Genetic engineeringSpec 4.6.2.4
In short
Genetic engineering is a process which involves modifying the genome of an organism by introducing a gene from another organism to give a desired characteristic. Bacteria have been engineered to produce human insulin to treat diabetes. GM crops can be resistant to insects, herbicides or disease and generally show increased yields, but some people have concerns about their effects.
- Genetic engineering
- A process which involves modifying the genome of an organism by introducing a gene from another organism to give a desired characteristic.
In genetic engineering, genes from the chromosomes of humans and other organisms can be 'cut out' and transferred to cells of other organisms.
- Plant crops have been genetically engineered to be resistant to diseases or to produce bigger, better fruits.
- Bacterial cells have been genetically engineered to produce useful substances such as human insulin to treat diabetes.
Crops that have had their genes modified in this way are called genetically modified (GM) crops. GM crops include ones that are resistant to insect attack or to herbicides. GM crops generally show increased yields.
Benefits, risks and objections
| Potential benefits | Potential risks and objections | |
|---|---|---|
| Agriculture | Increased yields; resistance to insects, herbicides or disease; bigger, better fruits | Effects on populations of wild flowers and insects; some people feel the effects of eating GM crops on human health have not been fully explored |
| Medicine | Bacteria can make useful substances such as human insulin; research is exploring genetic modification to overcome some inherited disorders | Some people object to altering the genes of organisms, especially humans; long-term effects may not be known |
Some people have objections to genetic engineering, even though it has huge potential benefits.
Higher tier (what this means)
Higher tier: only on the Higher tier papers. Foundation students can skip it. What the labels meanThe main steps in genetic engineering
Higher tier (what this means)
Higher tier: only on the Higher tier papers. Foundation students can skip it. What the labels mean- Enzymes are used to isolate the required gene.
- The gene is inserted into a vector, usually a bacterial plasmid or a virus.
- The vector is used to insert the gene into the required cells.
- Genes are transferred to the cells of animals, plants or microorganisms at an early stage in their development, so that they develop with the desired characteristics.
Higher tier (what this means)
Higher tier: only on the Higher tier papers. Foundation students can skip it. What the labels meanUse the key words in order: enzymes isolate the gene, the gene goes into a vector (plasmid or virus), the vector puts it into the cells, at an early stage of development.
Higher tier (what this means)
Higher tier: only on the Higher tier papers. Foundation students can skip it. What the labels meanWritten and checked against the AQA GCSE Biology (8461) specification · Updated October 2026