HEREDITY
Class 10 Science Heredity is an important chapter for understanding how traits are passed from parents to offspring and how variations arise during reproduction. This chapter explains the basic principles of inheritance, genes, traits, chromosomes and variation.
This comprehensive Class 10 Heredity Important Questions with Answers resource is designed for CBSE Pre-Board and Board Exam preparation. It covers NCERT-based questions on Mendel's experiments, dominant and recessive traits, inheritance of traits, independent inheritance, gene expression, chromosomes and sex determination in human beings.
Students should especially practise Mendel's monohybrid cross, dihybrid cross, dominant and recessive traits, genotype and phenotype, inheritance of two traits, gene expression and the XX-XY mechanism of sex determination.
The questions below are structured for quick revision as well as detailed Board Exam preparation and include important questions, NCERT questions, MCQs, case-based questions and exam-focused revision points.
MUST DO
Mendel's Experiments, Dominant & Recessive Traits, Monohybrid Cross & Sex Determination
VERY IMPORTANT
Genes, DNA, Chromosomes, Independent Inheritance & Gene Expression
PRACTICE
Genetic Crosses, MCQs, Case-Based Questions & NCERT Exercise Questions
1. Variation During Reproduction
Q1. What is variation?
Q2. Why are variations produced during reproduction?
Q3. How does sexual reproduction produce more variation than asexual reproduction?
Q4. Are all variations equally useful for survival?
Q5. If trait A exists in 10% of a population and trait B exists in 60% of the same asexually reproducing population, which trait is likely to have arisen earlier?
Q6. How does creation of variations in a species promote survival?
2. Heredity and Inherited Traits
Q7. What is heredity?
Q8. What are inherited traits?
Q9. Why does a child resemble its parents but not look exactly like them?
Q10. How much genetic material does a child receive from each parent?
Q11. What are the two versions of a gene controlling a trait in a sexually reproducing organism?
3. Mendel's Experiments and Contributions
Q12. Who was Gregor Johann Mendel?
Q13. Why did Mendel select pea plants for his experiments?
- Tall and short plants
- Round and wrinkled seeds
- White and violet flowers
Q14. What was special about Mendel's experimental method?
Q15. What happened when Mendel crossed a tall pea plant with a short pea plant?
Q16. What happened when the F1 tall plants were allowed to self-pollinate?
Q17. What did Mendel propose about the factors controlling traits?
4. Dominant and Recessive Traits
Q18. What is a dominant trait?
Q19. What is a recessive trait?
Q20. Differentiate between dominant and recessive traits.
| Dominant Trait | Recessive Trait |
|---|---|
| Expressed when one copy is sufficient. | Expressed when both copies are recessive. |
| Represented by a capital letter in simple genetic crosses. | Represented by a small letter. |
| Example: T for tallness. | Example: t for shortness. |
Q21. What do TT, Tt and tt represent?
- TT: Two copies of the dominant factor.
- Tt: One dominant and one recessive copy.
- tt: Two copies of the recessive factor.
5. Monohybrid Inheritance
Q22. Explain Mendel's monohybrid cross using tall and short pea plants.
t = short
Parental cross: TT × tt
The gametes are: T from the tall parent and t from the short parent. Therefore, all F1 offspring are: Tt Since T is dominant, all F1 plants are tall.
| t | t | |
|---|---|---|
| T | Tt | Tt |
| T | Tt | Tt |
Q23. What happens when F1 plants are self-pollinated?
| T | t | |
|---|---|---|
| T | TT | Tt |
| t | Tt | tt |
Phenotypic ratio = 3 Tall : 1 Short
Q24. What is the phenotypic ratio obtained in Mendel's monohybrid cross?
Q25. What is the genotypic ratio in the F2 generation of a monohybrid cross?
6. Independent Inheritance of Two Traits
Q26. What is independent inheritance?
Q27. What happened when Mendel studied two traits together?
