આ MCQ મોડ્યુલ આના પર આધારિત છે: NCERT Exercises and Solutions: Microbes in Human Welfare
NCERT Exercises and Solutions: Microbes in Human Welfare
આ મૂલ્યાંકન આના પર આધારિત હશે: NCERT Exercises and Solutions: Microbes in Human Welfare
મૂલ્યાંકન બનાવવામાં તેમની સામગ્રી સામેલ કરવા ચિત્રો, PDF અથવા Word દસ્તાવેજ અપલોડ કરો.
NCERT Exercises and Solutions: Microbes in Human Welfare
10.13 Chapter Summary
Microbes are tiny but indispensable allies of human welfare. They live everywhere — soil, water, air, and our bodies — and contribute in countless beneficial ways. This chapter explored their roles in household products, industrial fermentations, sewage treatment, biogas production, biocontrol, and biofertilisers.
Household products
Curd — Lactobacillus; Bread — Saccharomyces cerevisiae; Idli/Dosa — Leuconostoc + yeast; Swiss cheese — Propionibacterium sharmanii; Roquefort — Penicillium roqueforti; Toddy from palm sap.
Industrial — Beverages
Wine, beer, cider — fermented, not distilled; Whisky, brandy, rum — fermented + distilled. Saccharomyces cerevisiae is the workhorse yeast.
Industrial — Antibiotics
Penicillin discovered by Fleming (1928); developed by Florey + Chain. Cyclosporin A (transplant immunosuppressant) from Trichoderma polysporum; statins from Monascus purpureus.
Industrial — Other
Citric acid (Aspergillus niger), acetic acid (Acetobacter), butyric acid (Clostridium); streptokinase clot-buster (Streptococcus, engineered).
Sewage Treatment
Primary (physical) → Secondary (aerobic flocs → BOD reduction) → Settling tank → Anaerobic sludge digester (biogas).
Biogas
Methanogens like Methanobacterium; fixed-dome KVIC/Deenbandhu plant; CH₄ + CO₂ + H₂S; cooking fuel + slurry manure.
Biocontrol
Bt (Cry toxin) — insect larvae; Trichoderma — soil-borne fungal pathogens; Baculoviruses (NPV) — species-specific viral pesticide.
Biofertilisers
Symbiotic N-fixer: Rhizobium (legumes). Free-living: Azospirillum, Azotobacter. Cyanobacteria: Anabaena, Nostoc, Oscillatoria (paddy). Mycorrhiza: Glomus — phosphorus.
10.14 Key Terms — Quick Glossary
| Term | One-line definition |
|---|---|
| Lactobacillus | LAB; converts milk to curd via lactic acid |
| Saccharomyces cerevisiae | Brewer's/Baker's yeast — bread, wine, beer |
| Propionibacterium sharmanii | Swiss cheese — releases CO₂ → holes |
| Penicillium roqueforti | Roquefort blue cheese — mould veins |
| Toddy | Fermented palm sap drink |
| Distillation | Concentrating ethanol from fermented broth |
| Penicillin | First true antibiotic — Fleming 1928 |
| Cyclosporin A | Immunosuppressant from Trichoderma polysporum |
| Statins | Cholesterol-lowering — Monascus purpureus |
| Streptokinase | Blood-clot dissolver — Streptococcus |
| BOD | Biochemical oxygen demand — pollution indicator |
| Activated sludge | Microbial flocs settled in STP |
| Methanogens | Methane-producing anaerobic bacteria |
| Biogas | CH₄ + CO₂ + H₂S from anaerobic digestion |
| Bt | Bacillus thuringiensis — Cry-toxin biocontrol |
| Trichoderma | Biocontrol fungus against soil pathogens |
| Baculoviruses | Species-specific insect viruses (NPV) |
| Rhizobium | Symbiotic N-fixer in legume nodules |
| Mycorrhiza | Plant-fungus symbiosis (P absorption) |
| Anabaena-Azolla | N-fixing cyanobacteria for paddy |
🎯 Interactive: Master Microbe Identifier
Pick the role and instantly see microbe + key product:
Microbe: —
Key fact: —
Setup: Build a single-page concept map covering all microbes in Chapter 8.
