Animal Physiology — Nutrition and Digestion
"Every cell in your body needs NUTRIENTS. The digestive system is how you GET them."
1. Nutrition — How Organisms Obtain Food
| Type | Description | Examples |
|---|---|---|
| Autotrophic | Make OWN food (photosynthesis) | Green plants, algae, cyanobacteria |
| Holozoic | Ingest SOLID food, digest internally | Humans, lion, frog, amoeba |
| Saprophytic | Absorb nutrients from DEAD organic matter | Fungi (mushroom, bread mould), bacteria |
| Parasitic | Live ON/IN a host, derive nutrition at host's expense | Tapeworm, Cuscuta (dodder — plant parasite), head lice |
2. The Human Digestive System — Step by Step
Step 1 — Mouth (Buccal Cavity)
Teeth: 4 types — Incisors (8, cutting). Canines (4, tearing). Premolars (8, crushing). Molars (12, grinding). Adult dental formula: 2-1-2-3 / 2-1-2-3 = 32.
Saliva: Secreted by 3 pairs of salivary glands (parotid, submandibular, sublingual). ~1-1.5 L/day. Contains SALIVARY AMYLASE (ptyalin) — begins STARCH → MALTOSE digestion. 'Chew bread for 2 minutes. It starts tasting SWEET — the amylase is breaking starch into sugar!'
Step 2 — Oesophagus (Food Pipe)
~25 cm muscular tube. Food moves by PERISTALSIS — rhythmic contraction and relaxation of muscles pushing food DOWNWARD. 'Peristalsis works AGAINST gravity. You can swallow while standing on your head!'
Step 3 — Stomach
J-shaped muscular bag. Inner lining has GASTRIC GLANDS that secrete GASTRIC JUICE: HCl (kills bacteria, provides acidic pH ~2 for pepsin). Pepsinogen (inactive) → activated by HCl → PEPSIN (active protease: Proteins → Peptides). Mucus (protects stomach lining from HCl and pepsin — prevents self-digestion). Food stays 3-4 hours → semi-liquid CHYME.
Step 4 — Small Intestine
LONGEST part (~6-7 m). Three sections: Duodenum, Jejunum, Ileum. Site of COMPLETE DIGESTION and ABSORPTION.
| Juice | Source | Key Enzymes | Action |
|---|---|---|---|
| Bile | Liver (stored in gall bladder) | NO enzymes | EMULSIFIES fats — physical breakdown of large globules into tiny droplets. Increases surface area for lipase action. |
| Pancreatic Juice | Pancreas | Trypsin, Lipase, Amylase | Trypsin: Proteins → Peptides. Lipase: Fats → Fatty acids + Glycerol. Amylase: Starch → Maltose. |
| Intestinal Juice | Intestinal glands | Maltase, Lactase, Sucrase, Peptidases | COMPLETE digestion. Maltase: Maltose → Glucose. Peptidases: Peptides → Amino acids. |
Absorption — The Villi
The inner wall of the small intestine has MILLIONS of finger-like projections called VILLI (singular: villus). Each villus contains BLOOD CAPILLARIES and a central LACTEAL (lymph vessel). Villi increase surface area ~600 times. Glucose and amino acids → absorbed into BLOOD. Fatty acids and glycerol → absorbed into LYMPH.
Step 5 — Large Intestine
Wider but SHORTER (~1.5 m). No villi. No digestive enzymes. Functions: Absorption of WATER and MINERALS (Na⁺, K⁺). Hosts BENEFICIAL BACTERIA (E. coli) that produce VITAMINS (B complex, K). Faeces formation → Rectum → Anus (EGESTION).
3. Key Enzymes Summary
| Enzyme | Source | Site | Substrate → Product | Optimal pH |
|---|---|---|---|---|
| Salivary Amylase | Salivary glands | Mouth | Starch → Maltose | ~7 (neutral) |
| Pepsin | Stomach | Stomach | Proteins → Peptides | ~2 (acidic) |
| Trypsin | Pancreas | Small intestine | Proteins → Peptides | ~8 (alkaline) |
| Lipase | Pancreas | Small intestine | Fats → FA + Glycerol | ~8 |
| Maltase | Intestinal glands | Small intestine | Maltose → Glucose | ~7.5 |
4. Common Mistakes to Avoid
- 'Bile contains enzymes' — Bile has NO enzymes. It EMULSIFIES fats (physical, not chemical).
