10.2.1
Linked Genes
Linked Genes
Linked Genes
Linkage is when genes that are close to one another on a chromosome are likely to be inherited together. Linkage shows that some allele combinations are not inherited independently of each other.


Mendel's law
Mendel's law
- Mendel's law of independent assortment states that genes do not influence the sorting of alleles into gametes. This is not always the case.
- Some allele combinations are not inherited independently of each other.
- Genes that are located close to each other on the same chromosome are more likely to be inherited as a pair.
- This is called linkage.


Autosomes
Autosomes
- Autosomes are all the chromosomes except the sex chromosomes (X and Y).
- Autosomes are arranged in pairs called homologous chromosomes.
- Homologous chromosomes consist of the same genes in the same order along the chromosome.
- There is some variation if the chromosomes have different alleles but the genes are the same.


Recombination
Recombination
- When gametes are produced by meiosis, multiple sections of homologous chromosomes are exchanged in a process called recombination.
- If two genes are located in close proximity on the same chromosome, they are more likely to be exchanged together and not separated in recombination.
- The genes are more likely to be transmitted to a gamete together.


Linkage
Linkage
- Genes that are close together on the same autosome are more likely to be transmitted to a gamete together.
- The genes are linked. This is autosomal linkage.


Linked genes - example
Linked genes - example
- Imagine a dihybrid cross involving flower color and plant height in which the genes are next to each other on the chromosome.
- If one homologous chromosome has alleles for tall plants and red flowers, and the other chromosome has genes for short plants and yellow flowers, then when the gametes are formed:
- The tall and red alleles will go together into a gamete.
- The short and yellow alleles will go into other gametes.
- These are called the parental genotypes because they have been inherited intact from the parents of the individual producing gametes.


Linked genes - example 2
Linked genes - example 2
- However, unlike if the genes were on different chromosomes, there will be no gametes with tall and yellow alleles and no gametes with short and red alleles.
- If you create the Punnett square with these gametes, you will see that the Mendelian prediction of a 9:3:3:1 outcome of a dihybrid cross would not apply.
- As the distance between two genes increases, the probability of one or more crossovers between them increases, and the genes behave more like they are on separate chromosomes.


Linked genes and distances
Linked genes and distances
- Geneticists have used the proportion of recombinant gametes (the ones not like the parents) as a measure of how far apart genes are on a chromosome.
- Using this information, they have constructed elaborate maps of genes on chromosomes for well-studied organisms, including humans.
1Cell Biology
1.1Introduction to Cells
1.2Ultrastructure of Cells
1.3Membrane Structure
1.4Membrane Transport
1.5The Origin of Cells
2Molecular Biology
2.1Water
2.2Carbohydrates & Lipids
2.3Proteins
2.4Enzymes
2.5Structure of DNA & RNA
2.6DNA Replication, Transcription & Translation
2.7Cell Respiration
2.8Photosynthesis
3Genetics
3.1Genes
3.2Chromosomes
3.3Meiosis
3.4Inheritance
3.5Genetic Modification & Biotechnology
4Ecology
4.1Species, Communities & Ecosytems
4.3Carbon Cycle
5Evolution & Biodiversity
5.1Evidence for Evolution
5.2Natural Selection
5.3Classification of Biodiversity
6Human Physiology
6.1Digestion & Absorption
6.2The Blood System
6.3Defence Against Infectious Disease
6.5Neurons & Synapses
7AHL: Nucleic Acids
7.1DNA Structure & Replication
7.2Transcription & Gene Expression
8AHL: Metabolism, Cell Respiration & Photosynthesis
8.1Metabolism
8.2Cell Respiration
9AHL: Plant Biology
9.1Transport in the Xylem of Plants
9.2Transport in the Phloem of Plants
9.3Growth in Plants
10AHL: Genetics & Evolution
10.1Meiosis
10.2Inheritance
10.2.1Linked Genes
10.2.2Sex-Linked Genes
10.2.3Non-Nuclear Inheritance
10.2.4Chi-Squared Test
10.2.5End of Topic Quiz - Inheritance
10.2.6IB Multiple Choice - Non-Mendelian Genetics
10.2.7Introduction to Non-Mendelian Inheritance
10.2.8Extended Response - Inheritance
10.2.9Grade 4-5 (Scientific Practices) - Inheritance
11AHL: Animal Physiology
11.1Antibody Production & Vaccination
11.3The Kidney & Osmoregulation
Jump to other topics
1Cell Biology
1.1Introduction to Cells
1.2Ultrastructure of Cells
1.3Membrane Structure
1.4Membrane Transport
1.5The Origin of Cells
2Molecular Biology
2.1Water
2.2Carbohydrates & Lipids
2.3Proteins
2.4Enzymes
2.5Structure of DNA & RNA
2.6DNA Replication, Transcription & Translation
2.7Cell Respiration
2.8Photosynthesis
3Genetics
3.1Genes
3.2Chromosomes
3.3Meiosis
3.4Inheritance
3.5Genetic Modification & Biotechnology
4Ecology
4.1Species, Communities & Ecosytems
4.3Carbon Cycle
5Evolution & Biodiversity
5.1Evidence for Evolution
5.2Natural Selection
5.3Classification of Biodiversity
6Human Physiology
6.1Digestion & Absorption
6.2The Blood System
6.3Defence Against Infectious Disease
6.5Neurons & Synapses
7AHL: Nucleic Acids
7.1DNA Structure & Replication
7.2Transcription & Gene Expression
8AHL: Metabolism, Cell Respiration & Photosynthesis
8.1Metabolism
8.2Cell Respiration
9AHL: Plant Biology
9.1Transport in the Xylem of Plants
9.2Transport in the Phloem of Plants
9.3Growth in Plants
10AHL: Genetics & Evolution
10.1Meiosis
10.2Inheritance
10.2.1Linked Genes
10.2.2Sex-Linked Genes
10.2.3Non-Nuclear Inheritance
10.2.4Chi-Squared Test
10.2.5End of Topic Quiz - Inheritance
10.2.6IB Multiple Choice - Non-Mendelian Genetics
10.2.7Introduction to Non-Mendelian Inheritance
10.2.8Extended Response - Inheritance
10.2.9Grade 4-5 (Scientific Practices) - Inheritance
11AHL: Animal Physiology
11.1Antibody Production & Vaccination
11.3The Kidney & Osmoregulation
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