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GNA5010 · Advanced genetics and biotechnology

Official Handbook

2026 Handbook6 credit pointsLevel 5School of Biological Sciences

Last checked: 23 Aug 2026 UTC

Overview

This unit will explore the latest approaches and techniques for the genetic manipulation of organisms and their applications in contemporary biotechnology. You will gain hands on experience in advanced molecular genetic techniques used to study and manipulate gene function and for generating a range of different transgenic organisms, including microbes, plants and animals. The application of these techniques in biotechnology will be demonstrated using a range of examples such as: bio-remediation, bio-prospecting, crop modification, disease modelling, gene drives, phage therapy, nanotechnology and assisted reproduction. You will also gain appreciation of relevant ethical and regulatory considerations and of impacts of genetic biotechnology on society.

Areas of study: Genetics Genomics

Offerings

CampusTeaching periodMode
ClaytonSecond semesterTeaching activities are on-campus (ON-CAMPUS)
Suzhou (SEU)Term 3Teaching activities are on-campus (ON-CAMPUS)

Assessment

The Handbook does not list a final examination among the assessment items. That is not a guarantee there is none.

#AssessmentTypeWeightHurdle
1Project proposalProject30%
2Journal clubPerformance10%
3Practical reportsDemonstration30%
4In-semester testsQuiz / Test30%Threshold

Assessment details may change. Please refer to the assessment information in Moodle closer to the start of the teaching period.

Requisites

The Handbook lists no prerequisite, corequisite or prohibition for this unit.

Learning outcomes

  1. Demonstrate and apply knowledge of contemporary areas of molecular genetics and biotechnology, and the challenges faced;
  2. Illustrate and explain how transgenic organisms are produced via genome manipulation across a range of species;
  3. Source, synthesise and critically analyse literature to form the basis of a project;
  4. Independently design and implement experimental approaches to solve a research problem in genetics and biotechnology;
  5. Demonstrate proficiency in molecular genetics laboratory techniques, in problem-solving and experimental design, and in data collection, analysis, interpretation and presentation;
  6. Convey to a non-specialist audience the relevance and value of genetics and biotechnology to human society.

Workload

• One 2-hour seminar; • One 3-hour laboratory/workshop and • 7 hours of independent study per week

ActivityDuration
Workshops18 hours
Seminars20 hours
Practical activities18 hours
Assessments2 hours

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