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NCERT Exercises and Solutions: Plant Kingdom

🎓 Class 11 Biology CBSE Theory Ch 3 – Plant Kingdom ⏱ ~8 min
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NCERT Exercises and Solutions: Plant Kingdom

📋 Chapter Summary

Plant Kingdom — Key Takeaways

  • Classification systems: Artificial (few characters, e.g., Linnaeus's sexual system) → Natural (totality of features, e.g., Bentham & Hooker) → Phylogenetic (evolutionary relationships, DNA-based).
  • Algae: Chlorophyll-bearing, simple, thalloid, autotrophic, mostly aquatic. 3 classes — Chlorophyceae (green: starch/cellulose), Phaeophyceae (brown: mannitol+laminarin/algin), Rhodophyceae (red: floridean starch/polysulphate).
  • Bryophytes: "Amphibians of plant kingdom." Gametophyte dominant. No vascular tissue. Sex organs multicellular (antheridium, archegonium). Liverworts (Marchantia) and Mosses (Funaria).
  • Pteridophytes: First true vascular plants. Sporophyte dominant. Need water for fertilization (motile sperm). Most are homosporous; some heterosporous (Selaginella, Salvinia).
  • Gymnosperms: Naked seeds (in cones, not fruits). Pollen tube — END of water dependence! Heterosporous. Examples: Cycas, Pinus, Ginkgo, Sequoia.
  • Angiosperms: Flowering plants. Seeds in fruits. Double fertilization: 2n zygote + 3n endosperm. Two classes: Dicots (2 cotyledons, reticulate venation, tap root) and Monocots (1 cotyledon, parallel venation, fibrous root).
  • Alternation of generations: Universal in plants — gametophyte (n) ↔ sporophyte (2n). Trend through evolution: gametophyte reduction + sporophyte dominance.

🔑 Key Terms

PhycologyStudy of algae
ThallusPlant body not differentiated into root, stem, leaf
IsogamyFusion of similar gametes
AnisogamyFusion of dissimilar-sized motile gametes
OogamyFusion of small motile sperm + large non-motile egg
AntheridiumMale sex organ (multicellular)
ArchegoniumFemale sex organ (flask-shaped)
GametophyteHaploid (n) sex-organ-bearing phase
SporophyteDiploid (2n) spore-producing phase
SporangiaSpore-producing structures
SoriClusters of sporangia (in ferns)
HeterosporyTwo spore types (mega + micro)
Pollen tubeCarries male gametes; ends water dependence
Double fertilization2n zygote + 3n endosperm; unique to angiosperms
Dicot2 cotyledons; reticulate venation
Monocot1 cotyledon; parallel venation

📝 NCERT Exercises (Worked Solutions)

Exercise 1

What is the basis of classification of algae?

Algae are classified into 3 main classes — Chlorophyceae (green), Phaeophyceae (brown), Rhodophyceae (red) — based on:
  1. Major photosynthetic pigments: Chlorophyll a, b (Chlorophyceae); fucoxanthin (Phaeophyceae); phycoerythrin (Rhodophyceae).
  2. Reserve food materials: Starch, mannitol/laminarin, floridean starch respectively.
  3. Cell wall composition: Cellulose; cellulose+algin; cellulose+pectin+polysulphate esters.
  4. Number, position, and type of flagella on motile cells (zoospores or gametes).

Exercise 2

When and where does reduction division take place in the life cycle of a liverwort, a moss, a fern, a gymnosperm and an angiosperm?

In all land plants, meiosis (reduction division) occurs during spore formation in the sporophyte. Specifically:
PlantWhere meiosis occurs
LiverwortIn the capsule of the sporophyte (spore mother cells → spores)
MossIn the capsule of the sporophyte (spore mother cells → spores)
FernIn the sporangia on sporophylls of sporophyte (spore mother cells → spores)
GymnospermIn microsporangia (microspores) and megasporangia (megaspores) of cones
AngiospermIn the anthers (microspores → pollen) and ovules (megaspores → embryo sac mother cell)

Exercise 3

Name three groups of plants that bear archegonia. Briefly describe the life cycle of any one of them.

Three groups bearing archegonia: Bryophytes, Pteridophytes, and Gymnosperms.

