Strategies for Enhancement in Food Production Class 12 Notes - CBSE Biology Chapter 9

Chapter summary

Strategies for Enhancement in Food Production explains how science raises the quantity and quality of food from animals, plants and microbes rather than just using more land. It covers animal husbandry, animal breeding (inbreeding, outbreeding, AI and MOET), apiculture and fisheries on the animal side, and plant breeding, single-cell protein and tissue culture on the plant side. For NEET it is a high-scoring, fact-heavy Biology chapter where examples like Hisardale sheep, biofortified varieties and disease-resistant crops are frequently asked.

Chapter notes
🃏 Flash Cards: Strategies for Enhancement in Food Production

Class 12 Biology · Chapter 9 – swipe through all 10 cards to understand the whole chapter.

🌾Start here1/10

Why Enhance Food Production?

The chapter is about getting more, healthier food from animals, plants and microbes using science, not just more land or animals.

Animal husbandry + Plant breeding + SCP/Tissue culture → more food

India + China hold ~70% of world livestock but give only ~25% of farm produce — a management gap.

  • Two tracks: animal-based (husbandry, breeding, apiculture, fisheries) and plant-based (breeding, SCP, tissue culture)
  • Goal: higher yield + better quality + disease/pest resistance
  • Green Revolution (food grains) ↔ Blue Revolution (aquaculture)
🐄Core concept2/10

Animal Husbandry & Farm Management

Scientific, hygienic, record-based management of livestock so the same animals yield more, safer produce.

Three pillars: good breeds · balanced feeding · hygiene/healthcare

Bird flu (avian influenza) is a POULTRY concern — not dairy or fisheries.

  • Dairy: high milk yield + quality; cleanliness of cattle AND handlers is most stressed (milk is consumed raw)
  • Poultry: disease-free breeds, safe housing, feed, disease prevention
  • Balanced ration = roughage + concentrates + clean water; regular vet visits + records
🧬Core concept3/10

Animal Breeding: Inbreeding vs Outbreeding

A breed is a group of animals of common descent with similar traits; breeding improves yield and quality.

Inbreeding → ↑homozygosity; too much → inbreeding depression

Inbreeding depression (↓fertility/productivity) is the OPPOSITE of heterosis/hybrid vigour.

  • Inbreeding: mate close relatives (4–6 generations); exposes recessives so selection can remove them
  • Outbreeding: out-crossing (same breed, no common ancestor 4–6 gens), cross-breeding, interspecific hybridisation
  • A single out-cross can reverse inbreeding depression
🐏Must-know facts4/10

Cross-Breeds & Assisted Reproduction

Classic examples and the techniques that spread superior genes fast.

Hisardale = Bikaneri ewes × Marino rams · Mule = mare × male donkey

In MOET, FSH causes super-ovulation (6–8+ eggs) — not lactation or higher milk fat.

  • Hisardale sheep = cross-breeding; Mule = interspecific hybridisation (horse × donkey)
  • AI: superior bull’s semen introduced into female tract — one bull sires thousands
  • MOET: FSH → 6–8+ eggs, fertilise, recover embryos, transfer to surrogate mothers
🐝Core concept5/10

Apiculture (Bee-keeping)

Rearing honeybees for honey and beeswax — and free crop pollination.

Apis indica = common reared honeybee in India

Hives near crops help MAINLY by pollination → higher yield; bees do not fix nitrogen.

  • Products: honey (food/medicine) + beeswax (cosmetics, polishes)
  • Place hives near sunflower, apple, pear, Brassica during flowering → more crop + better honey
  • Low investment; needs flower-rich location and gentle management
🐟Core concept6/10

Fisheries & the Blue Revolution

Catching, rearing, processing and selling fish, prawns, crabs and molluscs for food.

Freshwater: Catla, Rohu, Common carp · Marine: Hilsa, Sardine, Mackerel, Pomfret

Aquaculture = rearing aquatic organisms; Pisciculture = fish culture specifically.

