All living organisms, from unicellular bacteria to giant mammals and plants, are constructed from carbon-based organic compounds and inorganic minerals. To analyze chemical composition:
- Extraction with Trichloroacetic Acid ($ ext{Cl}_3 ext{C-COOH}$): A living tissue sample (vegetable, leaf, or animal liver) is ground thoroughly in trichloroacetic acid using a mortar and pestle to produce a thick slurry.
- Filtration: Straining the slurry through cheesecloth separates it into two distinct biochemical pools:
- Acid-Soluble Pool (Filtrate): Contains thousands of low-molecular-weight compounds (molecular weights ranging between 18 and 800 Daltons). Termed biomicromolecules, this pool represents the soluble cytoplasmic matrix (monosaccharides, amino acids, nucleotides, organic acids).
- Acid-Insoluble Pool (Retentate): Material retained on the filter; contains high-molecular-weight polymers (molecular weights $> 10,000$ Daltons). Termed biomacromolecules, this pool comprises three polymeric classes: proteins, polysaccharides, and nucleic acids.
- The Lipid Anomaly: Lipids have molecular weights rarely exceeding 800 Da (e.g., palmitic acid MW ~256 Da, lecithin MW ~734 Da) and are technically micromolecules. However, lipids are embedded in cell membranes. Homogenization disrupts membranes into insoluble fragments that spontaneously roll into water-insoluble vesicles (liposomes). Because these vesicular aggregates cannot pass through the cheesecloth, lipids are collected in the acid-insoluble retentate.
- Ash Analysis for Inorganic Elements: A small amount of living tissue is weighed (wet weight), dried to evaporate water (dry weight), and fully incinerated. All carbonaceous compounds burn off as gaseous $ ext{CO}_2$ and water vapor. The remaining non-combustible residue is the ash, containing inorganic elements: cations ($ ext{Ca}^{2+}, ext{Mg}^{2+}, ext{K}^+, ext{Na}^+$) and anions ($ ext{PO}_4^{3-}, ext{SO}_4^{2-}, ext{Cl}^-$).
Metabolites are cellular intermediates and products of metabolic reactions:
- Primary Metabolites: Compounds that possess direct, identifiable physiological functions essential for growth, development, and basic cellular metabolism (e.g., glucose, ribose, amino acids, fatty acids, purines, pyrimidines, ATP). Found universally across all living taxa.
- Secondary Metabolites: Diverse organic compounds synthesized primarily by plants, fungi, and microbes that are not directly required for primary vegetative growth. They serve ecological roles such as chemical defense against herbivores, allelopathy, attractants for pollinators, and medicinal agents:
| Category | Representative Secondary Metabolites | Biological / Pharmacological Significance |
|---|---|---|
| Alkaloids | Morphine, Codeine | Potent analgesic and narcotic agents derived from opium poppy (*Papaver somniferum*). |
| Terpenoids | Monoterpenes, Diterpenes | Volatile aromatic defense compounds that deter insect feeding. |
| Essential Oils | Lemon grass oil, Eucalyptus oil | Antimicrobial and insect-repellent aromatic hydrocarbons. |
| Toxins | Abrin (from *Abrus precatorius*), Ricin (from castor bean) | Extremely toxic ribosome-inactivating plant proteins. |
| Lectins | Concanavalin A | Carbohydrate-binding proteins used in immunological agglutination assays. |
| Drugs | Vinblastine, Curcumin | Vinblastine (anti-cancer mitotic spindle inhibitor from *Catharanthus roseus*); Curcumin (anti-inflammatory from turmeric). |
| Polymeric Substances | Natural rubber, Gums, Cellulose | Structural and defensive biopolymers with extensive industrial applications. |