Q.Match the vitamins given in Column I with the deficiency disease they cause given in Column II. Column I (Vitamins): (A) Vitamin A; (B) Vitamin B1; (C) Vitamin B12; (D) Vitamin C; (E) Vitamin D; (F) Vitamin E; (G) Vitamin K. Column II (Diseases):
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Vitamin Classification
Water Soluble Vitamins: The First Meeting
Imagine you drop a spoonful of sugar into a glass of water. It dissolves completely, disappears into the liquid, and you can't see it anymore — but it's still there, molecule by molecule, spread evenly throughout the water. That's exactly what "water soluble" means: the substance mixes with water at the molecular level.
Now, a vitamin is a tiny organic compound your body needs in small amounts to function properly — it helps enzymes do their jobs, keeps your skin healthy, helps you see, and so on. Your body cannot make most vitamins on its own, so you must get them from food.
Put the two together: a water soluble vitamin is a vitamin that dissolves in water. This single property — solubility — determines almost everything about how these vitamins behave in your body.
The Precise Statement
Water soluble vitamins are vitamins that dissolve in water, are not stored in significant amounts in the body, and are excreted in urine when consumed in excess. They must be consumed regularly (daily or almost daily) to prevent deficiency.
The group includes the B-complex vitamins (B1, B2, B3, B5, B6, B7, B9, B12) and Vitamin C. That's 9 vitamins total.
Why Solubility Matters So Much
Think about fat. Fat and water don't mix — oil floats on top of water. Fat soluble vitamins (A, D, E, K) behave like oil: they dissolve in fat, get stored in your liver and fatty tissues, and can stay in your body for weeks or months. You don't need them every single day.
Water soluble vitamins are the opposite. Because they dissolve in water, they travel freely in your blood (which is mostly water). But your kidneys are constantly filtering your blood and removing excess water-soluble substances into urine. So if you take more Vitamin C than your body needs right now, the extra gets flushed out within hours.
This does not mean you can take unlimited amounts safely. Very high doses of some water soluble vitamins (especially B6 and niacin/B3) can cause toxicity — just not as easily as fat soluble vitamins.
The Practical Consequences
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You need them frequently — ideally every day. Missing a day won't cause immediate harm, but weeks of low intake will lead to deficiency diseases (scurvy for Vitamin C, beriberi for B1, pellagra for B3, etc.).
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Cooking destroys them — because they dissolve in water, boiling vegetables leaches vitamins into the cooking water. If you throw that water away, you lose the vitamins. Steaming or microwaving with minimal water preserves them better.
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They are fragile — heat, light, and air can break them down. That's why fresh fruits and vegetables lose vitamin content over time.
The Two Families
| Family | Members | Key Role |
|--------|---------|----------| …
Why this formula?
Vitamin Classification: Understanding the Why Behind the System
Vitamins are organic compounds that our body needs in small amounts for normal metabolism, growth, and health — but cannot synthesize in sufficient quantities. The classification system exists because it helps us understand how vitamins work and why deficiencies cause specific diseases.
Why Are Vitamins Classified This Way?
The primary classification is based on solubility — not chemical structure or function. This is because solubility determines:
- How vitamins are absorbed (with fat or water)
- How they are transported in the blood
- How they are stored in the body
- How they are excreted (risk of toxicity)
The Two Major Groups
| Group | Key Property | Why This Matters |
|---|---|---|
| Fat-soluble vitamins (A, D, E, K) | Dissolve in fats & oils | Require dietary fat for absorption; stored in liver & adipose tissue; can accumulate to toxic levels |
| Water-soluble vitamins (B-complex, C) | Dissolve in water | Absorbed directly into blood; not stored in significant amounts; excess excreted in urine (low toxicity risk) |
The Reasoning Behind Each Group
1. Fat-Soluble Vitamins (A, D, E, K)
Why they are grouped together:
- They are nonpolar molecules — they dissolve in lipids, not water.
- Absorption requires bile salts and dietary fat (emulsification).
- They travel in blood bound to carrier proteins (since blood is water-based).
- They are stored in liver and fat tissue — the body can draw on these reserves for weeks or months.
