manipulation of reproduction. The brewing and baking industries have long relied on the yeast micro-organism for fermentation purposes, while the dairy industry employs a range of bacteria and fungi to convert milk into cheeses and yoghurts. Enzymes, whether extracted from cells or produced artificially, are central to most biotechnological applications. Recent advances include genetic engineering, in which single-celled organisms with modified DNA are used to produce insulin and other drugs. There are many medical and industrial applications of the use of micro-organisms, such as drug production. One important area is the production of antibiotics such as penicillin. It is thought that biotechnology may be helpful in reducing world food shortages. Micro-organisms grow very quickly in suitable conditions and they often take substances that humans cannot eat and use them to produce foods that we can eat.
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Grewel now vice president of a biotechnical research company, begins with the background of the discoveries that led to the medical application of monoclonal antibodies. Hence it is used in biochemical and genetic research in academia and the biotechnical industry. and biotechnical industry, which includes pharmaceutical and medical supply manufacturing, health care-related wholesale and retail trade as well as the entire health care delivery system, grew by over eight percent between 2002 and 2008. |
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