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Biocontrol Biofertilisers

🎓 Class 12 Biology CBSE Theory Ch 8 – Microbes in Human Welfare ⏱ ~14 min
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આ MCQ મોડ્યુલ આના પર આધારિત છે: Biocontrol Biofertilisers

આ મૂલ્યાંકન આના પર આધારિત હશે: Biocontrol Biofertilisers

મૂલ્યાંકન બનાવવામાં તેમની સામગ્રી સામેલ કરવા ચિત્રો, PDF અથવા Word દસ્તાવેજ અપલોડ કરો.

Biocontrol Biofertilisers

10.10 Microbes as Biocontrol Agents

Modern agriculture's heavy reliance on chemical pesticides and herbicides has caused environmental contamination, biodiversity loss, and human health problems. Biocontrol refers to the use of biological methods — pest-eating organisms or pest-killing microbes — for controlling plant diseases and pests, replacing or reducing chemical pesticides.

Biocontrol uses (i) predators (ladybird beetles, dragonflies), (ii) parasites (parasitic wasps), and (iii) microbial agents — the focus of this section.

Bacillus thuringiensis (Bt) — the Insect-Killer Bacterium

Bacillus thuringiensis (Bt) is a bacterium that produces crystalline protein toxins (Cry proteins) during sporulation. These toxins, when ingested by certain insect larvae (butterflies, beetles, flies), dissolve in the alkaline midgut and kill the larva by perforating its gut.

How Bt is used:

  • Spore preparations are sprayed on Brassica, fruit trees, etc. The larvae of butterflies and moths that eat these leaves are killed.
  • Bt cotton, Bt brinjal — the Cry gene is transferred into the plant genome. The plant produces its own insecticide in its tissues. No spraying required.

Trichoderma — the Fungal Biocontrol Agent

Trichoderma species are free-living fungi commonly found in root ecosystems. They are effective biocontrol agents of several plant pathogens — particularly soil-borne fungi like Fusarium, Pythium, Rhizoctonia.

Mechanism: Trichoderma coils around and digests the pathogenic fungus (mycoparasitism); it also secretes antifungal molecules; and it stimulates the plant's own defence systems.

Baculoviruses — Viral Pesticides

Baculoviruses are pathogens that attack insects and other arthropods. The majority of baculoviruses used as biocontrol belong to the genus Nucleopolyhedrovirus (NPV). They are excellent candidates for IPM (Integrated Pest Management) because:

  • Species-specific — kill only the target insect; do not harm other organisms.
  • Have no negative impact on plants, mammals, birds, fish or non-target insects (bees, predators).
  • Useful especially when only one pest needs to be eliminated and beneficial fauna preserved.
A. Bacillus thuringiensis Bt + Cry crystal (spore + toxin) ↓ ingested by larva Insect larva (caterpillar) Toxin perforates gut → dies Used: Bt cotton, sprays on Brassica B. Trichoderma Pathogen Trichoderma coils & digests Secretes antifungal molecules Boosts plant defence Controls Fusarium, Pythium C. Baculoviruses (NPV) Larva infected by virus → Liquefies within days SPECIES-SPECIFIC Safe for bees, birds, mammals Ideal for IPM programs
Fig. 10.5: Three microbial biocontrol agents — (A) Bt bacterium releases Cry crystal toxin that kills insect larvae; (B) Trichoderma fungus coils around and digests pathogenic fungi; (C) Baculovirus is a species-specific insect virus ideal for IPM.

10.11 Microbes as Biofertilisers

Biofertilisers are organisms that enrich the nutrient quality of soil. The main sources of biofertilisers are bacteria, fungi and cyanobacteria. Their use is critical for the long-term productivity of soils — chemical fertilisers degrade soil health over time, while biofertilisers improve it.

Nitrogen-Fixing Bacteria

Rhizobium are bacteria that have symbiotic association with the roots of leguminous plants (gram, pea, peanut, soybean, clover). They form root nodules where atmospheric nitrogen (N₂) is fixed into ammonia (NH₃) — a form usable by plants.

