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Genetic Engineering

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Genetic engineering is the biological technique developed for changing the genetic code permanently by manipulating the gene.The use of genetic engineering is very controversial.In the debate of genetic engineering, it is sometimes hard differentiating fact from fiction.This is because the debate has been confused by the influence of rigid absolutist views (both supportive of and opposed to genetical engineering) about the role of science in society combined with a general ignorance of science. This essay will evaluate the advantages and disadvantages of genetic engineering.

A major advantage of genetic engineering is the important role that it plays in sustainable agriculture. The world's population is growing and with that comes the demand for more food. The use of new varieties of crop plants produced by genetic engineering which can survive and give good yields in poor soils, dry conditions and without the need for expensive pesticides and fertilisers will be essential in preventing food shortages in areas where crop cultivation is difficult. It has been applied for example in the green revolution which Norman Borlaug initiated. This helped prevent famine in at risk countries such as Mexico, India and Parkistan by increasing their wheat production. The potential is also there in Africa for producing 'Roundup Ready' ( Round up is a pesticide) crops so that the gene for herbicide tolerance is already built into the crops. Furthermore, using conventional farming methods would mean destroying wildlife habitat to increase cropland to produce enough food for the growing population. GM crops produce such high yields that it would be unnecessary to cut down vast amounts of forests. Genetic engineering can also be used to fortify crops. For example, in 1992, the company Pioneer introduced a gene for Brazil nuts into soya beans. The intent was to make soya

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