  • Blue Revolution = boosting fish output via aquaculture (parallel to Green Revolution)
  • Induced breeding via hormonal stimulation solves the quality fish-seed shortage
  • Examiners mix freshwater vs marine lists — keep the trio (Catla/Rohu/carp) freshwater
🌱Core concept7/10

Plant Breeding: Steps

Purposeful crossing and selection to build varieties with higher yield, quality and resistance.

Variability → parent selection → cross-hybridisation → select recombinants → release

Wrong step-order options are a common NEET trap — memorise the sequence.

  • Step 1: collect variability (germplasm); Step 3: cross-hybridise selected parents
  • Green Revolution: semi-dwarf high-yield wheat & rice
  • India = M.S. Swaminathan; international semi-dwarf wheat = Norman Borlaug
🛡️Must-know facts8/10

Resistant & Biofortified Varieties

Bred-in disease/pest resistance and nutrient enrichment — high-frequency one-mark facts.

Himgiri (wheat) → leaf/stripe rust · Pusa Swarnim → white rust · Pusa Shubhra → black rot

Biofortification = nutrient enrichment; don’t confuse with bioremediation/biomagnification.

  • Pest resistance from morphology (hairy leaves) + biochemicals; e.g. Pusa Sem 2 & 3 flat bean
  • Biofortification: wheat Atlas 66 (high protein); maize hybrids rich in lysine + tryptophan
  • Pair each variety to its disease — examiners scramble these
🦠Advanced9/10

Single-Cell Protein (SCP)

Protein from fast-growing microbial biomass — an alternative protein source on cheap substrates.

Examples: Spirulina · Methylophilus methylotrophus · Fusarium

A 250 kg cow gives ~200 g protein/day; 250 g of Methylophilus could (theoretically) give 25 tonnes/day.

  • Microbes double in hours and are protein-rich — eases pressure on agriculture
  • Grow on cheap/waste substrates (e.g. Spirulina on wastewater)
  • Hurdles remain: taste, texture and acceptability
🧪Advanced10/10

Tissue Culture & Micropropagation

Growing cells/tissues on a sterile nutrient medium to regenerate whole plants — built on totipotency.

Totipotency: single cell → whole plant · clones = somaclones

Use totipotency (plants), not pluripotency (an animal stem-cell term).