Free-living nitrogen-fixers (not requiring a host plant):

  • Azospirillum, Azotobacter — soil bacteria that fix atmospheric N₂ and provide it to crops.

Cyanobacteria (Blue-Green Algae)

Many cyanobacteria — Anabaena, Nostoc, and Oscillatoria — are autotrophic AND fix atmospheric nitrogen. They are abundant in paddy fields. Anabaena often lives in symbiosis with the water fern Azolla — together they enrich paddy fields with nitrogen.

Mycorrhiza — Fungal Roots

Mycorrhiza = "fungus root" — symbiotic association between fungi and plant roots. The fungus colonises the root surface and surroundings; in return for sugars from the plant, the fungal hyphae extend far into the soil and absorb water, phosphorus and other nutrients.

Major group: Fungal genus Glomus forms vesicular arbuscular mycorrhiza (VAM) — the most common mycorrhiza in agricultural crops.

Benefits to plant:

  • Absorbs phosphorus from soil and passes to plant (P is often the limiting nutrient).
  • Resistance to root-borne pathogens.
  • Tolerance to salinity, drought.
  • Overall increased plant growth and development.
Soil surface Root nodules harbour Rhizobium bacteria Inside a nodule Rhizobium bacteroids fix N₂ N₂ + 8H⁺ + 8e⁻ → 2 NH₃ + H₂ Catalysed by nitrogenase Plant gets ammonia → amino acids; Rhizobium gets sugars Legumes: pea, gram, peanut, soybean
Fig. 10.6: Rhizobium-Legume symbiosis. The bacterium lives in pink-coloured root nodules where the enzyme nitrogenase fixes atmospheric N₂ into NH₃ — supplying the plant with nitrogen and enriching the soil.

Summary Table — Biofertiliser Types

TypeExampleRoleCrops benefited
Symbiotic N-fixerRhizobiumFixes N₂ in legume root nodulesPea, gram, peanut, soybean, clover
Free-living N-fixerAzotobacter, AzospirillumFix N₂ in soil; release for crop useWheat, maize, rice, vegetables
Cyanobacterial N-fixer (autotrophic)Anabaena, Nostoc, OscillatoriaPhotosynthesis + N₂ fixationPaddy fields (rice)
Symbiotic with AzollaAnabaena-AzollaFloats on paddy water; fixes N₂ + grows biomassRice
MycorrhizaGlomus (VAM)Absorbs P + minerals; root protectionMost crops, fruit trees, forestry

🎯 Interactive: Biofertiliser Picker

Pick a crop / need and see which biofertiliser is best:

Best agent:

Type:

Mechanism:

📐 Activity 10.4 — Plan an Organic Farm

Setup: A 2-hectare farm wants to convert from chemical to organic agriculture. Crops: rice, wheat, soybean, tomato.

Predict: Which biofertiliser and biocontrol agents would you recommend for each crop?
  1. List biofertiliser for each crop.
  2. List biocontrol for major pests of each crop.
  3. What soil-test parameters should the farmer monitor?
CropBiofertiliserBiocontrol
Rice (paddy)Anabaena-Azolla; AzospirillumTrichoderma (rice blast); Bt for stem borer
WheatAzotobacter; Mycorrhiza (P)Trichoderma (root rot)
Soybean (legume)Rhizobium; MycorrhizaBt (defoliator); Baculovirus (heliothis)
TomatoMycorrhiza; AzospirillumTrichoderma (Fusarium wilt); Baculovirus (fruit borer)

Soil monitoring: pH (target 6.0-7.5), organic carbon (target >0.5%), available N/P/K, microbial biomass.

10.12 Worked Examples

Worked Example 10.12.1

Why is Rhizobium classified as a biofertiliser? Describe its mode of action in one paragraph.

Rhizobium is a biofertiliser because it enriches soil with usable nitrogen by symbiotic biological N₂ fixation. It lives in root nodules of leguminous plants (pea, gram, peanut, soybean). Inside the nodule, the bacterium converts atmospheric N₂ into NH₃ using the enzyme nitrogenase: N₂ + 8H⁺ + 8e⁻ → 2 NH₃ + H₂. The plant absorbs ammonia and incorporates it into amino acids. In return, the plant supplies sugars to the bacterium. After harvest, the residual N enriches the soil — which is why pulses are often rotated with cereals in Indian farming.