- 'Digestion happens only in the stomach' — It BEGINS in the mouth CONTINUES in the stomach, and is COMPLETED in the small intestine.
- 'Absorption happens in the stomach' — VERY LITTLE absorption in the stomach (only alcohol, some water, aspirin). VAST MAJORITY in the SMALL INTESTINE.
- 'Enzymes work at any pH' — Each enzyme has an OPTIMAL pH. Pepsin = pH 2 (stomach). Trypsin = pH 8 (small intestine).
5. AP SSC Exam Focus
| Topic | Marks |
|---|---|
| Digestive system organs and enzymes | 4-5 |
| Types of nutrition | 2-3 |
| Villi and absorption | 2-3 |
Nutrition in AP Context
- Rice-based diet: Andhra Pradesh is the Rice Bowl. Rice is primarily CARBOHYDRATE — broken down by amylase starting in the mouth, then fully digested in the small intestine to glucose.
- Gongura and leafy greens: Rich in ROUGHAGE (fibre) — essential for digestion. Fibre is NOT digested but helps move food through the intestines and prevents constipation.
- Spicy Andhra cuisine: Spices like chilli stimulate gastric juice secretion. Moderate spice intake aids digestion — excessive intake can irritate the stomach lining.
Deficiency Diseases — A Crucial Connection
- Protein deficiency → KWASHIORKOR (swollen belly, stunted growth — common in children with inadequate protein intake).
- Protein + calorie deficiency → MARASMUS (extreme wasting, 'skin and bones').
- Iron deficiency → ANAEMIA (reduced haemoglobin — weakness, pale skin). Affects ~50% of women in India. Solved by iron-rich foods (leafy greens, dates, jaggery) and iron supplements.
- Vitamin A deficiency → NIGHT BLINDNESS. Vitamin C → SCURVY. Vitamin D → RICKETS. 'Understanding nutrition is understanding HOW to stay healthy. The digestive system chapter connects directly to public health in India.'
Respiratory System — A Preview (Linked to Digestion)
Digestion provides GLUCOSE. Respiration USES glucose to make ATP. C₆H₁₂O₆ + 6O₂ → 6CO₂ + 6H₂O + ATP. Organs: Nasal cavity → Pharynx → Larynx (voice box) → Trachea (windpipe, C-shaped cartilage rings) → Bronchi → Bronchioles → Alveoli (tiny air sacs, site of gas exchange). 'Alveoli provide a HUGE surface area (~70 m² — roughly a tennis court) for gas exchange with capillaries.'
Deep Dive — Enzyme Action and Specificity
Enzymes are BIOLOGICAL CATALYSTS — they speed up reactions without being consumed. Each enzyme is SPECIFIC to ONE substrate (lock-and-key model). Enzyme + Substrate → Enzyme-Substrate Complex → Enzyme + Product. 'An enzyme is like a key that fits only ONE lock. Amylase fits starch but not protein. Trypsin fits protein but not starch. This specificity is crucial for coordinated digestion.'
Effect of temperature on enzymes: Activity INCREASES with temperature up to an OPTIMAL point (~37°C body temperature). Above optimum: activity DROPS sharply — enzyme is DENATURED (loses its 3D shape). 'High fever (>42°C) can denature human enzymes. That's why prolonged high fever is dangerous.'
Effect of pH on enzymes: Each enzyme has an optimal pH. Pepsin (stomach): pH ~2. Trypsin (small intestine): pH ~8. Salivary amylase (mouth): pH ~7. 'HCl in the stomach denatures salivary amylase — so starch digestion stops once food enters the stomach. This is why you should chew thoroughly!'
Digestion in Other Organisms
Amoeba (Holozoic, single-celled) : Phagocytosis — pseudopodia engulf food → food vacuole → lysosomes fuse with food vacuole (deliver digestive enzymes) → digestion → absorption into cytoplasm → egestion by exocytosis.
