In forensics the science of investigating crimes paternity t
Solution
a) Heterozygous: A diploid organism is heterozygous at a gene locus when its cells contain two different alleles of a gene.
Homozygous: A diploid organism is homozygous at a gene locus when its cells contain same alleles of a gene.
Individual A has two bands for locus 1 (homozygous) while Individual B has only one band for locus 1 (other allele is different and not shown) hence is heterozygous
b) Let\'s call frequency of fast alle as p[i] and frequency of slow alle as q[i] where i = 1, 2 & 3
Locus 1: heterozygous. Probability (P1) = 2 x p1 x q1 = 2 *0.9 *0.1 = 0.18
Locus 2: homozygous. Probability (P2) = p2 x p2 = 0.03 *0.03 = 0.0009
Locus 3: homozygous. Probability (P3) = p3 x p3 = 0.55 *0.55 = 0.3025
Distribution of genes at Loci 1-3 is independent of each other, hence Probability that blood came from person B = P1 * P2 * P3 = 0.000049005 or 0.004901%
a) Heterozygous: A diploid organism is heterozygous at a gene locus when its cells contain two different alleles of a gene.
Homozygous: A diploid organism is homozygous at a gene locus when its cells contain same alleles of a gene.
Individual A has two bands for locus 1 (homozygous) while Individual B has only one band for locus 1 (other allele is different and not shown) hence is heterozygous
b) Let\'s call frequency of fast alle as p[i] and frequency of slow alle as q[i] where i = 1, 2 & 3
Locus 1: heterozygous. Probability (P1) = 2 x p1 x q1 = 2 *0.9 *0.1 = 0.18
Locus 2: homozygous. Probability (P2) = p2 x p2 = 0.03 *0.03 = 0.0009
Locus 3: homozygous. Probability (P3) = p3 x p3 = 0.55 *0.55 = 0.3025
Distribution of genes at Loci 1-3 is independent of each other, hence Probability that blood came from person B = P1 * P2 * P3 = 0.000049005 or 0.004901%
