-> Heterotrophs ('other-feeders') cannot synthesise their own food and depend on other organisms for organic nutrients.
-> This category includes animals, fungi, and most bacteria.
- Sub-types:
• Holozoic- Ingestion of solid food, internal digestion, absorption, assimilation.
Ex: Humans, Amoeba, most animals.
• Saprotrophic- Secretes digestive enzymes onto dead organic matter; absorbs the products.
Ex: Mushrooms, Rhizopus stolonifer (bread mold).
• Parasitic- Lives in/on a host organism, draws nutrition at the host's expense.
Ex: Tapeworm, Plasmodium, Cuscuta (total stem holoparasite).
• Symbiotic- Both organisms benefit from the nutritional relationship.
Ex: Lichens (algae + fungi), legume–Rhizobium (nitrogenous fixer).
# PHOTOSYNTHESIS - The Master Anabolic Reaction
-> Photosynthesis is the biochemical process by which chlorophyll-containing organisms use light energy to convert carbon dioxide and water into glucose and oxygen.
-> Photosynthetic organisms are major contributors to atmospheric oxygen and the entry point of energy into virtually all food webs.
* Overall Equation:-
6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂ ( in presence of light energy and chlorophyll).
(Carbon dioxide +Water → Glucose + Oxygen), (More scientifically, the oxygen released comes primarily from water, not CO₂.)
-> Site of Photosynthesis: The Chloroplast
• Outer & inner membrane: Envelope enclosing the chloroplast.
• Thylakoids: Flattened membrane sacs stacked into grana; site of the light-dependent reactions.
• Stroma: Fluid-filled matrix surrounding the thylakoids; site of the light-independent reactions (Calvin cycle).
• Pigments: Chlorophyll a (primary), Chlorophyll b, carotenoids (accessory) — absorb light at different wavelengths.
Stage 1 — Light-Dependent Reactions (Thylakoid Membrane)
• Chlorophyll absorbs light (mainly red ~680 nm and blue ~450 nm).
• Water molecules are split by photolysis: 2H₂O → 4H+ + 4e– + O2 (oxygen released as byproduct).
• Excited electrons pass through the electron transport chain (ETC).
• ATP is generated via photophosphorylation (chemiosmosis driven by proton gradient).
• NADP+ is reduced to NADPH — the key reducing agent for the next stage.
Stage 2 — Light-Independent Reactions / Calvin Cycle (Stroma)
• CO2 is fixed by Rubisco onto RuBP (ribulose-1,5-bisphosphate) — the carbon fixation step.
• The 3-carbon product (3-phosphoglycerate, 3-PGA) is reduced using ATP and NADPH.
• Glyceraldehyde-3-phosphate (G3P) is produced — the building block for the glucose and other organic molecules.
•“Three turns of the Calvin cycle fix three CO₂ molecules and produce one net molecule of G3P, while the remaining G3P is used to regenerate RuBP.”
NOTE: For formation of one glucose molecule, six CO₂ molecules are required, producing two net G3P molecules that can contribute to glucose formation.
* Human Digestion (Holozoic Nutrition)
-> Digestion is the breakdown of complex insoluble food molecules into small, soluble molecules that can be absorbed into the bloodstream and used by cells.
->It involves both mechanical (physical) and chemical digestion.
| Organ | Mechanical Action | Enzymes/Secretions | Products |
| Mouth | Chewing (mastication), tongue mixing | Salivary amylase (ptyalin) — digests starch | Maltose, smaller polysaccharides |
| esophagus | Peristalsis moves bolus to stomach | No enzymes; mucus secreted | Bolus transported |
| Stomach | Churning, mixing (chyme formation) | Pepsin (from pepsinogen), gastric lipase, mucus | Protein digestion and produces smaller peptides/peptones |
| Small Intestine (Duodenum) | Segmentation contractions | Pancreatic juice: trypsin, chymotrypsin, pancreatic amylase, lipase. Bile (from liver): emulsifies fats | Fatty acids and monoglycerides are absorbed and reassembled into triglycerides |
| Small Intestine (Ileum) | Peristalsis; villi increase surface area | Intestinal juice (succus entericus): maltase, lactase, sucrase, peptidases, enterokinase | Glucose, amino acids, fatty acids, glycerol |
| Large Intestine | Absorption of water, peristalsis | Gut bacteria; no major digestive enzymes | Water/electrolytes absorbed; faeces formed |
* Absorption:
-> Absorption occurs primarily in the small intestine. The inner surface is highly folded into villi and microvilli (brush border), massively increasing absorptive surface area. Glucose and amino acids are absorbed by active transport into capillaries; fatty acids and glycerol are reassembled into triglycerides and enter lacteals (lymph capillaries) as chylomicrons.
Nutrition is a fundamental life process that enables organisms to obtain, utilise, and transform nutrients into energy and essential biomolecules required for growth, repair, reproduction, and maintenance of life. Understanding the nutrition process not only helps us appreciate the complexity of biological systems but also highlights the importance of maintaining a balanced diet for overall health and well-being.
really amazing
ReplyDeleteThank you for motivating me always .
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