Worked Example 10.12.2

What is special about baculoviruses as biocontrol agents compared with broad-spectrum chemical insecticides?

Species-specificity is the key advantage. A baculovirus typically infects only ONE species of insect — the target pest — sparing all other organisms. By contrast, chemical insecticides (e.g., organophosphates) kill all insects in the area, including beneficial ones — bees, ladybirds, parasitic wasps, predators — disturbing the entire ecosystem. Other benefits of baculoviruses:

  • No residue on the harvest.
  • No effect on plants, mammals, birds, fish.
  • Persist in the environment, attacking only future pest generations.
  • Fit perfectly into Integrated Pest Management (IPM).

Worked Example 10.12.3

A wheat farmer applies Azotobacter biofertiliser. After harvest, his neighbouring soybean farmer applies Rhizobium. Why are the two different N-fixers used for different crops?

The two bacteria have different lifestyles:

  • Azotobacter is a free-living aerobic N-fixer. It works in any soil, not requiring a host plant. Therefore ideal for non-legume cereals like wheat, maize, rice.
  • Rhizobium is a symbiotic N-fixer. It requires a host legume to form root nodules. Therefore used only for legumes (soybean, pea, gram, peanut).

Using the wrong one wastes money — Rhizobium applied to wheat would not form nodules and would die in the soil; Azotobacter alone with soybean is much less effective than the nodule-forming Rhizobium.

Competency-Based Questions

Q1. The major nutrient absorbed by mycorrhizal fungi and supplied to the plant is: L1 Remember

  • (a) Nitrogen
  • (b) Phosphorus
  • (c) Potassium
  • (d) Sodium
(b) Phosphorus. Mycorrhizal hyphae extend deep into soil and solubilise/absorb the often-limiting P. Some also help with N, micronutrients and water.

Q2. Match: (1) Bacillus thuringiensis (2) Trichoderma (3) Baculoviruses (4) Glomus. (a) Mycorrhiza (b) Cry toxin against insect larvae (c) NPV — species-specific virus (d) Mycoparasite of soil fungi. L2 Understand

1→(b) Bt — Cry toxin kills larvae. 2→(d) Trichoderma — mycoparasite of pathogenic fungi. 3→(c) Baculoviruses — NPV, species-specific. 4→(a) Glomus — VAM mycorrhiza.

Q3. Why are paddy fields particularly fertile for rice when Anabaena-Azolla is present? L3 Apply

Azolla is a small floating water fern that hosts the cyanobacterium Anabaena in its leaf cavities. The Anabaena fixes ~30 kg N/hectare/season into ammonia, while the Azolla biomass shades algae growth (controls weeds) and decomposes after rice harvest, releasing additional nitrogen and organic matter into the soil. This is a powerful, free, eco-friendly biofertilisation for rice that reduces urea use by 30-50%.

Q4. Analyse: Compare biocontrol with chemical pesticides on three criteria: environmental safety, target specificity, cost. L4 Analyse

CriterionChemical pesticideBiocontrol
Environmental safetyPersistent residues, water contamination, kills non-target organismsBiodegradable, safe for non-targets and humans
Target specificityBroad spectrum — kills both pests and beneficial insectsHighly specific — kills only target pest
CostHigh recurring cost; rising due to resistanceInitial cost moderate; long-term cheaper as it self-replicates

Trade-off: Chemical pesticides offer quick knock-down for severe outbreaks; biocontrol gives sustainable long-term control. Integrated Pest Management combines both wisely.

