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Mendel’s law of segregation, as applied to the behavior of chromosomes in meiosis, means that:

a.Pairing of homologs will convert one allele into the other, leading to separation of the types

b.Allele of a gene separate from each other when homologs separate in meiosis I or in meiosis IIif there is a single crossover between the gene and the centromere

c.Genes on the same chromosome will show 50% recombination

d.Alleles of a gene will be linked and passed on together through meiosis

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Answer:

b.Allele of a gene separate from each other when homologs separate in meiosis I or in meiosis II if there is a single crossover between the gene and the centromere

Explanation:

The behavior of homologous chromosomes at  late prophase 1 and metaphase1 and independent assortment at metaphase ii, with eventual separation  (segregation to different sex cells showed the behavior of chromosomes as stated by the Mendel segregation laws.

Mendel’s law of segregation indicates that Allele of a gene separate from

each other when homologs separate in meiosis I or in meiosis II if there is a

single crossover between the gene and the centromere.

Meiosis is the type of cell division that occurs during sexual reproduction.

This process helps to produce unique daughter cells which is the reason

why we have a unique DNA.

Mendel's law of segregation involves the passing of random traits to

daughter cells by receiving allele from each parent.The allele of genes and

homologs  separate which gives rise to the homologs getting only one allele

each.

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