- Place "Microbes in Human Welfare" at the centre.
- Draw 6 main branches: Household | Beverages | Antibiotics | Sewage/Biogas | Biocontrol | Biofertilisers.
- Add 2-4 specific microbe + product names under each branch.
- Look for repeats!
Cross-category microbes:
- Saccharomyces cerevisiae — bread (household) + wine + beer + whisky (industrial beverages).
- Penicillium — P. roqueforti (Roquefort cheese, household) + P. notatum (penicillin, antibiotic).
- Lactobacillus — curd (household) + cheese ripening + lactic acid (industrial).
- Methanobacterium — sewage sludge digester + biogas plant — same anaerobic process.
- Trichoderma polysporum — cyclosporin A (antibiotic-like) + Trichoderma harzianum (biocontrol of plant fungi).
This shows how nature uses a few versatile microbes for many different services.
10.15 NCERT Exercise — Worked Solutions
Q1. Bacteria cannot be seen with the naked eye, but these can be seen with the help of a microscope. If you have to carry a sample from your home to your biology laboratory to demonstrate the presence of microbes under a microscope, which sample would you carry and why? L3
I would carry a sample of curd (dahi) from home. Reasons:
- Curd is rich in living Lactobacillus bacteria — easy to find dense rod-shaped cells under the microscope.
- Sample preparation is simple: spread a thin smear on a slide, stain with methylene blue, observe under 100× oil immersion.
- Sample is safe to handle — no pathogens; just food-grade bacteria.
- You can also demonstrate the process by comparing fresh milk (very few bacteria) with curd (millions).
Alternatives: yoghurt, idli batter, kombucha, bread dough.
Q2. Give examples to prove that microbes release gases during metabolism. L2
- Bread dough rising: Saccharomyces cerevisiae ferments sugar → CO₂ + ethanol. CO₂ bubbles cause the dough to puff up.
- Idli/dosa batter rising: Leuconostoc, Streptococcus + yeast ferment urad/rice → CO₂ traps in batter, makes idlis soft.
- Swiss-cheese holes: Propionibacterium sharmanii produces CO₂ during ripening; CO₂ trapped in cheese paste forms holes.
- Biogas plant: Methanogens digest organic matter → CH₄ + CO₂ + H₂S = biogas.
- Sewage sludge digester: Same process — gases bubble up.
Q3. In which food would you find lactic acid bacteria? Mention some of their useful applications. L2
Lactic acid bacteria (LAB) — mainly Lactobacillus, Lactococcus, Streptococcus — are found in:
- Curd / yoghurt
- Cheese (during initial fermentation)
- Idli / dosa batter (with Leuconostoc)
- Fermented pickles, sauerkraut, kimchi
- Buttermilk
Useful applications:
- Convert milk → curd, increasing vitamin B12 and digestibility.
- Check growth of disease-causing microbes in our stomach (probiotic effect).
- Preserve food by lowering pH (pickling, fermentation).
- Industrial production of lactic acid (food, biodegradable plastics).
- Used in cheese ripening.
Q4. Name some traditional Indian foods made of wheat, rice and Bengal gram (or their products) which involve use of microbes. L1
- Wheat: Bhatura (yeast-leavened), kulcha, naan, bread, pizza dough — all rise due to Saccharomyces cerevisiae.
- Rice: Idli, dosa, dhokla (with chickpea), appam, neer dosa — fermented batters with Leuconostoc, Streptococcus + yeast.
- Bengal gram (chana/besan): Dhokla (with rice/semolina), khaman, papdi — fermented with LAB.