The key formula for remembering them:
All Dogs Eat Kittens
Why this matters for exams:
- Deficiency of A → night blindness (retinol needed for rhodopsin)
- Deficiency of D → rickets (calcium absorption fails)
- Deficiency of E → hemolytic anemia (antioxidant protection lost)
- Deficiency of K → bleeding (clotting factors need K)
Toxicity risk: Because they are stored, hypervitaminosis is possible (especially A and D).
2. Water-Soluble Vitamins (B-complex + C)
Why they are grouped together:
- They are polar molecules — dissolve readily in water.
- Absorption is direct into the bloodstream (no fat needed).
- They act as coenzymes — essential helpers for enzyme reactions.
- Not stored in significant amounts — excess is excreted in urine.
The key formula for remembering them:
B-complex (B₁, B₂, B₃, B₅, B₆, B₇, B₉, B₁₂) + C
Why this matters for exams:
- B₁ (thiamine) → beriberi (energy metabolism fails)
- B₃ (niacin) → pellagra (dermatitis, dementia, diarrhea)
- B₉ (folate) → neural tube defects in pregnancy
- B₁₂ (cobalamin) → pernicious anemia (needs intrinsic factor)
- C (ascorbic acid) → scurvy (collagen synthesis fails) …
Concept: Vitamin Classification – Each vitamin has a specific deficiency disease based on its biological role.
Reasoning:
- Vitamin A deficiency causes night blindness (early) and xerophthalmia (advanced).
- Vitamin B1 (thiamine) deficiency leads to beri-beri.
- Vitamin B12 deficiency causes pernicious anaemia due to impaired RBC formation.
- Vitamin C (ascorbic acid) deficiency results in bleeding gums (scurvy).
- Vitamin D deficiency causes rickets in children and osteomalacia in adults. …
This is a matching problem linking vitamins to their classic deficiency diseases. The key is to recall the specific, well-known deficiency for each vitamin — for example, Vitamin A causes night blindness and xerophthalmia, Vitamin B₁ causes beri-beri, and so on. The correct matches are: A→3,6; B→7; C→1; D→8; E→4,9; F→5; G→2.
Why This Approach Works
Vitamin-deficiency diseases are a staple of biology and chemistry exams. The trick isn't memorising every obscure symptom — it's knowing the classic, textbook pairing for each vitamin. For instance, "beri-beri" is almost always paired with Vitamin B₁ (thiamine), and "night blindness" with Vitamin A. Some vitamins cause multiple diseases (like Vitamin D causing both rickets and osteomalacia), and some diseases have only one vitamin cause (like pernicious anaemia with B₁₂). Let's work through each vitamin systematically.
Step-by-Step Matching
1. Vitamin A
This vitamin is essential for vision (as retinal) and epithelial health. Its two hallmark deficiencies are night blindness (impaired dark adaptation) and xerophthalmia (dryness of the cornea, which can lead to blindness).
→ Matches: (6) Night blindness, (3) Xerophthalmia.
2. Vitamin B₁ (Thiamine)
Thiamine is a cofactor in carbohydrate metabolism. Deficiency causes beri-beri, which affects the nervous system and heart.
→ Match: (7) Beri-beri.
3. Vitamin B₁₂ (Cobalamin)
B₁₂ is needed for red blood cell formation and nerve function. Its deficiency leads to pernicious anaemia (due to impaired absorption, often from lack of intrinsic factor).
→ Match: (1) Pernicious anaemia.
4. Vitamin C (Ascorbic acid)
Vitamin C is crucial for collagen synthesis. Deficiency causes scurvy, whose classic sign is bleeding gums (along with poor wound healing).
→ Match: (8) Bleeding gums.
5. Vitamin D
Vitamin D regulates calcium and phosphate metabolism. In children, deficiency causes rickets (soft, deformed bones). In adults, it causes osteomalacia (bone softening).
→ Matches: (4) Rickets, (9) Osteomalacia.
6. Vitamin E (Tocopherol) …
Method: Direct Association by Biological Function
This method works by recalling the specific physiological role of each vitamin and linking it to the disease caused by its deficiency.
Steps
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Recall the primary function of each vitamin (focus on the deficiency symptom, not the full metabolism).
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Match the function to the disease description in Column II.
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Eliminate duplicates — some diseases may appear for multiple vitamins (e.g., rickets and osteomalacia both involve Vitamin D).
