Review the key concepts, formulae, and examples before starting your quiz.
🔑Concepts
Asexual reproduction involves a single parent and produces offspring that are genetically identical to the parent (clones). This occurs through processes like binary fission, budding, or vegetative propagation.
Sexual reproduction involves the fusion of two haploid () gametes to form a diploid () zygote, ensuring genetic variation within a population.
Meiosis is a reduction division where the chromosome number is halved from diploid () to haploid (). It introduces variation via crossing over in Prophase I and independent assortment in Metaphase I.
Genetic variation in gametes can be calculated using the formula , where is the haploid number of chromosomes.
Human reproduction is regulated by the endocrine system. The menstrual cycle involves hormones from the hypothalamus (GnRH), anterior pituitary (FSH and LH), and ovaries (Estrogen and Progesterone).
Fertilization in humans typically occurs in the fallopian tube (oviduct). The resulting zygote undergoes mitosis to become a blastocyst before implanting in the endometrium.
The placenta is a specialized organ that facilitates the exchange of nutrients, gases, and wastes between maternal and fetal blood without the two blood supplies mixing directly.
External fertilization occurs outside the body (common in aquatic species like fish and amphibians), while internal fertilization occurs inside the female reproductive tract (common in terrestrial animals).
📐Formulae
💡Examples
Problem 1:
A species of plant has a diploid chromosome number of . Calculate the number of possible chromosome combinations that can occur in its gametes as a result of independent assortment during meiosis.
Solution:
Given , the haploid number is: The number of combinations is given by:
Explanation:
Independent assortment occurs during Metaphase I of meiosis, where homologous pairs align randomly. The total number of unique combinations of maternal and paternal chromosomes is raised to the power of the haploid number.
Problem 2:
Explain the role of the hormone (Luteinizing Hormone) in the human menstrual cycle and identify its peak timing.
Solution:
The surge triggers ovulation (the release of the secondary oocyte). It occurs around day of a standard -day cycle.
Explanation:
High levels of estrogen exert positive feedback on the pituitary gland, leading to a sudden spike in . This spike causes the Graafian follicle to rupture and subsequently transform into the corpus luteum.