DNA Fingerprinting and Its Role in Identification

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What is DNA?

  • Composition:
    • Each human cell (except sperm and egg) contains 46 DNA molecules 23 from the father (via sperm) and 23 from the mother (via egg).
    • Sperm and egg cells contain only one copy of the genome.
  • Structure:
    • DNA is packaged in chromosomes (e.g., Chromosome 3 holds 6.5% of total DNA).
    • DNA consists of two complementary, anti-parallel strands made up of adenine (A), cytosine (C), guanine (G), and thymine (T).
  • Polymorphisms:
    • Differences in DNA sequences between individuals are called polymorphisms.
    • These help in identifying individuals and tracing ancestry.

What are STRs (Short Tandem Repeats)?

  • STRs are short sequences of base-pairs repeated multiple times (e.g., GATCGATCGATC).
  • STRs are often highly polymorphic, meaning different people usually have different repeat numbers.
  • STR polymorphisms are used to generate unique DNA profiles.

How do scientists copy DNA?

  • The method used is Polymerase Chain Reaction (PCR):
    • DNA extraction: Obtained from tissues like blood, skin, bone, or saliva.
    • Step 1: Denaturation — Heat to 95°C to separate strands.
    • Step 2: Annealing — Cool to 60°C to allow primers to bind to specific DNA regions.
    • Step 3: Extension — Using Taq polymerase at 72°C, the DNA strand is extended with complementary bases.
  • Each PCR cycle doubles the DNA; millions of copies can be made in under an hour.
  • Performed using a device called a thermocycler.

What is a DNA fingerprint?

  • DNA fingerprint: A unique profile created by measuring the sizes of STR variants through capillary electrophoresis.
  • Process:
    • DNA fragments are separated by size in a capillary tube under an electric field.
    • The smaller fragments move faster and are detected.
    • The resulting table of STR sizes for paternal and maternal alleles forms an individual’s DNA fingerprint.
  • Uniqueness:
    • Only identical twins share the same DNA fingerprint.

Uses of DNA Fingerprinting

  • Forensic Identification:
    • Identify individuals from crime scenes (blood stains, sweat, spit).
    • Confirm suspects or exonerate innocent individuals.
  • Disaster Victim Identification:
    • Extract DNA from bones, teeth, and other remains.
  • Paternity and Relationship Testing:
    • Establish parent-child relationships.
  • Organ Donation Matching:
    • Confirm donor-recipient compatibility.
  • Cold Case Resolution:
    • Solve old crimes using preserved DNA samples.
  • Historical Analysis:
    • Extract DNA from ancient remains (up to 65,000 years old).

Why is DNA analysis important?

  • Stable over time: DNA remains intact for thousands of years.
  • Accurate: Highly reliable for identifying individuals and familial relationships.
  • Universal application: Used in criminal justice, medicine, anthropology, and disaster response.
  • Unique personal marker: Much like an Aadhaar number for biological identity.

Source: TH

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