← General Science & Research · SSC JE Civil

Chapter 3 of 6

Basic Biology Concepts

In the SSC JE Civil syllabus under General Science & Research · 2 parts

📑 Contents (24 sections)

Part 1 of 2

Cell — Structure, Function & Division

Last reviewed 30 Sept 2026 · 9 min read

The cell

The cell is the basic structural and functional unit of life. All living things are made of one or more cells.

  • Robert Hooke (1665) first observed cells in a thin slice of cork using a simple microscope and coined the word "cell".
  • Anton van Leeuwenhoek (1674) first saw free-living cells (bacteria, protozoa).
  • Robert Brown (1831) discovered the nucleus.
  • Schleiden and Schwann (1838–39) proposed the cell theory: all plants and animals are made of cells. Rudolf Virchow (1855) added that all cells arise from pre-existing cells (omnis cellula e cellula).
  • Purkinje coined the word protoplasm (the living substance); the cell's contents = protoplasm.
  • Electron microscope (Knoll and Ruska) allowed us to see the fine structure.

Unicellular organisms (amoeba, paramecium, bacteria, yeast); multicellular (humans, plants). The smallest cell is that of Mycoplasma (PPLO); the largest single cell is the ostrich egg; the longest cell is the nerve cell (neuron); the human egg (ovum) is the largest human cell and the sperm the smallest; human red blood cells are about 7 µm in diameter.

Prokaryotes and eukaryotes

Feature Prokaryotic Eukaryotic
Nucleus no true nucleus (no nuclear membrane); a nucleoid true nucleus with a nuclear membrane
Organelles no membrane-bound organelles present
Size small (1–10 µm) larger (10–100 µm)
Ribosomes 70S 80S (70S in mitochondria and chloroplasts)
Examples bacteria, blue-green algae (cyanobacteria) plants, animals, fungi, protists

Plant cell and animal cell

Feature Plant cell Animal cell
Cell wall present (cellulose) absent
Plastids (chloroplasts) present absent
Vacuole one large central vacuole small or absent
Centrioles absent (in higher plants) present
Shape fixed, usually rectangular irregular, round
Lysosomes rare present

Cell organelles and their functions

Organelle Structure Function
Cell membrane (plasma membrane) thin, flexible, selectively permeable layer of lipids and proteins controls entry and exit of substances
Cell wall rigid, of cellulose in plants (chitin in fungi, peptidoglycan in bacteria) protection, support, shape
Nucleus double-membraned; contains chromatin (chromosomes/DNA) and a nucleolus control centre; heredity; nucleolus makes ribosomes
Cytoplasm jelly-like fluid between the membrane and nucleus site of many chemical reactions
Mitochondria double membrane; own DNA; inner folds are cristae "powerhouse of the cell" — produce ATP by aerobic respiration
Chloroplast double membrane, contains chlorophyll, grana and stroma photosynthesis (in plants)
Other plastids chromoplasts (colour), leucoplasts (storage: starch, oil, protein) colour, storage
Endoplasmic reticulum (ER) network of membranes; rough ER (ribosomes attached) and smooth ER rough — protein synthesis; smooth — lipid synthesis, detoxification
Golgi apparatus (Golgi complex) stacks of flattened sacs (discovered by Camillo Golgi) packaging, modifying and secretion of materials
Lysosomes small sacs with digestive enzymes "suicide bags"; digest worn-out organelles and foreign material
Ribosomes tiny granules (RNA + protein) protein synthesis ("protein factories")
Vacuoles fluid-filled sacs storage; in plants, maintain turgidity
Centrosome / centrioles in animal cells help in cell division (form the spindle)
Peroxisomes vesicles break down hydrogen peroxide, fatty acids

Key points: Mitochondria and chloroplasts have their own DNA and ribosomes and can multiply on their own (the "semi-autonomous" organelles). Ribosomes are found in both prokaryotic and eukaryotic cells. Tonoplast is the membrane of the vacuole. A plasmid is a small circular DNA in bacteria, used in genetic engineering.

Part 2 of 2

Human Body Systems

Last reviewed 30 Sept 2026 · 11 min read

Overview

The human body is organised as cells → tissues → organs → organ systems. Each system does a specific job, but all work together to maintain homeostasis (a steady internal environment).

Digestive system

Digestion is the breakdown of complex food into simple, absorbable substances.

Alimentary canal: mouth → pharynx → oesophagus → stomach → small intestine (duodenum, jejunum, ileum) → large intestine (colon, rectum) → anus. Associated glands: salivary glands, liver, pancreas.