- Mixed: Kanji (fermented carrot drink), kulhad lassi, mithai, certain pickles, vadi/badi (sun-fermented).
Q5. In which way have microbes played a major role in controlling diseases caused by harmful bacteria? L2
Microbes have provided antibiotics — chemical substances produced by one microbe that kill or inhibit other microbes, especially disease-causing bacteria.
- Penicillin from Penicillium notatum — discovered by Fleming (1928); developed by Chain & Florey for WWII soldiers; saved millions from wound infection deaths.
- Streptomycin from Streptomyces griseus — TB treatment.
- Tetracycline, erythromycin, gentamicin, kanamycin — all from soil microbes.
Before antibiotics, diseases like pneumonia, syphilis, plague and tuberculosis were major killers. Antibiotics added ~20 years to average human life expectancy in the 20th century and made surgery, cancer chemotherapy, and organ transplantation possible.
Q6. Name any two species of fungus used in the production of the antibiotics. L1
- Penicillium notatum / P. chrysogenum → Penicillin.
- Cephalosporium acremonium → Cephalosporin.
(Many bacteria of the genus Streptomyces are also important antibiotic producers — streptomycin, tetracycline, neomycin etc.)
Q7. What is sewage? In which way can sewage be harmful to us? L2
Sewage = the municipal waste-water generated daily from kitchens, bathrooms, industries and storm drains. It contains large amounts of organic matter and pathogenic microbes.
Harmful effects if untreated:
- Spreads waterborne diseases — typhoid, cholera, dysentery, hepatitis-A.
- High organic load → low dissolved O₂ in water bodies → fish kill, dead zones.
- Eutrophication of rivers/lakes by N and P.
- Foul odour, breeding ground for mosquitoes and houseflies.
- Contaminates groundwater used for drinking.
Q8. What is the key difference between primary and secondary sewage treatment? L2
| Criterion | Primary | Secondary |
|---|---|---|
| Nature | Physical (mechanical) | Biological (microbial) |
| Process | Filtration, settling | Aeration + flocs |
| What's removed | Suspended solids, scum | Dissolved organic matter |
| BOD reduction | 30-40% | ~90% |
| Microbes used | None | Aerobic bacteria + fungi (flocs) |
Primary alone is insufficient; secondary is essential before discharge.
Q9. Do you think microbes can also be used as a source of energy? If yes, how? L3
Yes. Microbes generate energy by producing biofuels.
- Biogas: Methanogens (e.g., Methanobacterium) digest organic matter anaerobically → methane + CO₂. Used as cooking fuel, electricity, vehicle fuel (Bio-CNG).
- Bioethanol: Yeast (Saccharomyces cerevisiae) ferments sugar/starch → ethanol, blended with petrol (E5, E10).
- Hydrogen: Certain microalgae and bacteria produce H₂ gas via biophotolysis.
- Microbial fuel cells (MFCs): Electroactive bacteria transfer electrons to an electrode while metabolising organic matter — generates electricity directly from wastewater.
Q10. Microbes can be used to decrease the use of chemical fertilisers and pesticides. Explain how this can be accomplished. L3
Replacing chemical fertilisers (biofertilisers):
- Rhizobium — fixes N₂ in legume root nodules (peas, gram, soybean).
- Azotobacter, Azospirillum — free-living N-fixers for non-legume crops.
- Anabaena, Nostoc, Oscillatoria — cyanobacterial N + carbon fixers for paddy.
- Glomus (mycorrhiza) — absorbs P, water, micronutrients.
Replacing chemical pesticides (biocontrol):
- Bacillus thuringiensis — Cry toxin against insect larvae; foundation of Bt cotton.
- Trichoderma — controls soil-borne fungi (Fusarium, Pythium).
- Baculoviruses (NPV) — species-specific viral kills only the target pest.
- Pheromone traps + predator release also part of IPM.
Benefits: Lower chemical residues, healthier soil, sustainable productivity, biodiversity preservation.
