Gene Technology and Basics in Bioinformatics (5 ECTS)
Code: TX00FO52-3002
General information
- Enrollment
- 05.05.2025 - 31.05.2025
- Registration for the implementation has ended.
- Timing
- 18.08.2025 - 10.10.2025
- The implementation has not yet started.
- Number of ECTS credits allocated
- 5 ECTS
- Mode of delivery
- On-campus
- Unit
- (2019-2024) School of Smart and Clean Solutions
- Campus
- Leiritie 1
- Teaching languages
- Finnish
- English
- Seats
- 0 - 40
- Degree programmes
- Biotechnology and Chemical Engineering
- Teachers
- Hye Jung-Majanen
- Course
- TX00FO52
Implementation has 17 reservations. Total duration of reservations is 71 h 15 min.
Time | Topic | Location |
---|---|---|
Mon 18.08.2025 time 08:15 - 11:00 (2 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
|
Thu 21.08.2025 time 08:15 - 11:00 (2 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
|
Thu 28.08.2025 time 08:15 - 11:00 (2 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA238.2
Oppimistila
|
Mon 01.09.2025 time 09:00 - 16:00 (7 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Tue 02.09.2025 time 11:00 - 17:00 (6 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Wed 03.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Thu 04.09.2025 time 08:15 - 16:00 (7 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Mon 08.09.2025 time 08:15 - 17:00 (8 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Tue 09.09.2025 time 11:00 - 17:00 (6 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Wed 10.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Thu 11.09.2025 time 08:15 - 16:00 (7 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA247
Biokemian laboratorio
|
Mon 15.09.2025 time 12:00 - 15:00 (3 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMB330
IT-Tila
|
Fri 19.09.2025 time 13:00 - 15:00 (2 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMB330
IT-Tila
|
Mon 22.09.2025 time 12:00 - 15:00 (3 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMB330
IT-Tila
|
Fri 26.09.2025 time 13:00 - 15:00 (2 h 0 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMB349
IT-Tila
|
Tue 30.09.2025 time 12:00 - 15:00 (3 h 0 min) |
(EXAM) Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMA101
A-auditorio
|
Thu 02.10.2025 time 08:15 - 11:00 (2 h 45 min) |
Geenitekniikka ja bioinformatiikan perusteet TX00FO52-3002 |
MMC245
Oppimistila
|
Objective
The student understands the basics of gene technology in theory and practice. The Student understands the significance of DNA techniques in different applications, for example in cloning, human identification and GMO analyses. The student is familiar with the Finnish law and regulations and has considered ethical issues regarding gene technology. Student knows the fundamentals of bioinformatics.
Content
Cloning methods. DNA amplification and sequencing methods, basics in DNA bioinformatics, RNAi techniques and genome editing methods.
Gene technology ethics, Finnish law and regulations, risk analysis.
The student can isolate, purify and characterize nucleic acids in the laboratory.
Location and time
Leiritie 1, 1st period
Materials
Suominen Ilari, Pärssinen Raimo, Haajanen Kari & Pelkonen Jani.
Geenitekniikka and/or
Pärssinen, R., Suominen, I. & Haajanen, K. Biogeeni. Ammatillista biokemiaa ja geenitekniikkaa.
Räikkä, J. ja Rossi, K. Geenit ja etiikka.
Lecture materials
Teaching methods
Interactive lecture
Laboratory works
Small group tutorials
Bioinformatics tutorials
Employer connections
FIMM, NGS
VTT, Applications of genetic engineering
Exam schedules
To be announced at the beginning of the course.
Completion alternatives
Recognition of prior learning
Student workload
Lectures according to schedule and laboratory works.
Asignments.
Evaluation scale
0-5
Assessment criteria, satisfactory (1)
Student demonstrates a basic understanding of gene technology principles.
Student struggles to perform basic gene technology techniques and may require extensive guidance.
Student has difficulty in analyzing experimental data and may not effectively apply critical thinking to problem-solving in gene technology.
Student possesses a basic understanding of bioinformatics concepts.
Student struggles to use bioinformatics tools and software effectively.
Student has difficulty in integrating gene technology experiments with bioinformatics analysis.
Assessment criteria, good (3)
Student shows a good understanding of gene technology principles, including concepts such as gene cloning, PCR, and genetic engineering.
Student demonstrates good practical proficiency in gene technology techniques, such as DNA extraction, PCR, and gel electrophoresis, with limited supervision.
Student effectively analyzes experimental data, draws logical conclusions, and applies critical thinking skills to address scientific questions and challenges.
Student exhibits a good understanding of bioinformatics principles, including sequence analysis, databases, and computational tools. Student is proficient in the use of common bioinformatics tools and software for tasks such as sequence alignment, data retrieval, and data analysis.
Student effectively integrates gene technology experiments with bioinformatics analysis to draw meaningful conclusions from experimental data
Assessment criteria, excellent (5)
Student exhibits an excellent understanding of gene technology principles, with the ability to explain complex techniques and their applications.
Student displays excellent practical proficiency, independently executing advanced gene technology experiments and troubleshooting when necessary.
Student demonstrates outstanding analytical and critical thinking skills, offering innovative solutions and insights within the field of gene technology.
Student demonstrates an excellent understanding of bioinformatics, with the ability to explain advanced concepts and their relevance to genomics and molecular biology.
Student displays exceptional proficiency in utilizing a wide range of bioinformatics tools and software, including complex data mining and analysis.
Student has excellent skills in the combination of genetic engineering results and bioinformatic tools in the analysis.
Assessment criteria, approved/failed
Student demonstrates a basic understanding of gene technology principles.
Student struggles to perform basic gene technology techniques and may require extensive guidance.
Student has difficulty in analyzing experimental data and may not effectively apply critical thinking to problem-solving in gene technology.
Student possesses a basic understanding of bioinformatics concepts.
Student struggles to use bioinformatics tools and software effectively.
Student has difficulty in integrating gene technology experiments with bioinformatics analysis.
Assessment methods and criteria
Exam, assignments and lab report.
Qualifications
The world of microbes