Table of contents
- 1. Introduction to Genetics51m
- 2. Mendel's Laws of Inheritance3h 37m
- 3. Extensions to Mendelian Inheritance2h 41m
- 4. Genetic Mapping and Linkage2h 28m
- 5. Genetics of Bacteria and Viruses1h 21m
- 6. Chromosomal Variation1h 48m
- 7. DNA and Chromosome Structure56m
- 8. DNA Replication1h 10m
- 9. Mitosis and Meiosis1h 34m
- 10. Transcription1h 0m
- 11. Translation58m
- 12. Gene Regulation in Prokaryotes1h 19m
- 13. Gene Regulation in Eukaryotes44m
- 14. Genetic Control of Development44m
- 15. Genomes and Genomics1h 50m
- 16. Transposable Elements47m
- 17. Mutation, Repair, and Recombination1h 6m
- 18. Molecular Genetic Tools19m
- 19. Cancer Genetics29m
- 20. Quantitative Genetics1h 26m
- 21. Population Genetics50m
- 22. Evolutionary Genetics29m
6. Chromosomal Variation
Chromosomal Mutations: Aneuploidy
Problem 6
Textbook Question
What evidence indicates that humans with aneuploid karyotypes occur at conception but are usually inviable?
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1
Understand the concept of aneuploidy: Aneuploidy refers to the presence of an abnormal number of chromosomes in a cell. In humans, this often results from errors during meiosis, leading to gametes with missing or extra chromosomes.
Recognize the role of karyotyping: Karyotyping is a laboratory technique that allows scientists to visualize the number and structure of chromosomes in a cell. It is used to detect aneuploidies in embryos, fetuses, and newborns.
Consider the evidence from spontaneous abortions: Studies have shown that a significant proportion of spontaneous abortions (miscarriages) are due to chromosomal abnormalities, with aneuploidy being the most common cause. This suggests that many aneuploid conceptions are not viable.
Examine the frequency of aneuploidy in live births: While aneuploidy is common at conception, only a few types of aneuploidy (such as Down syndrome, Turner syndrome, and Klinefelter syndrome) are compatible with life and result in live births. This indicates that most aneuploid embryos do not survive to term.
Review preimplantation genetic screening (PGS) data: PGS is used in assisted reproductive technologies to screen embryos for chromosomal abnormalities before implantation. High rates of aneuploidy are often detected in embryos, supporting the idea that aneuploid conceptions are frequent but usually inviable.
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Aneuploidy
Aneuploidy refers to the presence of an abnormal number of chromosomes in a cell. In humans, this condition can arise from errors during meiosis, leading to gametes with extra or missing chromosomes. Common examples include Down syndrome (trisomy 21) and Turner syndrome (monosomy X). While aneuploidy can occur at conception, many aneuploid embryos fail to develop properly.
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Karyotype
A karyotype is a visual representation of an individual's complete set of chromosomes, organized by size and shape. It is used to identify chromosomal abnormalities, such as aneuploidy. Karyotyping can reveal the number of chromosomes and any structural changes, providing crucial information about genetic disorders and their potential viability.
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Embryonic Viability
Embryonic viability refers to the ability of an embryo to develop into a healthy fetus and ultimately a live birth. Many aneuploid embryos are inviable due to the severe genetic imbalances they present, which disrupt normal development. Research indicates that a significant proportion of conceptions with aneuploid karyotypes result in early pregnancy loss, highlighting the critical role of chromosomal integrity in successful gestation.
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