Step-by-step matching
| Vitamin | Key function / deficiency effect | Disease in Column II |
|---|---|---|
| A | Maintains vision in dim light; deficiency causes night blindness and later xerophthalmia (dryness of cornea) | (6) Night blindness, (3) Xerophthalmia |
| B1 (Thiamine) | Needed for carbohydrate metabolism; deficiency causes beri-beri (nerve and heart issues) | (7) Beri-beri |
| B12 | Required for RBC formation and nerve function; deficiency causes pernicious anaemia | (1) Pernicious anaemia |
| C | Collagen synthesis, wound healing; deficiency causes bleeding gums (scurvy) | (8) Bleeding gums |
| D | Calcium absorption and bone mineralization; deficiency in children → rickets, in adults → osteomalacia | (4) Rickets, (9) Osteomalacia |
Here’s a breakdown of the common mistakes students make when matching vitamins to their deficiency diseases, along with how to avoid each.
Mistake 1: Confusing Vitamin A deficiency diseases
- The error: Matching Vitamin A with Night blindness (correct) but also with Xerophthalmia (also correct) — or picking only one when the question expects both. Many students forget that xerophthalmia is the advanced, severe form of Vitamin A deficiency that includes night blindness as an early symptom.
- How to avoid: Remember the progression: Night blindness (early) → Xerophthalmia (late, includes dryness and corneal damage). In matching questions, if both appear in Column II, Vitamin A matches both (6) and (3). Always check if a vitamin causes more than one listed disease.
Mistake 2: Mixing up Vitamin B₁ and Vitamin B₁₂
- The error: Matching Vitamin B₁ (thiamine) with Pernicious anaemia (which is B₁₂ deficiency) or matching Vitamin B₁₂ with Beri-beri (which is B₁ deficiency).
- How to avoid: Use a simple mnemonic:
- B₁ → Beri-beri (both start with B)
- B₁₂ → Pernicious anaemia (think “B₁₂ for blood” — it’s needed for RBC formation)
- Never swap these two.
Mistake 3: Confusing Vitamin D deficiency diseases
- The error: Matching Vitamin D only with Rickets (children) and forgetting Osteomalacia (adults), or vice versa. Some students think they are different diseases caused by different deficiencies.
- How to avoid: Know that both are caused by Vitamin D deficiency — rickets in children (bone deformities), osteomalacia in adults (softening of bones). If both (4) and (9) are in Column II, Vitamin D matches both. Write: “Vitamin D → Rickets (children) + Osteomalacia (adults).”
Mistake 4: Misplacing Vitamin K
- The error: Matching Vitamin K with Increased blood clotting time (correct) but confusing it with Vitamin E or Vitamin C. Some students think “K” stands for “clotting” (correct) but then match it to “bleeding gums” (which is Vitamin C).
- How to avoid: Remember: K for Koagulation (German spelling). Vitamin K deficiency leads to prolonged clotting time (not bleeding gums). Bleeding gums is a sign of scurvy (Vitamin C deficiency). Keep them separate.
Mistake 5: Confusing Vitamin C and Vitamin K symptoms
- The error: Matching Vitamin C with Increased blood clotting time (wrong) or Vitamin K with Bleeding gums (wrong). Both involve bleeding, but the mechanism is different.
- How to avoid:
- Vitamin C deficiency → scurvy → bleeding gums, poor wound healing.
- Vitamin K deficiency → delayed clotting → increased clotting time (internal bleeding, not specifically gums).
- Use the phrase: “C for Collagen (gums), K for Clotting (time).”
