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Genetics, DNA & Principles of Heredity GK Questions & Answers

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Classical genetics originated with Gregor Johann Mendel's hybridization experiments on the garden pea (Pisum sativum) conducted between 1856 and 1863 at the Augustinian St. Thomas's Abbey in Brno. By tracking seven pairs of contrasting traits—including seed shape, cotyledon colour, and plant height—Mendel deduced that discrete physical units, termed factors and later recognized as genes, govern inheritance across successive generations. His findings established three fundamental principles: the Law of Dominance, the Law of Segregation, and the Law of Independent Assortment. Modern molecular genetics emerged in 1953 when James Watson and Francis Crick, building on X-ray diffraction images recorded by Rosalind Franklin, formulated the antiparallel double-helix structure of deoxyribonucleic acid (DNA).

At the molecular level, DNA consists of two complementary polynucleotide strands composed of deoxyribose sugar, phosphate backbones, and four nitrogenous bases. Erwin Chargaff's equivalence rules establish that purines pair with pyrimidines in stoichiometric balance: adenine binds thymine via two hydrogen bonds, while guanine pairs with cytosine through three hydrogen bonds. Genetic information executes biological function through Francis Crick's Central Dogma, moving from DNA replication to transcription into messenger RNA (mRNA) and final ribosomal translation into polypeptides. Human somatic cells contain 23 chromosome pairs (46 total), comprising 22 pairs of autosomes and one pair of sex chromosomes (XX in females, XY in males), with the Y-chromosome SRY gene directing male sexual differentiation.

Applied genetics underpins modern medical diagnostics, forensic DNA profiling, agricultural biotechnology, and directed mutagenesis through CRISPR-Cas9 endonuclease systems. India's National Sickle Cell Anaemia Elimination Mission reflects the public health urgency of managing autosomal recessive haemoglobinopathies across vulnerable tribal populations. For competitive examinations, including the UPSC Civil Services Examination and SSC CGL, mastery of genetics is essential. Question patterns frequently test Mendelian phenotypic and genotypic ratios (3:1 monohybrid and 9:3:3:1 dihybrid), sex-linked inheritance patterns in haemophilia and colour blindness, chromosomal aneuploidies such as Down syndrome (trisomy 21) and Turner syndrome (45,X), point mutations altering beta-globin, and contemporary advancements in recombinant DNA technology and somatic gene therapy.

Key Concepts & Self-Assessment15 Key Facts

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#1
Gregor Mendel formulated three laws of inheritance—Dominance, Segregation, and Independent Assortment—based on statistical analysis of 7 contrasting traits in Pisum sativum.
#2
Watson and Crick (1953) elucidated the right-handed B-DNA double helix model, governed by Chargaff's rules where Purines equal Pyrimidines ([A]+[G] = [T]+[C]) with A=T (2 hydrogen bonds) and G≡C (3 hydrogen bonds).
#3
The Central Dogma of molecular biology describes unidirectional flow of genetic information: DNA replication -> Transcription into mRNA -> Translation into polypeptide proteins.
#4
The human genome comprises 23 pairs of chromosomes (46 total): 22 pairs of autosomes and 1 pair of sex chromosomes (XX in females, XY in males), with the SRY gene on the Y chromosome determining male sex differentiation.
#5
Genetic disorders include X-linked recessive conditions (Haemophilia A/B, Red-Green Colour Blindness), autosomal recessive blood disorders (Sickle Cell Anaemia, Beta Thalassemia), and chromosomal aneuploidies (Down Syndrome/Trisomy 21, Klinefelter Syndrome/47,XXY, Turner Syndrome/45,X).
#6
Gregor Mendel presented his hybridization experiments to the Natural History Society of Brünn in 1865, published in their proceedings in 1866.
#7
Hugo de Vries, Carl Correns, and Erich von Tschermak independently rediscovered Mendel's principles of heredity in 1900, launching modern classical genetics.
#8
Walter Sutton and Theodor Boveri formulated the Chromosomal Theory of Inheritance in 1902, demonstrating that Mendelian factors reside at specific loci on homologous chromosomes.
#9
Thomas Hunt Morgan confirmed the chromosomal theory through sex-linked white eye mutations in Drosophila melanogaster, winning the 1933 Nobel Prize in Physiology or Medicine.
#10
Frederick Griffith's 1928 experiment on Streptococcus pneumoniae demonstrated the 'transforming principle', which Avery, MacLeod, and McCarty proved to be DNA in 1944.
#11
The Hershey-Chase blender experiment of 1952 used radioactive isotopes 32P and 35S in T2 bacteriophages to unequivocally confirm that DNA is the hereditary material.
#12
Okazaki fragments are short sequences of newly synthesized DNA on the lagging strand during replication, joined together into a continuous chain by the enzyme DNA ligase.
#13
The genetic code is a degenerate triplet code comprising 64 codons, with AUG functioning as the universal initiation codon coding for methionine and three stop codons (UAA, UAG, UGA).
#14
Polymerase Chain Reaction, developed by Kary Mullis in 1983, utilizes heat-stable Taq polymerase from Thermus aquaticus to amplify target DNA sequences exponentially in vitro.
#15
CRISPR-Cas9, adapted from bacterial adaptive immune systems by Jennifer Doudna and Emmanuelle Charpentier (Nobel Prize in Chemistry 2020), functions as an RNA-guided precision genome-editing tool.

Subject Specialist Commentary

Analytical perspective & practical exam advice from the Master10 academic board

Educator's Insight
Genetics studies how biological characteristics pass across generations. Gregor Mendel established classical heredity through garden pea experiments, formulating the laws of Segregation and Independent Assortment. In 1953, James Watson and Francis Crick modeled the DNA double helix, where adenine pairs with thymine via two hydrogen bonds, and guanine pairs with cytosine via three. The Central Dogma governs cellular function, directing genetic instructions from DNA replication into messenger RNA transcription, followed by translation into structural and catalytic proteins.
In SSC CGL and UPSC prelims, general science questions often test genetic disorders and cellular processes. Remember that humans possess 23 pairs of chromosomes, and Down syndrome results from trisomy 21. A common test trap confuses inheritance patterns: haemophilia and red-green colour blindness are X-linked recessive, while sickle cell anaemia is autosomal recessive. For quick revision, memorize that AUG functions as the universal start codon coding for methionine, and Polymerase Chain Reaction uses heat-stable Taq polymerase to duplicate DNA.

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