  • Micropropagation: thousands of genetically identical clones (somaclones); explant = plant part used to start
  • Meristem culture → virus-free plants (apical meristem is virus-free): banana, sugarcane, potato
  • Somatic hybridisation: fuse protoplasts of two species → hybrid (e.g. pomato)
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Q1NEET 2021
Which of the following is NOT a step in Multiple Ovulation Embryo Transfer Technology (MOET)?
Correct answer: A. In MOET the cow is given an FSH-like hormone (not LH-like) to induce super-ovulation, so she releases 6-8 or more eggs. She is then mated or artificially inseminated, and the early 8-32 cell embryos are recovered and transferred to surrogate mothers. The LH-like statement in (A) is therefore the wrong step.
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Q2NEET 2021
Which of the following is NOT an objective of biofortification in crops?
Correct answer: B. Biofortification breeds crops for higher levels of vitamins, proteins and micronutrients/minerals to improve public health. Improving disease resistance is an aim of disease-resistance breeding, NOT of biofortification, so (B) is the odd one out.
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Q3NEET 2021
Match List-I with List-II and choose the correct option. List-I: A. Protoplast fusion, B. Plant tissue culture, C. Meristem culture, D. Micropropagation. List-II: 1. Totipotency, 2. Pomato, 3. Somaclones, 4. Virus-free plants.
Correct answer: B. Protoplast fusion (somatic hybridisation) gives the Pomato (2); plant tissue culture rests on Totipotency (1); meristem culture yields Virus-free plants (4); micropropagation produces genetically identical clones called Somaclones (3). So A-2, B-1, C-4, D-3, i.e. option (B).
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Q4NEET 2021
Mutations in plant cells can be induced by:
Correct answer: C. Gamma rays are high-energy ionising radiation that damage DNA and induce mutations, the basis of mutation breeding. Kinetin and zeatin are cytokinins (growth regulators), and infrared is non-ionising and does not induce mutations. Hence (C).
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Q5NEET 2019
Mad cow disease (Bovine Spongiform Encephalopathy) in cattle is caused by an organism which has:
Correct answer: B. Mad cow disease (BSE) is caused by prions, which are abnormally folded proteins. Inert crystalline structure describes a typical virus crystal; free RNA without a coat is a viroid; free DNA is not the cause. Prions are infectious proteins, so (B) is correct.
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Q6NEET 2019
Which of the following statements about methanogens is NOT correct?
Correct answer: C. Methanogens are strictly ANAEROBIC archaebacteria; they cannot grow aerobically, so (C) is the incorrect statement. They live in the rumen of cattle (and in their dung), break down cellulose-rich material anaerobically, and produce methane, which is used to make biogas.
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Q7NEET 2019
Select the INCORRECT statement regarding inbreeding.
Correct answer: D. Inbreeding depression CAN be overcome by outbreeding (a single out-cross with an unrelated animal usually restores fertility and yield), so statement (D) is incorrect. The other three statements are true: inbreeding exposes and lets us eliminate deleterious recessives, helps evolve purelines, and in excess causes inbreeding depression.
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Q8NEET 2016
Among the following edible fishes, which one is a MARINE fish rich in omega-3 fatty acids?
Correct answer: D. Mackerel is a marine fish rich in omega-3 fatty acids. Mystus, Mangur (Clarias) and Mrigala are freshwater fishes. Hence the marine, omega-3-rich choice is Mackerel (D).
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Q9NEET 2014
To obtain virus-free healthy plants from a diseased one by tissue culture, which part/parts of the diseased plant will be taken?
Correct answer: C. Both apical and axillary meristems are generally free of virus (strong interferon-like activity and the virus cannot keep pace with the fast-dividing meristematic cells), so culturing them yields virus-free plants. Hence (C).
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Q10NEET 2007
Which one of the following pairs is mismatched?
Correct answer: A. Pearl is obtained from the pearl oyster (Pinctada vulgaris), not from Pila globosa (a freshwater snail). The other pairs are correct: Apis indica gives honey, Kerria/Kenia lacca gives lac, and Bombyx mori gives silk. So (A) is mismatched.
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Frequently Asked Questions

What is the difference between inbreeding and outbreeding in animals?

Inbreeding is the mating of closely related animals of the same breed for 4 to 6 generations, which increases homozygosity and helps remove harmful recessive traits but can cause inbreeding depression. Outbreeding is breeding of unrelated animals through out-crossing, cross-breeding or interspecific hybridisation, and even a single out-cross can reverse inbreeding depression.

What is MOET and how does it help in animal breeding?

MOET stands for Multiple Ovulation Embryo Transfer Technology. A cow is given FSH-like hormones to induce super-ovulation, producing 6 to 8 or more eggs that are fertilised and recovered as embryos, then transferred to surrogate mothers, so a high-yielding female can produce many offspring quickly.

What is biofortification and why is it important?

Biofortification is breeding crops to have higher levels of vitamins, minerals, proteins or healthier fats to improve public nutrition. Examples include wheat variety Atlas 66 rich in protein and maize hybrids rich in lysine and tryptophan, and it should not be confused with bioremediation or biomagnification.

Is Strategies for Enhancement in Food Production important for NEET?

Yes, it is part of the NEET Biology syllabus and is considered a high-yield scoring chapter because the questions are mostly direct, fact and example based. Commonly asked points include cross-breed examples like Hisardale sheep, disease-resistant varieties like Himgiri wheat, the steps of plant breeding, and SCP examples.

What is the difference between the Green Revolution and the Blue Revolution?

The Green Revolution boosted production of food grains such as semi-dwarf high-yielding wheat and rice through plant breeding. The Blue Revolution boosted fish and other aquatic food production through aquaculture and improved fisheries management.

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