Life cycle of a Moss (bryophyte):
  1. Spore (n) germinates → filamentous protonema (n).
  2. Protonema produces buds → leafy gametophyte (n) — dominant phase.
  3. Gametophyte develops antheridia (♂) and archegonia (♀) at apex.
  4. Antherozoids swim through water → enter archegonium → fertilize egg.
  5. Zygote (2n) → divides by mitosis → multicellular sporophyte (2n) with foot, seta, capsule.
  6. Spore mother cells in capsule undergo MEIOSIS → haploid spores.
  7. Spores released, germinate → cycle restarts.

Exercise 4

Mention the ploidy of the following: protonemal cell of a moss; primary endosperm nucleus in dicot, leaf cell of a moss; prothallus cell of a fern; gemma cell in Marchantia; meristem cell of monocot, ovum of a liverwort, and zygote of a fern.

Cell / StructurePloidyReason
Protonemal cell of mossn (haploid)Part of gametophyte
Primary endosperm nucleus (PEN) in dicot3n (triploid)Result of double fertilization (sperm n + 2 polar nuclei n+n)
Leaf cell of mossn (haploid)Part of leafy gametophyte
Prothallus cell of fernn (haploid)Prothallus = gametophyte
Gemma cell in Marchantian (haploid)Asexual bud on gametophyte
Meristem cell of monocot2n (diploid)Part of sporophyte (the plant body)
Ovum of liverwortn (haploid)Female gamete
Zygote of fern2n (diploid)Result of fertilization (n + n = 2n)

Exercise 5

Write a note on economic importance of algae and gymnosperms.

Economic Importance of Algae:
  1. Photosynthesis & oxygen: Algae fix at least 50% of total CO₂ on Earth — major oxygen producers.
  2. Food: 70+ marine algal species used as food: Porphyra (nori for sushi), Laminaria, Sargassum.
  3. Hydrocolloids: Agar (from Gelidium, Gracilaria) — culture media, ice creams, jellies. Alginic acid (from brown algae) — food thickener. Carrageenan (from Chondrus crispus) — milk products.
  4. Food supplements: Chlorella and Spirullina — protein-rich, used by space travellers.
  5. Iodine: Marine algae like Laminaria are a commercial source.
Economic Importance of Gymnosperms:
  1. Timber: Pine, deodar, fir, spruce — major commercial wood.
  2. Paper: Most paper pulp comes from gymnosperm trees.
  3. Resin and turpentine: From pines.
  4. Tannins: From bark of gymnosperms — used in leather industry.
  5. Edible parts: Pinus gerardiana seeds (chilgoza nuts).
  6. Medicines: Ephedra yields ephedrine (decongestant). Taxus brevifolia yields taxol (anti-cancer).
  7. Ornamentals: Cycas, Thuja, Araucaria in landscaping.

Exercise 6

Both gymnosperms and angiosperms bear seeds, then why are they classified separately?

Although both bear seeds, they differ in many fundamental ways:
FeatureGymnospermsAngiosperms
Seed exposureNaked (exposed on cone scales)Enclosed in fruit
FlowersAbsent (only cones)Present
OvaryAbsentPresent
FruitAbsentPresent (develops from ovary)
FertilizationSingleDouble (unique!)
EndospermHaploid (n), pre-fertilizationTriploid (3n), post-fertilization
Vessels in xylemAbsent (only tracheids; exception: Ephedra)Present
Companion cells in phloemAbsentPresent
Conclusion: The differences are too fundamental to merge them. Angiosperms represent a distinct evolutionary lineage with the flower as a defining innovation.

Exercise 7

What is heterospory? Briefly comment on its significance. Give two examples.

Heterospory: The phenomenon of producing two distinct types of spores: microspores (small, develop into male gametophytes) and megaspores (large, develop into female gametophytes).

Significance:
  1. Evolution toward seeds: Heterospory is considered the evolutionary precursor to the seed habit. Megaspore retention on the parent plant + female gametophyte development within parent tissue → eventually evolved into the ovule and then seed.
  2. Sexual differentiation: Establishes male/female differentiation at the spore level itself.
  3. Parental nutrition: Megaspore retention allows parental investment in offspring.
  4. Better protection: Female gametophyte protected within megasporangium.
Examples: Selaginella and Salvinia — among pteridophytes. (All gymnosperms and angiosperms are also heterosporous.)

