Some of the risks of genetically engineering plants are:
* The crops may not be safe to eat in the long term * GM crops may cross breed with wild plants and release there genes into the wild with unpredictable results. * There would be less variation in the plant's genes, and if there are any faulty genes in the plants, disease among the plants would be more common. Some risks of genetically engineering animals are:
* Animal products could be unsafe * The well being of the animal could be affected---e.g. if the animal was modified to produce more meat it would be fatter and wouldn't be able to move around * Something could go wrong and harm the animals. Some of the risks of genetically engineering humans are:
* Something could go wrong and harm the person * Some people may realize they can decide how they want their unborn baby to look and abuse the power of genetic engineering by creating 'designer babies'.
Short Answer is: our understanding of genetic engineering.
what made genetic engineering possible
an example of genetic engineering are like: Cloning IVF
Genetic Engineering is the study and application of genetics for a better life/future. Genetic engineering can be used to produce medicines & to improve food crops. Researchers are also using genetic engineering to try to cure human genetic disorders.
AnswerThe three types of genetic engineering are:Applied genetic engineering which includes cloning and transgenesis.Chemical genetic engineering which includes genes mapping, gene interaction, and genes codingAnalytical genetic engineering which includes computer mapping.
the risks and benefits of genetic engineering.
genetic engineering, chemical engineering, biology
Short Answer is: our understanding of genetic engineering.
what made genetic engineering possible
an example of genetic engineering are like: Cloning IVF
AnswerThe three types of genetic engineering are:Applied genetic engineering which includes cloning and transgenesis.Chemical genetic engineering which includes genes mapping, gene interaction, and genes codingAnalytical genetic engineering which includes computer mapping.
Genetic Engineering.
Genetic Engineering is the study and application of genetics for a better life/future. Genetic engineering can be used to produce medicines & to improve food crops. Researchers are also using genetic engineering to try to cure human genetic disorders.
Gene transfer, this type of process is mostly covered in the topic of genetic engineering
AnswerThe three types of genetic engineering are:Applied genetic engineering which includes cloning and transgenesis.Chemical genetic engineering which includes genes mapping, gene interaction, and genes codingAnalytical genetic engineering which includes computer mapping.
In genetic engineering, the bacterial cell takes up the plasmid
Insylin has been produced through genetic engineering.