Ruminants (Cow, Buffalo, Goat) : 4-chambered stomach — Rumen (largest — cellulose digestion by bacteria/protozoa → volatile fatty acids), Reticulum, Omasum, Abomasum (TRUE stomach — secretes gastric juice). 'Cows regurgitate and re-chew cud. The rumen is essentially a FERMENTATION VAT — symbiotic microbes digest cellulose that no animal can digest on its own.'
The Liver — The Body's Chemical Factory
Located in the upper right abdomen (~1.5 kg in adults). Functions beyond bile: Detoxifies ammonia → urea (urea cycle). Converts excess glucose → glycogen (glycogenesis — insulin-dependent). Converts glycogen → glucose when blood sugar is low (glycogenolysis — glucagon-dependent). Synthesises plasma proteins (albumin, clotting factors like fibrinogen and prothrombin). Stores vitamins A, D, B₁₂ and iron. Breaks down old RBCs (Kupffer cells). Produces HEAT (major thermogenic organ). 'The liver is the only internal organ that CAN REGENERATE. Up to 70% can be removed — it will grow back. This makes partial liver transplants possible.'
The Pancreas — Dual Organ
Exocrine function (98% of pancreas): Secretes pancreatic juice with digestive enzymes (trypsinogen, chymotrypsinogen, lipase, amylase). Endocrine function (Islets of Langerhans, ~2%): α-cells → glucagon (raises blood glucose). β-cells → insulin (lowers blood glucose). 'Damage to β-cells → insulin deficiency → Type 1 DIABETES MELLITUS. Understanding the pancreas explains one of India's most common diseases.'
Balanced Diet — Components and Importance
| Component | Function | Sources |
|---|---|---|
| Carbohydrates | ENERGY (4 kcal/g) | Rice, wheat, potatoes |
| Proteins | GROWTH and REPAIR (4 kcal/g) | Pulses, eggs, milk, meat, soya |
| Fats | ENERGY RESERVE (9 kcal/g), insulation | Oils, butter, nuts |
| Vitamins | REGULATORY — metabolic processes | Fruits, vegetables |
| Minerals | STRUCTURAL (bones) and REGULATORY | Milk, leafy greens, salt |
| Water | SOLVENT for all metabolic reactions | Water, fruits, beverages |
| Roughage/Fibre | Not digested. ADDS BULK to stool. Prevents CONSTIPATION. | Vegetables, fruits, whole grains |
Peristalsis — The Mechanism
Controlled by the ENTERIC NERVOUS SYSTEM ('second brain' — ~500 million neurons in the gut). Circular muscles contract BEHIND food → push forward. Longitudinal muscles contract to SHORTEN the segment ahead. WAVE of contraction → food moves only FORWARD. 'Peristalsis works in one direction. The ONLY exception: VOMITING — reverse peristalsis (antiperistalsis) — coordinated by the vomiting centre in the medulla oblongata.'
Comparison — Mechanical vs Chemical Digestion
| Aspect | Mechanical Digestion | Chemical Digestion |
|---|---|---|
| What happens | PHYSICAL breakdown — larger → smaller pieces | CHEMICAL breakdown — complex → simple molecules |
| Where | Mouth (chewing), Stomach (churning) | Mouth (amylase), Stomach (pepsin), Small intestine (all) |
| Tools | Teeth, muscular contractions | Enzymes, HCl, bile |
| Effect on surface area | INCREASES | Not directly — works on increased surface area |
| Water solubility | No change | Insoluble → soluble (absorbable) |
Quick Self-Test
- Dental formula of adult human? (Answer: 2-1-2-3 / 2-1-2-3 = 32 teeth.)
- Name the enzyme in saliva and its function. (Answer: Salivary amylase/ptyalin — starch → maltose.)
- Bile is produced by ___ and stored in ___. (Answer: Liver; gall bladder.)
- Where does maximum absorption occur? (Answer: Small intestine — via villi.)
- Optimal pH for pepsin? (Answer: ~2 — acidic, provided by HCl in stomach.)
- Name two protein-deficiency diseases. (Answer: Kwashiorkor and Marasmus.)
