The consequence of the law of independent assortment in human inheritance is that genes for different traits are inherited independently of each other. This results in a wide variety of possible genetic combinations in offspring, contributing to genetic diversity within a population. This principle is fundamental in understanding genetic variability and the inheritance of multiple traits in humans.
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Human height is governed by polygenic inheritance, which means that more than one gene determines a person's height.
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Genetics is a branch of biology that studies how traits are passed down from one generation to the next through genes. It explores the mechanisms of inheritance, genetic variation, and the role of genes in determining an organism's characteristics.
Both biological inheritance and environmental factors play significant roles in human development. While biological inheritance determines traits like eye color and height, environmental factors such as upbringing, education, and experiences shape personality, behavior, and cognitive abilities. The interaction between nature and nurture is complex and influences different aspects of development in unique ways.
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A pedigree chart is used to study human patterns of inheritance.
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Although humans can produce over eight million unique gametes due to independent assortment of homologous chromosomes, human males can produce many billions of sperm during a lifetime because of continuous sperm production. However, no two sperm are exactly alike due to random genetic recombination during meiosis, leading to variability in each individual sperm cell's genetic composition.
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Inheritance and maturation
polygenic inheritance
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polygenic
Inheritance and maturation
polygenic inheritance
When a trait has more than two alleles, it can be inherited in various ways depending on the interaction of the alleles. Multiple alleles can exist at a single genetic locus, and the specific inheritance pattern is determined by factors like dominance, recessiveness, and co-dominance. Each individual can still only inherit two alleles for a specific gene, but the presence of multiple alleles can create a wider range of possible genotypes and phenotypes.