Q11. Three water samples — pond water, distilled water, river water — are checked for BOD. Arrange in increasing order of BOD and justify. L4
Increasing BOD: Distilled water < Pond water < River water (polluted river).
- Distilled water — pure H₂O, no microbes, no organic matter. BOD ≈ 0.
- Pond water — some microbes and algae; modest organic matter. BOD low to moderate.
- River water — particularly downstream of cities — receives sewage and effluents; high microbial load. BOD high.
Note: The order assumes the river is in/near a city; an unpolluted Himalayan stream could have lower BOD than a stagnant pond.
Q12. Name some microbes that are part of "Bioactive Molecules" used by humans for medical or industrial use. L1
| Bioactive molecule | Microbe | Use |
|---|---|---|
| Penicillin | Penicillium notatum | Antibiotic |
| Cyclosporin A | Trichoderma polysporum | Immunosuppressant for transplants |
| Statins | Monascus purpureus | Cholesterol lowering |
| Streptokinase | Streptococcus (engineered) | Clot buster (heart attack) |
| Citric acid | Aspergillus niger | Food/beverage acidulant |
| Acetic acid | Acetobacter aceti | Vinegar production |
| Butyric acid | Clostridium butylicum | Plastics, perfumes |
| Lactic acid | Lactobacillus | Food, biodegradable plastics |
| Lipase | Various microbes | Bio-detergent enzyme |
Competency-Based Questions
Q1. Choose the INCORRECT statement: L2 Understand
Q2. Which microbe is the source of cyclosporin A, and what is the role of this drug? L2 Understand
Q3. What is the role of activated sludge in a sewage treatment plant? L3 Apply
Q4. Analyse: A farmer applied chemical fertiliser for 10 years; soil yield dropped despite increasing doses. Diagnose and recommend a microbial solution. L4 Analyse
- Stop chemical urea/DAP gradually; introduce biofertilisers — Rhizobium for legume crop rotation, Azospirillum/Azotobacter for cereals.
- Mycorrhiza inoculant (Glomus) at sowing — restores P uptake and root health.
- Cyanobacterial cake (Anabaena-Azolla) for rice fields.
- Trichoderma soil drench — restores beneficial soil microflora; suppresses pathogens.
- Compost + farmyard manure — feeds the resident soil microbes.
Within 2-3 seasons, organic matter rebuilds and yield recovers.
Q5. HOT (Create): Design a 7-day "Microbes Around Us" awareness week for a school. List one activity per day. L6 Create
- Day 1 — Curd lab: Set curd at different temperatures; observe under microscope.
- Day 2 — Bread workshop: Make dough with and without yeast; compare rise.
- Day 3 — Fleming play: Skit on accidental discovery of penicillin.
- Day 4 — Sewage walk: Visit a local STP or Yamuna outfall; discuss BOD.
- Day 5 — Biogas mini-plant: Build a 5-L bottle digester with cow dung; collect gas in balloon; light it.
- Day 6 — Rhizobium dig: Pull up gram/pea plants from school garden; identify nodules; section under microscope.
- Day 7 — Microbe Mela: Stalls showcasing each chapter topic; quiz competition; awards.
Assertion–Reason Questions
Choose: (A) Both true, R explains A. (B) Both true, R doesn't explain A. (C) A true, R false. (D) A false, R true.
A: Anaerobic sludge digesters at STPs produce biogas as a useful by-product.
R: Methanogens like Methanobacterium ferment the sludge in absence of oxygen, generating methane.
A: Bt cotton plants do not need foliar insecticide spraying for bollworms.
R: Bt cotton expresses the Cry gene from Bacillus thuringiensis in its tissues, producing the insecticidal protein on its own.
A: Cyclosporin A is a powerful antibiotic widely used to treat bacterial infections.
R: Cyclosporin A is isolated from Trichoderma polysporum.