1. Systems of Classification & Botanical Terminology
A. Systems of Classification
| Classification Type | Key Features & Basis | Proposed By / Sub-branches |
|---|---|---|
| 1. Artificial System | Earliest system based on superficial morphological traits (habitat, color, leaf shape) and vegetative structure $+$ androecium. Drawback: Separated closely related species; gave equal weightage to vegetative and reproductive characters (vegetative characters are easily affected by environment). | Carolus Linnaeus |
| 2. Natural System | Based on natural affinities considering both external and internal features (ultrastructure, anatomy, embryology, phytochemistry). | Bentham & Hooker |
| 3. Phylogenetic System | Based on evolutionary relationships and common ancestry. Most accepted & advanced system. • Numerical Taxonomy: Uses computer software; codes assigned to 100s of observable characters. Equal weightage given. • Cytotaxonomy: Based on cytological information (chromosome number, structure, behavior). • Chemotaxonomy: Based on plant chemical constituents (DNA, RNA, proteins, aromatic compounds). | Engler & Prantl, Hutchinson |
B. Key Plant Kingdom Terminology
- Gametophyte ($n$): Multicellular haploid phase producing gametes ($n$) via Mitosis.
- Sporophyte ($2n$): Multicellular diploid phase producing spores ($n$) via Meiosis (Except Algae where zygote undergoes meiosis).
- Spermatophyta: Seed-bearing plants $\to$ Gymnosperms & Angiosperms.
- Archegoniate: Female sex organ (Archegonium) bearing plants $\to$ Bryophytes, Pteridophytes, Gymnosperms.
- Tracheophyta: Vascular bundle (Xylem & Phloem) bearing plants $\to$ Pteridophytes, Gymnosperms, Angiosperms.
- Embryophyta: Plants producing embryo ($\text{Zygote} \to \text{Embryo}$) $\to$ Bryophytes to Angiosperms (Algae excluded!).
- Cryptogamae vs. Phanerogamae: Cryptogamae have hidden sex organs (Algae, Bryo, Pterido); Phanerogamae have exposed sex organs (Gymno, Angio).
C. Overview of Algae (Thallophyta)
- Simple, thalloid, autotrophic, chlorophyll-bearing, aquatic (freshwater & marine) gametophytes. Non-embryonic, atracheophyte, cryptogamic.
- Associations: Symbiotic with Fungi ($\to$ Lichens) or Epizootic on Animals (e.g., Sloth bear).
- Forms: Colonial ($\text{Volvox}$), Filamentous ($\text{Ulothrix, Spirogyra}$), Massive kelps (up to $100\text{ meters}$).
- Reproduction & Gametes:
• Isogamous non-flagellated: $\text{Spirogyra}$.
• Isogamous flagellated: $\text{Ulothrix}$.
• Anisogamous: $\text{Eudorina}$.
• Oogamous: $\text{Volvox, Fucus}$.
- Economic Uses: Fixes $50\%$ of global $\text{CO}_2$; Hydrocolloids $\to$ Algin (brown algae), Carrageen (red algae), Agar-Agar (from $\text{Gelidium}$ and $\text{Gracilaria}$). Single cell protein $\to$ $\text{Chlorella}$. Food $\to$ $\text{Sargassum, Laminaria, Porphyra}$.
2. Classification of Algae & Introduction to Bryophytes
A. Comparative Table of Algae Classes
| Feature | Chlorophyceae (Green Algae) | Phaeophyceae (Brown Algae) | Rhodophyceae (Red Algae) |
|---|---|---|---|
| Major Pigments | Chlorophyll $a, b$. | Chlorophyll $a, c$, Carotenoids, Fucoxanthin (Olive green to brown). | Chlorophyll $a, d$, r-Phycoerythrin (Red color). |
| Stored Food | Starch inside Pyrenoids (Protein $+$ Starch); oil droplets. | Complex carbohydrates: Laminarin & Mannitol. | Floridean Starch (Similar in structure to amylopectin & glycogen). |
| Cell Wall | Inner Cellulose $+$ Outer Pectose. | Inner Cellulose $+$ Outer gelatinous coat of Algin. | Cellulose, Pectin & Polysulfate esters. |
| Flagella & Motility | 2–8 equal, apical flagella. | 2 unequal, lateral flagella (Heterokont). Pear-shaped zoospore/gametes. | ABSOLUTELY ABSENT (Non-motile spores and non-motile gametes!). |
| Examples | Chlamydomonas, Volvox, Ulothrix, Spirogyra, Chara. | Ectocarpus, Dictyota, Laminaria, Sargassum, Fucus (Kelps). Body has Holdfast, Stipe, Frond. | Polysiphonia, Porphyra, Gracilaria, Gelidium. Complex post-fertilization development. |
B. Bryophytes (“Amphibians of Plant Kingdom”)
- Thalloid or erect, 1st Embryophytes, Atracheophytes, Aspermatophytes. Homosporous.