Q28. What new combinations of traits can arise during independent inheritance?
- Tall plants with round seeds
- Tall plants with wrinkled seeds
- Short plants with round seeds
- Short plants with wrinkled seeds
Q29. What phenotypic ratio was obtained in Mendel's dihybrid experiment?
- 315 round, yellow
- 108 round, green
- 101 wrinkled, yellow
- 32 wrinkled, green
7. How Do Genes Control Traits?
Q30. What is a gene?
Q31. How does DNA control characteristics or traits?
Q32. How can a change in a gene affect plant height?
8. Genes, DNA and Chromosomes
Q33. What are chromosomes?
Q34. How many copies of each chromosome are present in body cells?
Q35. Why do germ cells have only one set of chromosomes?
Q36. How is equal genetic contribution of male and female parents ensured?
9. Sex Determination in Human Beings
Q37. What are sex chromosomes?
- Females have XX chromosomes.
- Males have XY chromosomes.
Q38. How is the sex of a child determined in human beings?
- X-bearing sperm
- Y-bearing sperm
If a Y-bearing sperm fertilises the egg: XY → boy
| Mother X | Mother X | |
|---|---|---|
| Father X | XX | XX |
| Father Y | XY | XY |
Q39. What is the probability of a child being a boy or a girl according to the XX-XY mechanism?
- Probability of XX child = 1/2
- Probability of XY child = 1/2
Q40. Why is the father responsible for determining the sex of the child in humans?
Y from father + X from mother = XY
Q41. Can environmental factors determine sex in all organisms?
10. NCERT-Based Important Questions
Q42. How do Mendel's experiments show that traits may be dominant or recessive?
Q43. How do Mendel's experiments show that traits are inherited independently?
Q44. A man with blood group A marries a woman with blood group O and their daughter has blood group O. Is this information enough to tell which trait is dominant? Why?
Q45. How is the sex of the child determined in human beings?
- X + X = XX → female child
- X + Y = XY → male child
Q46. A Mendelian experiment involved tall pea plants with violet flowers and short pea plants with white flowers. The progeny all had violet flowers but almost half were short. What is the genetic make-up of the tall parent?
Q47. Children with light-coloured eyes are likely to have parents with light-coloured eyes. Can we conclude whether light eye colour is dominant or recessive?
Q48. Outline a project to find the dominant coat colour in dogs.
- Identify dogs showing contrasting coat colours.
- Record the coat colour of parents and offspring over several generations.
- Select controlled crosses between dogs showing contrasting traits, where ethically and practically appropriate.
- Record the number of offspring showing each coat colour.
- Compare the observed inheritance patterns with expected Mendelian patterns.
- The trait consistently expressed in appropriate heterozygous combinations can be investigated as the possible dominant trait.
Q49. How is the equal genetic contribution of male and female parents ensured in the progeny?
11. Important MCQs – Heredity Class 10
(a) Charles Darwin
(b) Gregor Mendel
(c) Robert Hooke
(d) Louis Pasteur
(a) Short
(b) Medium height
(c) Tall
(d) Half tall and half short
(a) 1:1
(b) 2:1
(c) 3:1
(d) 9:3:3:1
(a) 3:1
(b) 1:1
(c) 1:2:1
(d) 9:3:3:1
(a) Recessive
(b) Dominant
(c) Acquired
(d) Environmental
(a) Cell
(b) Chromosome
(c) Gene
(d) Tissue
(a) XY
(b) XX
(c) YY
(d) XO
(a) XX
(b) XY
(c) YY
(d) XO
(a) X
(b) Y
(c) Both X and Y simultaneously
(d) None
(a) Sexual reproduction
(b) Only binary fission
(c) No reproduction
(d) None
(a) 3:1
(b) 1:2:1
(c) 9:3:3:1
(d) 1:1
12. Case-Based Questions – Board Exam Practice
Case Study 1 – Mendel's Monohybrid Cross
Mendel crossed a tall pea plant with a short pea plant. All plants in the F1 generation were tall. When the F1 plants were self-pollinated, short plants appeared in the F2 generation.