Exercise 8

Explain briefly the following terms with suitable examples: (i) protonema (ii) antheridium (iii) archegonium (iv) diplontic (v) sporophyll (vi) isogamy.

(i) Protonema: The first filamentous stage in the development of moss gametophyte from a spore. Creeping, branched, green, alga-like. Buds on protonema develop into the leafy gametophyte. Example: in Funaria.

(ii) Antheridium: Multicellular male sex organ in bryophytes, pteridophytes, and gymnosperms. Produces motile, biflagellate male gametes (antherozoids). Example: present at the apex of leafy moss shoots.

(iii) Archegonium: Multicellular, flask-shaped female sex organ in bryophytes, pteridophytes, gymnosperms. Produces a single egg at its base (venter). Example: present in Marchantia, Funaria, Cycas.

(iv) Diplontic: A life cycle where the sporophyte (2n) is the dominant, photosynthetic, free-living phase, and the gametophyte (n) is reduced and dependent on sporophyte. Example: all seed plants (gymnosperms and angiosperms). The reverse is haplontic (most algae).

(v) Sporophyll: A modified leaf bearing or subtending sporangia. May form clusters called strobili or cones. Examples: pine cone scales (megasporophylls), fern leaves with sori on undersides, stamens and carpels of flowers.

(vi) Isogamy: Sexual reproduction where the two fusing gametes are similar in size, shape, and behavior. The gametes may both be motile or both non-motile. Examples: Spirogyra (non-motile isogametes), some species of Chlamydomonas (motile isogametes).

Exercise 9

Differentiate between: (i) red algae and brown algae (ii) liverworts and moss (iii) homosporous and heterosporous pteridophyte.

(i) Red algae vs Brown algae:
FeatureRed algae (Rhodophyceae)Brown algae (Phaeophyceae)
Major pigmentPhycoerythrinFucoxanthin
Reserve foodFloridean starchMannitol, laminarin
Cell wallCellulose + polysulphate estersCellulose + algin
FlagellaAbsentTwo unequal lateral flagella (on motile cells)
ExamplesPolysiphonia, Porphyra, GracilariaEctocarpus, Sargassum, Laminaria, Fucus
(ii) Liverworts vs Moss:
FeatureLiverwortsMoss
BodyThalloid or leafy (dorsiventral)Differentiated into stem and leaves
ProtonemaAbsentPresent (alga-like filamentous stage)
Asexual reproductionFragmentation, gemmae in gemma cupsFragmentation, buds on protonema
SporophyteSimple (foot, seta, capsule); seta sometimes absentMore elaborate; capsule with peristome teeth
ExamplesMarchantia, Riccia, PelliaFunaria, Polytrichum, Sphagnum
(iii) Homosporous vs Heterosporous pteridophytes:
FeatureHomosporousHeterosporous
Spore typesOne type onlyTwo types (microspore + megaspore)
GametophyteBisexual (one type)Two unisexual gametophytes (male + female)
Megaspore retentionSpores dispersed; gametophyte free-livingMegaspore often retained on parent
ExamplesMost ferns, Equisetum, LycopodiumSelaginella, Salvinia
Evolutionary significanceAncestral conditionPrecursor to seed habit

Exercise 10

Match the following (column I with column II):
(a) Chlamydomonas (i) Moss
(b) Cycas (ii) Pteridophyte
(c) Selaginella (iii) Algae
(d) Sphagnum (iv) Gymnosperm

Column IColumn IIMatch
(a) Chlamydomonas(iii) AlgaeUnicellular green alga (Chlorophyceae)
(b) Cycas(iv) GymnospermNaked-seed plant; ovules on megasporophylls
(c) Selaginella(ii) PteridophyteHeterosporous pteridophyte with microphylls
(d) Sphagnum(i) MossBryophyte (peat moss)
Final answer: a-iii, b-iv, c-ii, d-i.

Exercise 11

Describe the important characteristics of gymnosperms.

