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The scientists mapping the SNPs in the human genome noticed that groups of SNPs tended to be inherited together, in blocks known as haplotypes, ranging in length from 5,000 to 200,000 base pairs. There are as few as four or five commonly occurring combinations of SNPs per haplotype. Integrating what you’ve learned throughout this chapter and this unit, propose an explanation for this observation.

Short Answer

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The0.1% difference in the DNA sequence is the reason behind the inherited phenotypic variation in the genome of the human species.

Step by step solution

01

Inheritance

Whenthe generation of one species acquires alleles from its previous generation, they are studied by a biological principle involving genetics (study heredity). This is known as inheritance.

Various inheritance patterns are co-dominant, mitochondrial, autosomal dominant, and autosomal recessive inheritance. Some common examples of inherited characteristics are disease susceptibility, eye color, and hair color.

02

Haplotype

The linked SNPs (single nucleotide polymorphisms) pattern inherited within a living organism together from their parents and located on the same chromosome is called haplotype or haploid genotype.

The MHC (major histocompatibility complex) comprises the HLA allele. It is an example of a haplotype. Each of the parent individuals provides a single haplotype (pair of DNA variation) to each offspring.

03

Explanation for observation

SNPs mapping is a methodology performed to map genes or find out the exact location of the gene on a specific chromosome.

This methodology (SNPs or single nucleotide polymorphism) is essential to identify the site where the DNA sequence has variations or SNP variants.

The SNPs (base-pair difference at a specific site in the genome) contribute to the changes in phenotypic traits, such as height, weight, and eye color within organisms like the human population.

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Most popular questions from this chapter

The earlier that two genes arose from a duplicated gene, the more their nucleotide sequences can have diverged, which may result in amino acid differences in the protein products. (a) Based on that premise, identify which two genes are most divergent from each other. What is the percent amino acid identity between their polypeptides? (b) Using the same approach, identify which two globin genes are the most recently duplicated. What is the percent identity between them?

Genes important in the embryonic development of animals, such as homeobox-containing genes, have been relatively well conserved during evolution; that is, they are more similar among different species than are many other genes. Explain why this is.

Below are the amino acid sequences (using the single-letter code; see Figure 5.14) of four short segments of the FOXP2 protein from six species: chimpanzee (C), orangutan (O), gorilla (G), rhesus macaque (R), mouse (M), and human (H). These segments contain all of the amino acid differences between the FOXP2 proteins of these species.

Use a highlighter to color any amino acid that varies among the species. (Color that amino acid in all sequences.)

  1. The C, G, R sequences are identical. Identify which lines correspond to those sequences.
  2. The H sequence differs from that of the C, G, R species at two amino acids. Underline the two differences in the H sequence.
  3. The O sequence differs from the C, G, R sequences at one amino acid (having V instead of A) and from the H sequence at three amino acids. Identify the O sequence.
  4. In the M sequence, circle the amino acid(s) that differ from the C, G, R sequences, and draw a square around those that differ from the H sequence.
  5. Primates and rodents diverged between 60 and 100 million years ago, and chimpanzees and humans about 6 million years ago. Compare the amino acid differences between the mouse and the C, G, R species with those between the human and the C, G, R species. What can you conclude?

Describe three examples of errors in cellular processes that lead to DNA duplications

WHAT IF? What evolutionary processes might account for prokaryotes having smaller genomes than eukaryotes?

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