- Live in damp, shaded soil but depend on external water for sexual reproduction (flagellated antherozoids swim to egg).
- Dominant plant body is independent, free-living Gametophyte ($n$) attached to substrate by unicellular or multicellular Rhizoids.
- Multicellular sex organs: Male Antheridium (biflagellated antherozoids) & Female flask-shaped Archegonium (single egg cell).
3. Bryophyte Classes & Pteridophytes Overview
A. Bryophyte Life Cycle & Classification
- Sporophyte ($2n$): Differentiated into Foot, Seta, Capsule. Not free-living; remains attached to and nutritionally dependent on gametophyte. Spore mother cells in capsule undergo meiosis $\to$ Haploid Spores ($n$).
- 1. Liverworts (e.g., Marchantia): Dorsiventral, flattened thallus.
• Asexual Reproduction: Fragmentation or specialized green multicellular asexual buds called Gemmae housed in Gemma Cups on dorsal thallus.
• Sex organs borne on specialized erect stalks (Antheridiophore & Archegoniophore).
- 2. Mosses (e.g., Funaria, Polytrichum, Sphagnum): Two distinct gametophytic stages:
• Juvenile Protonema Stage: Creeping, green, branched, filamentous stage developing directly from spore.
• Adult Leafy Stage: Upright, slender spiral leafy axis bearing sex organs at apex.
• Economic Importance: Sphagnum (Peat Moss) used as fuel and packing material for trans-shipment due to water holding capacity. Mosses $+$ Lichens pioneer ecological succession on bare rocks.
B. Pteridophytes (First Vascular Land Plants)
- Includes Horsetails and Ferns. 1st land plants with true vascular tissues (Xylem & Phloem). Aspermatophytes.
- Dominant phase is independent, true plant body Sporophyte ($2n$) differentiated into true roots, stem, and leaves.
- Leaves: Microphylls (small leaves; e.g., Selaginella) or Megaphylls (large fronds; e.g., Ferns).
- Sporophylls & Cones: Sporangia borne on leaf-like appendages called Sporophylls. May form compact structures called Strobili / Cones (e.g., Selaginella, Equisetum).
- Heterospory & Seed Habit Precursor:
• Most pteridophytes are Homosporous (produce identical spores).
• Selaginella and Salvinia are Heterosporous (produce Microspores $\to$ male gametophyte and Megaspores $\to$ female gametophyte).
• Retention of female gametophyte on parent sporophyte is an important step in evolution $\to$ Precursor to Seed Habit!
4. Pteridophyte Classes, Gymnosperms & Angiosperms
A. Prothallus & Pteridophyte Classes
- Prothallus: Spores germinate to form an inconspicuous, small, multicellular, free-living, photosynthetic haploid gametophyte called Prothallus. Requires cool, damp, shady places (restricts geographical distribution).
- 4 Classes of Pteridophytes:
1. Psilopsida: Psilotum.
2. Lycopsida: Selaginella, Lycopodium.
3. Sphenopsida: Equisetum (Horsetail).
4. Pteropsida: Dryopteris, Pteris, Adiantum (Walking fern).
B. Gymnosperms (“Naked Seeds”)
- Ovules not enclosed by any ovary wall; remain exposed both before and after fertilization. Seeds are naked (no fruits!).
- Phanerogams, Tracheophytes (Xylem lacks vessels, phloem lacks companion cells – contain sieve cells). All are strictly Heterosporous.
- Dominant Sporophyte ($2n$): Male and female gametophytes do not have an independent free-living existence; remain retained within sporangia on parent sporophyte.
- Endosperm in Gymnosperms: Formed before fertilization $\to$ Always Haploid ($n$)!
C. Pinus vs. Cycas Comparison
| Feature | Pinus (Conifer) | Cycas (Cycad) |
|---|---|---|
| Roots & Symbiosis | Tap roots with Mycorrhiza (Fungal association). | Specialized Coralloid Roots associated with $\text{N}_2$-fixing Cyanobacteria (BGA). |
| Stem & Leaves | Branched stem; needle-like leaves (sunken stomata, thick cuticle to reduce transpiration). | Unbranched stem; pinnately compound crown leaves. |
| Sexual Distribution | Monoecious (Male and female cones on same tree). | Dioecious (Male cones and megasporophylls on separate trees; no female cone!). |