Important characteristics of gymnosperms:
  1. Naked seeds: Ovules are NOT enclosed by an ovary wall. Seeds remain exposed on cone scales (megasporophylls). The defining feature.
  2. Vascular plants: Have well-developed xylem (only tracheids; vessels absent except in Ephedra) and phloem (no companion cells).
  3. Sporophyte dominant: The plant body is the sporophyte (2n); gametophytes are reduced.
  4. Heterosporous: Produce microspores (→ pollen) and megaspores (→ ovule).
  5. Cones (strobili): Reproductive structures. Male strobili bear microsporophylls; female strobili bear megasporophylls.
  6. Pollen tube: Carries male gametes to ovule — eliminates need for water in fertilization.
  7. Wind pollination: Massive pollen production; no flower attractants needed.
  8. Endosperm: Haploid (n) — formed from female gametophyte BEFORE fertilization.
  9. Reduced gametophytes: Female gametophyte develops within megasporangium; male gametophyte = highly reduced pollen grain.
  10. Long-lived: Many gymnosperms are perennial trees (some living thousands of years).
  11. Adaptations to extreme environments: Needle-like leaves, thick cuticle, sunken stomata to reduce water loss.
  12. Examples: Cycas, Pinus, Cedrus, Ginkgo, Sequoia, Ephedra, Taxus.
Number: ~1,000 living species. Dominant in Carboniferous era; today still important in cold/dry regions (boreal forests).
🎓 Chapter 3 Complete! You've now traced the entire evolutionary journey of plants — from simple algae through bryophytes, pteridophytes, and gymnosperms to flowering plants. Each group represents key innovations that solved real ecological problems. Next chapter (Animal Kingdom) will take a similar evolutionary tour through animals!

Frequently Asked Questions - NCERT Exercises and Solutions: Plant Kingdom

What are the most-asked NCERT exercise questions in Chapter 3 Plant Kingdom?
NCERT Class 11 Biology Chapter 3 Plant Kingdom exercises cover definitions, classification, structure-function relationships, labelled diagrams, and application-based questions. The MyAiSchool exercise set provides full step-by-step solutions for every NCERT question, aligned with the CBSE board exam pattern. Students should master scientific terminology, diagram labelling, and concept comparison tables to score full marks.
How should students approach labelled diagram questions in Plant Kingdom?
For labelled diagram questions in NCERT Class 11 Biology Chapter 3 Plant Kingdom: (1) draw a clean, large, proportional diagram with sharp pencil lines, (2) label each part with horizontal lines on the right or left side, (3) use scientific terminology (Latin/Greek names where applicable), (4) write a 1-2 line description below if asked. The MyAiSchool solutions provide editable reference diagrams aligned with NCERT textbook figures.
What types of CBSE board questions come from Chapter 3?
CBSE Class 11 Biology board questions from Chapter 3 (Plant Kingdom) typically include: (1) 1-mark MCQs on definitions and classification, (2) 2-mark short-answers on structure-function or comparisons, (3) 3-mark labelled-diagram questions, (4) 5-mark long-answer essays combining diagram + description + significance. The MyAiSchool exercise set tags each question by mark weight and Bloom level (L1-L6).
How do I compare two biological concepts in 5-mark questions?
For 5-mark comparison questions in NCERT Class 11 Biology Chapter 3: (1) use a two-column table with feature headings down the left side, (2) compare on at least 5-6 features (structure, function, location, examples, significance), (3) include one labelled diagram if relevant, (4) end with one line on biological significance. The MyAiSchool solutions follow this CBSE-aligned tabular format consistently for full marks.
What are common mistakes in Chapter 3 exercises?
Common mistakes in NCERT Class 11 Biology Chapter 3 (Plant Kingdom) include: (1) confusing similar scientific names or terminology, (2) skipping diagram labels or drawing too small, (3) missing examples in classification questions, (4) writing essay-style answers when a table is expected, (5) forgetting to mention biological significance. The MyAiSchool solutions highlight these traps so students avoid losing marks unnecessarily.
How does the MyAiSchool solution differ from other NCERT solution sets?
MyAiSchool Class 11 Biology Chapter 3 Plant Kingdom solutions use NEP 2024-aligned pedagogy with Bloom Taxonomy tagged questions (L1 Remember to L6 Create), step-by-step working with biological reasoning, fully labelled SVG diagrams, comparison tables, interactive simulations, and Competency-Based Questions (CBQs) for board exam practice. Each solution is verified against NCERT textbook and CBSE marking schemes.
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