Mistake 6: Forgetting Vitamin E
- The error: Leaving Vitamin E unmatched or matching it with a disease not listed (like infertility). In this specific Column II, the correct match is Muscular weakness (5). …
- COMEDK 2026Set 2026-A1 markMCQQ. Match the characteristic from Col. I with the Vitamins given in Col. II. .tg {border-collapse:collapse;border-spacing:0;} .tg td{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px; overflow:hidden;padding:10px 5px;word-break:normal;} .tg th{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px; font-weight:normal;overflow:hidden;padding:10px 5px;word-break:normal;} .tg .tg-c3ow{border-color:inherit;text-align:center;vertical-align:top} Characteristics Vitamins A Water soluble that is not excreted easily W B2 B Prevents Cheilosis X B6 C Fat soluble Y B12 D Prevents seizures and convulsions Z E (A) A−XB−ZC−WD−Y (B) A−ZB−YC−XD−W (C) A−XB−YC−ZD−W (D) A−YB−WC−ZD−X
›Reveal solutionSolution
This is a matching problem linking vitamin characteristics (solubility, deficiency diseases) to specific B‑vitamins. The correct pairing is: A→X (B₂ is water‑soluble but not easily excreted), B→Z (B₁₂ prevents cheilosis), C→W (B₂ is fat‑soluble? No — careful: B₂ is water‑soluble; the only fat‑soluble vitamin listed is E, but E is not in the options? Actually the table shows vitamins W, X, Y, Z correspond to B₂, B₆, B₁₂, E. So C (fat‑soluble) matches Z (E), and D (prevents seizures) matches Y (B₆). Final answer is option (C).
Concept & Intuition
This question tests your knowledge of vitamin classification (water‑soluble vs. fat‑soluble) and the specific deficiency symptoms of B‑vitamins. The trick is that most B‑vitamins are water‑soluble and excreted easily, but vitamin B₁₂ is an exception — it is stored in the liver and not excreted quickly. Also, cheilosis (cracked lips) is classic for riboflavin (B₂), while seizures/convulsions point to pyridoxine (B₆) deficiency. Fat‑soluble vitamins are A, D, E, K; among the options, only vitamin E (listed as Z) fits.
Step‑by‑Step Reasoning
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Identify the vitamins in Column II
The table gives: W = B₂, X = B₆, Y = B₁₂, Z = E.
So we are matching characteristics to: B₂, B₆, B₁₂, and vitamin E.
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Analyze characteristic A: “Water soluble that is not excreted easily”
- Most water‑soluble vitamins (B‑complex, C) are excreted in urine if in excess.
- Exception: Vitamin B₁₂ is water‑soluble but is stored in the liver and excreted very slowly (via bile).
- Therefore A matches Y (B₁₂).
-
Analyze characteristic B: “Prevents Cheilosis”
- Cheilosis (inflammation and cracking of lips) is a classic sign of riboflavin (B₂) deficiency.
- So B matches W (B₂).
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Analyze characteristic C: “Fat soluble”
- Among the four, only vitamin E (Z) is fat‑soluble. B₂, B₆, B₁₂ are all water‑soluble.
- So C matches Z (E).
-
Analyze characteristic D: “Prevents seizures and convulsions” …
-
- KCET 2026Set D31 markMCQQ.Match List-I with List-IIChoose the correct answer from the options given below. (A) a – ii, b – iv, c – iii, d – i (B) a – iii, b – iv, c – i, d – ii (C) a – i, b – ii, c – iii, d – iv (D) a – iv, b – iii, c – ii, d – i
List-I (Vitamin) List-II (Deficiency disease) a. B1 i. Convulsions b. B2 ii. RBC deficiency in haemoglobin c. B6 iii. Retarded growth d. B12 iv. Burning sensation of the skin ›Reveal solutionSolution
Matching each water-soluble B-vitamin to its deficiency symptom follows from the well-established physiological role each vitamin plays.
Step 1 — Vitamin B1 (Thiamine)
Thiamine is essential for carbohydrate metabolism and normal nerve/muscle function. Its deficiency, especially in growing individuals, is classically associated with retarded growth as part of the broader beriberi syndrome. This matches item iii.
Step 2 — Vitamin B2 (Riboflavin)
Riboflavin deficiency characteristically produces inflammation and cracking of the lips/mouth corners along with a burning sensation of the skin and mucous membranes. This matches item iv.
Step 3 — Vitamin B6 (Pyridoxine) …
- COMEDK 2024Set 2024-A1 markMCQQ.With reference to vitamins and its deficiency diseases, the correct statements are:(i) Cheilosis is due to the deficiency of Riboflavin(ii) The deficiency of Vitamin B6 causes pernicious anaemia(iii) Osteomalacia is due to the deficiency of Vitamin E(iv) The deficiency of ascorbic acid causes scurvy(v) The deficiency of Vitamin A causes xerophthalmia (A) $$ \text { (i),(iii) and(v) } (B) \text { (i),(ii) and(iv) } (C) \text { (i),(iv) and(v) } (D) \text { (ii),(iii) and(v) } $$
›Reveal solutionSolution
Statements (i), (iv) and (v) are correct; (ii) and (iii) are wrong, so the answer is (i), (iv) and (v).
