Mendelian genetics helps us understand evolution. It shows how traits are passed down through dominant and recessive alleles.
For example, in pea plants, traits like flower color follow clear rules of inheritance. This means that different versions of traits can lead to various appearances in a group of plants.
Genetic Variation: Different mixes of alleles can create new traits. This variety is very important for natural selection.
Allele Frequencies: The number of dominant and recessive alleles in a group can change over time. This change demonstrates a small form of evolution, known as microevolution.
By looking at these patterns, we can understand how traits that are helpful in the environment become more common. This helps explain how evolution happens.
Mendelian genetics helps us understand evolution. It shows how traits are passed down through dominant and recessive alleles.
For example, in pea plants, traits like flower color follow clear rules of inheritance. This means that different versions of traits can lead to various appearances in a group of plants.
Genetic Variation: Different mixes of alleles can create new traits. This variety is very important for natural selection.
Allele Frequencies: The number of dominant and recessive alleles in a group can change over time. This change demonstrates a small form of evolution, known as microevolution.
By looking at these patterns, we can understand how traits that are helpful in the environment become more common. This helps explain how evolution happens.