Region Action and enzymes
Mouth teeth grind food; saliva has the enzyme salivary amylase (ptyalin), which starts digestion of starch into maltose; pH about 6.8
Oesophagus peristalsis moves the food down
Stomach gastric juice: hydrochloric acid (kills bacteria, makes the medium acidic for pepsin), pepsin (protein → peptides), rennin (curdles milk in infants), and mucus (protects the wall); food becomes chyme
Liver (largest gland; ~1.5 kg) secretes bile (stored in the gall bladder) — emulsifies fats and neutralises acid; also stores glycogen, makes urea, detoxifies, makes plasma proteins
Pancreas pancreatic juice: trypsin (proteins), amylase (starch), lipase (fats); also secretes insulin and glucagon (an endocrine function)
Small intestine (about 6–7 m long) final digestion by intestinal juice (succus entericus); absorption by villi (finger-like projections that increase the surface area)
Large intestine absorbs water and salts; forms faeces
  • Carbohydrates → glucose; proteins → amino acids; fats → fatty acids and glycerol.
  • The appendix is a small vestigial organ at the junction of the small and large intestines.
  • Enzymes: biological catalysts (proteins) that speed up reactions; work at specific pH and temperature (pepsin: acidic; trypsin: alkaline).
  • Ptyalin — mouth; pepsin — stomach; trypsin, lipase, amylase — pancreas; lactase — small intestine (lactose intolerance).

Respiratory system

  • Path of air: nose → pharynx → larynx (voice box; contains the vocal cords) → trachea (windpipe, supported by C-shaped cartilage rings) → bronchi → bronchioles → alveoli (tiny air sacs; exchange of gases takes place here; about 300–500 million in the lungs).
  • The diaphragm and intercostal muscles help breathing. Inhalation: the diaphragm contracts and moves down, ribs go up and out; exhalation is the reverse.
  • Breathing rate: about 12–20 times per minute at rest. Oxygen is carried by haemoglobin; most carbon dioxide is carried as bicarbonate in plasma.
  • Air composition: inhaled — about 21 % O₂, 0.04 % CO₂; exhaled — about 16 % O₂ and about 4 % CO₂.
  • Respiration at the cellular level (cellular respiration): occurs in mitochondria. Anaerobic respiration (without oxygen) gives lactic acid in muscles (cramps) and ethanol + CO₂ in yeast.
  • Diseases: asthma (narrowing of bronchioles), pneumonia, tuberculosis (TB), bronchitis, emphysema, silicosis and asbestosis (occupational).

Circulatory system

  • Heart: a muscular organ, about the size of a fist, located slightly left in the chest; weighs about 300 g; has four chambers — two atria (upper, receive blood) and two ventricles (lower, pump blood). The left ventricle has the thickest wall (pumps blood to the whole body). The right side carries deoxygenated blood to the lungs; the left side carries oxygenated blood to the body. Valves prevent backflow. Normal heart rate is about 72 beats per minute at rest; normal blood pressure is about 120/80 mm Hg (systolic/diastolic), measured with a sphygmomanometer. The natural pacemaker is the sino-atrial (SA) node. ECG records the heart's electrical activity.
  • Double circulation: blood passes twice through the heart in one full circuit (pulmonary circulation: heart → lungs → heart; systemic circulation: heart → body → heart).
  • Blood vessels: arteries (carry blood away from the heart; thick, elastic walls; the pulmonary artery carries deoxygenated blood), veins (carry blood to the heart; thin walls, valves; the pulmonary vein carries oxygenated blood), capillaries (thin; exchange of materials).
  • Blood (about 5–6 litres in an adult; 7–8 % of body weight):
Component Function
Plasma (about 55 %, mostly water) carries nutrients, hormones, wastes, proteins (albumin, fibrinogen)
Red blood cells (RBCs / erythrocytes) contain haemoglobin (an iron-containing protein) to carry oxygen; no nucleus in mammals; made in the bone marrow; life about 120 days; destroyed in the spleen (the "graveyard of RBCs"); about 5 million per mm³
White blood cells (WBCs / leucocytes) fight infection (immunity); about 4,000–11,000 per mm³
Platelets (thrombocytes) blood clotting; about 1.5–4 lakh per mm³
  • Blood groups (ABO system, Karl Landsteiner, 1901): A, B, AB, O. O is the universal donor, AB is the universal recipient. The Rh factor (Rhesus) is present (Rh⁺) or absent (Rh⁻). Rh incompatibility can affect a second pregnancy (a mother Rh⁻ and a foetus Rh⁺).
  • Haemoglobin low → anaemia (iron deficiency). Normal Hb: about 13–17 g/dL in men, 12–15 g/dL in women. Haemophilia (blood does not clot; a sex-linked genetic disorder).
  • Lymphatic system: lymph, lymph nodes, spleen, and thymus; helps in immunity and returns fluid to the blood.
  • The spleen is the largest lymphatic organ. Heart attack (myocardial infarction) results from a blocked coronary artery; atherosclerosis is the hardening/blocking of arteries by cholesterol.

Finished reading? Test yourself.

A timed chapter test from the SSC JE Civil series, on exactly this chapter.

Practice this chapter →