Genetic Concepts & Terms Notes with PDF

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Foundational Figures & Theories

  • Gregor Johann Mendel
    • Credited as the father of modern genetics.
    • Discovered the fundamental laws of inheritance through experiments on garden pea plants (Pisum sativum).
    • His principles are based on the mechanisms of sexual reproduction.
  • Sutton and Boveri
    • Proposed the Chromosomal Theory of Inheritance (1902-1903).
    • Stated that chromosomes are the carriers of genetic material, providing a physical basis for Mendel’s laws.
  • James Watson and Francis Crick
    • First to propose the double-helix model of DNA (1953).
    • Awarded the Nobel Prize in Physiology or Medicine in 1962 for this discovery.
  • Waldeyer
    • Coined the term “chromosome”.

DNA Structure and Discovery

  • Key Discoveries
    • Discovery of DNA: Identified and isolated by Friedrich Miescher in 1869.
    • Double-Helix Model: Proposed by James Watson and Francis Crick in 1953.
  • DNA Composition
    • Sugar: Deoxyribose.
    • Nitrogenous Bases: Adenine (A), Guanine (G), Cytosine (C), Thymine (T).
    • Key Feature: Complementary base pairing (A-T, G-C) ensures accurate storage and transmission of genetic information.
    • Non-DNA Compound: Tyrosine (an amino acid) is not a component of DNA.

Basic Units of Heredity

  • Gene
    • The basic unit of heredity.
    • Defined as a segment of DNA containing instructions for specific traits.
  • DNA (Deoxyribonucleic Acid)
    • The primary hereditary material in most organisms.
    • Controls hereditary characteristics.
  • RNA (Ribonucleic Acid)
    • Acts as a messenger, carrying instructions from DNA for protein synthesis.
  • Chromosome
    • Structures located in the nucleus, made of DNA and proteins (nucleoproteins).
    • Carry hereditary traits from one generation to the next and contain genes.
    • Constancy: The chromosome number is constant for a species.
    • Human Chromosomes: Human cells have 46 chromosomes, arranged in 23 pairs.

Genetic Mechanisms & Concepts

  • Mendel’s Laws of Inheritance
    • Derived from experiments on garden peas.
    • The three laws are:
      1. Law of Dominance
      2. Law of Segregation
      3. Law of Independent Assortment
  • The Genetic Code
    • A set of rules used by cells to translate genetic information (DNA/RNA) into proteins.
    • Key Features: Universal, non-overlapping, non-ambiguous, and commaless.
    • Structure: It is a triplet code (a codon is three nucleotide bases).
    • Codons: There are 64 codons; 61 code for amino acids, and 3 are stop signals.
    • Nobel Prize (1968): Awarded to Robert W. Holley, Har Gobind Khorana, and Marshall W. Nirenberg for interpreting the genetic code.
  • Gene and Protein Synthesis
    • Har Gobind Khorana is credited with the laboratory synthesis of a gene.
  • Mutation
    • A change in the base sequence within a gene.
    • It is a source of genetic variation and a driving force of evolution.
  • Genetic Variation from Sexual Reproduction
    • Caused by:
      • Blending of genes from two parents.
      • Chromosomal changes.
      • Shuffling of genes.
  • Genome Mapping
    • A technique to map the location of genes on a chromosome and determine the distance between them using genetic markers.

Chromosomes and Sex Determination

  • Sex Determination in Humans
    • The 23rd chromosome pair determines sex.
    • Females: XX chromosomes.
    • Males: XY chromosomes.
    • The male (father) determines the sex of the offspring. A male child results from inheriting the Y chromosome from the father and the X from the mother.
  • Exception: Some species (e.g., lizards in the genus Sceloporus) do not have distinguishable sex chromosomes.

Other Genetic Elements

  • Jumping Genes (Transposons)
    • Discovery: By Barbara McClintock.
    • Principle: Segments of DNA can move from one chromosome to another, affecting gene expression.
    • Nobel Prize: Awarded to McClintock in 1983 for this work.
  • Ribozymes
    • Nature: RNA molecules.
    • Function: Catalytic molecules that speed up biochemical reactions, similar to enzymes.
    • Discovery: The catalytic property of RNA was discovered by Thomas R. Cech and Sidney Altman (Nobel Prize, 1989).

DNA Damage and Mutagens

  • Agents Causing DNA Changes
    • Professionals at risk of permanent DNA changes include:
      • X-ray technicians: Due to exposure to ionizing radiation.
      • Researchers using Carbon-14 isotope: Due to beta radiation.
      • Dyers and painters: Due to exposure to chemical carcinogens (e.g., benzene, formaldehyde).

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