Q5. HOT (Create): Design a "Microbe Mela" stall to teach farmers about biocontrol + biofertilisers. List 4 demonstrations. L6 Create

4 Live Demonstrations:
  1. Root-nodule dig-out: Show fresh legume plants — let farmers pull them up to see the pink nodules and explain Rhizobium fixing N inside.
  2. Trichoderma-Fusarium plate: Two Petri plates — one with only pathogen growing well; another co-inoculated with Trichoderma showing the pathogen suppressed.
  3. Bt larvae demo: Two sets of caterpillars on Brassica leaves — one set with Bt-sprayed leaves (dying within 48h), control set healthy.
  4. Azolla pond: Small water tray with Azolla; show the velvety carpet on top and pull-out demo of nitrogen-rich biomass.
Hand-outs: Brochure with prices, application doses, and where to buy at local KVK/agricultural office.

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: Baculoviruses are excellent biocontrol agents for Integrated Pest Management.

R: Baculoviruses are highly species-specific, killing only the target insect.

Answer: (A). Both true and R explains A. Species-specificity is what makes them safe for non-target organisms — the essence of IPM.

A: Crop rotation with legumes improves soil fertility.

R: Legumes harbour Rhizobium in their root nodules, fixing atmospheric N₂.

Answer: (A). Both true and R explains A. Residual N from a legume crop directly benefits the next non-legume crop.

A: Mycorrhiza increases the drought tolerance of host plants.

R: Fungal hyphae extend far into soil, increasing the effective water-absorbing surface.

Answer: (A). Both true and R explains A. The vast hyphal network reaches water otherwise inaccessible to the root system.

Frequently Asked Questions - Biocontrol Biofertilisers

What is the main concept covered in Biocontrol Biofertilisers?
In NCERT Class 12 Biology Chapter on Microbes in Human Welfare, "Biocontrol Biofertilisers" covers the core biological structures, processes, and pathways students need for board exam success. The MyAiSchool lesson explains the topic with definitions, labelled diagrams, comparison tables, and interactive simulations. Scientific terminology and physiological/genetic significance are highlighted throughout to build conceptual depth aligned with CBSE 2025-26 syllabus.
How is Biocontrol Biofertilisers useful in real-life or applied biology?
Real-life applications of "Biocontrol Biofertilisers" from NCERT Class 12 Biology Microbes in Human Welfare include medical diagnostics, agriculture, biotechnology, public health, evolutionary insights, and ecological monitoring. The MyAiSchool lesson links every biological concept to a tangible application so students see biology as a problem-solving framework for living systems and real-world challenges.
What are the key terms students should memorize for Biocontrol Biofertilisers?
Key terms in "Biocontrol Biofertilisers" (NCERT Class 12 Biology Microbes in Human Welfare) are tabulated in the MyAiSchool key-terms grid. Students should memorize each term with its precise definition, function, and example. Terminology is high-yield in CBSE board exams — 1-mark MCQs and 2-mark short answers test definitions directly. The Summary section provides a printable quick-reference card.
How does this part connect to other parts of the chapter?
NCERT Class 12 Biology Microbes in Human Welfare is structured so each part builds biological understanding sequentially. "Biocontrol Biofertilisers" connects to neighbouring parts via shared mechanisms, structural hierarchies, and physiological processes. The MyAiSchool lesson cross-references related concepts with internal links so students can navigate the whole chapter as one connected biological story rather than disconnected fragments.
What types of CBSE board questions come from Biocontrol Biofertilisers?
CBSE board questions from "Biocontrol Biofertilisers" typically include: (1) 1-mark MCQs on definitions and processes, (2) 2-mark short-answer differences/comparisons, (3) 3-mark labelled-diagram questions, (4) 5-mark long-answer essays combining mechanism + diagram + significance. The MyAiSchool lesson tags each Competency-Based Question (CBQ) with Bloom level (L1-L6) so students know how to study for each weight.
How can students use the interactive simulation effectively?
The interactive simulation in the "Biocontrol Biofertilisers" lesson allows students to explore biological processes, classifications, or pathways using selectors and sliders, with live visual feedback. To use it effectively: (1) explore each option/state, (2) compare with textbook diagrams, (3) note the function/outcome changes, (4) try the integrated practice quiz. The simulation reinforces visual-spatial understanding that pure text-based study cannot.
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