Evaluating each statement:
- (i) Cheilosis due to riboflavin (B2) deficiency — CORRECT. Cheilosis and angular stomatitis are classic B2-deficiency signs.
- (ii) B6 deficiency causes pernicious anaemia — WRONG. Pernicious (megaloblastic) anaemia results from vitamin B12 deficiency; B6 deficiency causes a sideroblastic anaemia/dermatitis.
- (iii) Osteomalacia due to vitamin E deficiency — WRONG. Osteomalacia is caused by vitamin D deficiency. …
- COMEDK 2024Set 2024-E1 markMCQQ.Match the Vitamins given in Column I with the diseases caused by their deficiency as given in Column II. .tg {border-collapse:collapse;border-spacing:0;} .tg td{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px; overflow:hidden;padding:10px 5px;word-break:normal;} .tg th{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px; font-weight:normal;overflow:hidden;padding:10px 5px;word-break:normal;} .tg .tg-c3ow{border-color:inherit;text-align:center;vertical-align:top} .tg .tg-7btt{border-color:inherit;font-weight:bold;text-align:center;vertical-align:top} .tg .tg-0pky{border-color:inherit;text-align:left;vertical-align:top} Vitamin Deficiency (A) K (P) Cheilosis (B) B12 (Q) Osteomalacia (C) B2 (R) Permicious Anaemia (D) D (S) Haemophilia (A) A−SB−RC−PD−Q (B) A−QB−PC−SD−R (C) A−SB−RC−QD−P (D) A−PB−SC−QD−R
›Reveal solutionSolution
[!TLDR]
Match each vitamin to the deficiency disease it causes: K→S (haemophilia/bleeding), B₁₂→R (pernicious anaemia), B₂→P (cheilosis), D→Q (osteomalacia).
Concept
Vitamins and their deficiency diseases are a standard CBSE/NCERT Class 12 biomolecules topic. Each vitamin has a well-known deficiency outcome.
Solution
- (A) Vitamin K is essential for blood clotting; its deficiency impairs coagulation, giving excessive bleeding — matched here with (S) Haemophilia (the bleeding-disorder option).
- (B) Vitamin B₁₂ deficiency causes (R) Pernicious anaemia. …
- COMEDK 2023Set 2023-E1 markMCQQ.One among the 4 Vitamins belonging to B Complex, can be stored in our body. Identify the Vitamin. (A) Pyridoxine (B) Thiamine (C) Cyanocobalamin (D) Riboflavin
›Reveal solutionSolution
Water-soluble vitamins (B and C) are normally not stored and are excreted in urine. The single B-complex vitamin that is retained/stored in the body (in the liver) is Vitamin B12, cyanocobalamin.
Vitamins are classified by solubility:
- Fat-soluble (A, D, E, K) — stored in liver and adipose tissue.
- Water-soluble (B group, C) — generally must be supplied regularly in the diet because they are readily excreted and not stored. …
- COMEDK 2022Set 20221 markMCQQ.Which of the following vitamin is responsible for Beri-Beri disease? (A) A (B) B1 (C) K (D) D
›Reveal solutionSolution
Beri-beri is caused by deficiency of vitamin B1.
Concept: Vitamin deficiency diseases.
Vitamin A -> night blindness, xerophthalmia
Vitamin B1 (thiamine) -> BERI-BERI
Vitamin K -> increased blood-clotting time / haemorrhage …
- COMEDK 2021Set 20211 markMCQQ.Xerophthalmia disease causes by which deficiency of vitamin? (A) Vitamin-A (B) Vitamin-C (C) Vitamin-B (D) Vitamin-B6
›Reveal solutionSolution
- Vitamin C deficiency -> scurvy - Vitamin B1 deficiency -> beri-beri - Vitamin B6 deficiency -> convulsions/anaemia
Concept: Vitamin-deficiency diseases.
Xerophthalmia is the drying, thickening and eventual ulceration of the conjunctiva/cornea. It arises because retinal (derived from vitamin A) is required for the visual cycle and for maintaining healthy epithelial tissue. Deficiency of vitamin A first causes night blindness, then xero …
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