Genetics
Information from the course leader
Hej!
Du är varmt välkommen till kursen "Genetik" (BI1422). Kursintroduktion sker den 2:e september kl. 09.00 i Grupprum M1/M2 i Undervisningshuset.
Föreläsningarna under kursen kommer vi att ta upp olika grundläggande moment och kunskaper i genetik. Dessa kunskaper är också grunden för genomförande av de obligatoriska momenten som inkluderar laborationer, problemlösningar, gruppövningar och tentamina. Jag rekommenderar därför starkt att ni närvarar vid dessa föreläsningar.
Delar av kursen kommer att ges tillsammans med kursen "Genetik, cellbiologi och mikrobiologi" (BI1278), dessa moment är markerade med gul bakgrund i schemat. Notera att det bifogade schemat fortfarande är preliminärt, definitivt schema lämnas ut vid kursstart.
Du kan registrera dig själv till kursen med början en vecka innan kursstart fram till några dagar efter kursens början. Detta gör du på studentwebben via länken ”Mina studier”. För att du ska kunna bli registrerad på kursen behöver du uppfylla förkunskapskraven som omfattar grundläggande kunskaper i kemi motsvarande 10 hp varav 5 hp i biokemi, se kursplanen på kurshemsidan (https://student.slu.se/studier/kurser-och-program/kurssok/kurs/BI1422/10261.2425/). Efter registrering för du också tillgång till kursens Canvas-sida där föreläsningar och annat material kommer att delas ut under kursens gång.
Om du ännu inte uppnått dessa förkunskapskrav så kontakta mig snarast för att diskutera vad som saknas.
Har du andra frågor rörande kursen är du också välkommen att höra av dig till mig.
Med vänliga hälsningar,
-Pär Ingvarsson, kursledare
Course evaluation
The course evaluation is now closed
BI1422-10261 - Course evaluation report
Once the evaluation is closed, the course coordinator and student representative have 1 month to draft their comments. The comments will be published in the evaluation report.
Additional course evaluations for BI1422
Academic year 2023/2024
2023-08-28 - 2023-09-27
Academic year 2022/2023
2022-08-29 - 2022-09-28
Syllabus and other information
Syllabus
BI1422 Genetics, 7.5 Credits
GenetikSubjects
Biology BiologyEducation cycle
Bachelor’s levelAdvanced study in the main field
G1F
Grading scale
The grade requirements within the course grading system are set out in specific criteria. These criteria must be available by the course start at the latest.
Language
SwedishPrior knowledge
Knowledge equivalent to 10 credits Chemistry of which 5 credits are Biochemistry.Objectives
Genetically determined traits are expressed at different organizational levels from molecular and organism levels to population and species levels. The course therefore studies genetics at several different organizational levels. The course aims to provide basic knowledge of Mendel’s heredity theories, molecular and quantitative genetics. The course provides knowledge about how genetic variation occurs and how it affects higher levels. The course describes genetic conditions for historical and ongoing plant and animal breeding for food production. Methods for studying basic genetics and for applications are discussed.
After completing the course, the student should be able to:
describe the structure and composition of the genome
describe how the genetic material is transferred between cells and generations
describe the principles behind gene regulation
analyze different types of inheritance, gene order and linkage between genes
describe the applications of genetics in plant and animal breeding
summarize selected literature in genetics and present it in writing and orally
use basic laboratory techniques in molecular genetics
interpret results and write laboratory reports
seek and evaluate scientific information based on a scientific question
summarize selected literature in genetics and present it in writing and orally
Content
The course deals with genetics, mainly in higher plants and animals. Examples are taken from current genetic literature.
Lectures and compulsory group exercises cover the following sections:
the genetic information flow: DNA replication, RNA synthesis, RNA splicing and protein synthesis
cell division and formation of germ cells
origin and consequences of genetic variation
Mendelian inheritance theory and its extension
quantitative genetics
plant breeding applications for food quantity and quality
During laboratory work and group discussions, current techniques in genetic analysis are treated and in-depth study is done through group assignments on selected topics, which are presented orally and in writing.
Grading form
The grade requirements within the course grading system are set out in specific criteria. These criteria must be available by the course start at the latest.Formats and requirements for examination
Passed written exams and passed accounts of practicals, and approved participation in mandatory activities.
If a student has failed an examination, the examiner has the right to issue supplementary assignments. This applies if it is possible and there are grounds to do so.
The examiner can provide an adapted assessment to students entitled to study support for students with disabilities following a decision by the university. Examiners may also issue an adapted examination or provide an alternative way for the students to take the exam.
If this syllabus is withdrawn, SLU may introduce transitional provisions for examining students admitted based on this syllabus and who have not yet passed the course.
For the assessment of an independent project (degree project), the examiner may also allow a student to add supplemental information after the deadline for submission. Read more in the Education Planning and Administration Handbook.
Other information
The right to participate in teaching and/or supervision only applies for the course instance the student was admitted to and registered on.
If there are special reasons, students are entitled to participate in components with compulsory attendance when the course is given again. Read more in the Education Planning and Administration Handbook.
Additional information
The required course prerequisites in chemistry can be obtained by for instance following the courses Basic Chemistry I, 15 credits (KE0062); Basic Chemistry II, 7,5 credits (KE0063) with at least 10 passed credits of which 5 credits should be Biochemistry. Alternatively, the prerequisite in Biochemistry can be obtained by following the course Biochemistry, continuation 7,5 credits (KE0064) and achieving at least 5 credits. Some parts of the course may be given with English as the main language.Responsible department
Department of Plant Biology
Further information
Litterature list
Klug, W., Cummings, M., Spencer, C., Palladino, M., Killian, D. (2020)
Essentials of Genetics, 10th (Global) Edition or earlier editions, Pearson Education Ltd, ISBN: 9781292350424