Heterozygous example sentences

Related (9): Allele, Diploid, Hybrid, Inheritance, Genotype, Phenotype, Dominant, Recessive, Meiosis

"Heterozygous" Example Sentences

1. The offspring of a heterozygous cross have a 50% chance of being heterozygous themselves.
2. A heterozygous genotype can produce two different phenotypes.
3. The heterozygous state is often represented by two different letters in genetics.
4. In genetics, a dominant allele masks the expression of a recessive allele in a heterozygous individual.
5. The heterozygous state contributes to genetic diversity within a population.
6. Heterozygous mutations may cause disease when both copies of the gene are affected.
7. A heterozygous carrier of a genetic disorder may have no symptoms themselves but can pass the disorder on to their children.
8. A heterozygous advantage occurs when individuals with two different alleles have higher fitness than individuals with two copies of the same allele.
9. Heterozygous advantage can result in the maintenance of multiple alleles in a population.
10. The sickle cell trait is an example of a heterozygous advantage in areas with endemic malaria.
11. Heterozygous individuals with the sickle cell trait have an increased resistance to malaria compared to homozygous individuals.
12. The heterozygous state can also confer increased resistance to other diseases, such as HIV, tuberculosis, and leprosy.
13. In plant breeding, heterozygous hybrid offspring are often more vigorous and productive than either parent.
14. Heterozygous plants can have increased resistance to pests, diseases, and environmental stresses.
15. Heterozygous plants can also show increased heterosis, which is the phenomenon of increased growth, yield, or other traits in the hybrid offspring relative to the parents.
16. Heterozygous advantage is also observed in some animal populations, such as the Mexican tetra fish, which has adapted to living in high-altitude caves.
17. The heterozygous state can also affect drug metabolism and response, as certain alleles can alter the activity of drug metabolizing enzymes.
18. Heterozygous genotypes can also be used to identify individuals at risk for familial genetic disorders.
19. A heterozygous deletion of a chromosomal region can lead to variable effects on gene expression depending on the genes involved.
20. In tumor genetics, heterozygous mutations in tumor suppressors can be a predisposing factor for cancer development.
21. A heterozygous advantage can also arise from negative frequency-dependent selection, which occurs when the fitness of an allele depends on its frequency in the population.
22. The heterozygous advantage may contribute to the maintenance of genetic diversity in natural populations.
23. The heterozygous state can also affect the expression and regulation of genes in epigenetic processes.
24. Heterozygous individuals can contribute to the establishment of new species through hybridization and introgression.
25. Heterozygous individuals can also be more resistant to inbreeding depression and genetic bottlenecks.
26. In population genetics, the heterozygosity of a population can be used to measure genetic diversity and potential for adaptation.
27. Heterozygous mutations can also result in genetic disorders, such as cystic fibrosis, sickle cell anemia, and Huntington's disease.
28. The penetrance and expressivity of heterozygous mutations can vary depending on factors such as genetic background and environmental influences.
29. A heterozygous advantage can also arise from sexual selection, as certain alleles may confer greater attractiveness to potential mates.
30. The heterozygous state can have important implications for genetic counseling and medical treatment, as well as for evolutionary and ecological processes.

Common Phases

1. The population is heterozygous at this locus;
2. Her offspring are heterozygous for the trait;
3. The genotype is heterozygous for both genes;
4. This individual is heterozygous for the mutation;
5. The heterozygous condition confers some advantage.

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