Q1. Which trait is dominant?
Q2. Which trait is recessive?
Q3. What is the expected phenotypic ratio in F2?
Q4. What is the genotypic ratio in F2?
1. Tallness is dominant.
2. Shortness is recessive.
3. Phenotypic ratio = 3:1.
4. Genotypic ratio = 1:2:1.
Case Study 2 – Independent Inheritance
Mendel studied two characteristics of pea plants together. In the F2 generation, new combinations of characteristics appeared in addition to the parental combinations.
Q1. What does this demonstrate?
Q2. Give one example of a new combination.
Q3. What is the classic F2 ratio associated with this experiment?
1. It demonstrates independent inheritance of traits.
2. Tall plants with wrinkled seeds or short plants with round seeds.
3. 9:3:3:1.
Case Study 3 – Gene Expression
A gene provides information for a protein. Suppose the protein is an enzyme involved in the production of a plant hormone. If the enzyme works efficiently, more hormone is produced and the plant becomes tall. If the enzyme is less efficient, less hormone is produced and the plant may be short.
Q1. What does the gene provide information for?
Q2. How can a gene alteration affect plant height?
Q3. What is the relationship between genes and traits?
1. It provides information for making a protein.
2. It can alter the efficiency of the enzyme and therefore affect the amount of hormone produced.
3. Genes control characteristics or traits through their role in protein production and cellular processes.
Case Study 4 – Sex Determination in Humans
A human female has XX chromosomes while a human male has XY chromosomes. The egg always carries X, while sperm may carry either X or Y.
Q1. What chromosome does every egg carry?
Q2. What chromosomes can sperm carry?
Q3. What combination results in an XX child?
Q4. What combination results in an XY child?
1. X.
2. X or Y.
3. X from mother + X from father = XX.
4. X from mother + Y from father = XY.
13. Quick Revision – Heredity Class 10
| Concept | Key Point |
|---|---|
| Variation | Differences among individuals of the same species. |
| Heredity | Transmission of traits from parents to offspring. |
| Gene | Section of DNA providing information for a protein. |
| Dominant trait | Trait expressed when one copy is sufficient. |
| Recessive trait | Trait expressed when both copies are recessive. |
| Monohybrid F2 phenotype | 3 : 1 |
| Monohybrid F2 genotype | 1 : 2 : 1 |
| Dihybrid phenotype | 9 : 3 : 3 : 1 |
| Female chromosomes | XX |
| Male chromosomes | XY |
| XX offspring | Female |
| XY offspring | Male |
Monohybrid: 3:1 phenotype, 1:2:1 genotype
Dihybrid: 9:3:3:1 phenotype
Female: XX
Male: XY
Father's sperm: X or Y
Mother's egg: X
14. Class 10 Board Exam Final Checklist
- ☑ Learn the definition of heredity and variation.
- ☑ Understand why sexual reproduction creates greater variation.
- ☑ Learn Mendel's pea plant experiment.
- ☑ Understand the F1 and F2 generations.
- ☑ Memorise dominant and recessive traits.
- ☑ Practise TT × tt.
- ☑ Practise Tt × Tt.
- ☑ Learn 3:1 phenotypic ratio.
- ☑ Learn 1:2:1 genotypic ratio.
- ☑ Understand independent inheritance.
- ☑ Learn the 9:3:3:1 ratio.
- ☑ Understand genes and DNA.
- ☑ Understand the role of proteins in expression of traits.
- ☑ Learn the relationship between genes and chromosomes.
- ☑ Understand why germ cells contain one chromosome from each pair.
- ☑ Learn XX-XY sex determination.
- ☑ Practise NCERT in-text questions.
- ☑ Practise all four NCERT exercise questions.
- ☑ Practise MCQs and case-based questions.
15. Exam Strategy for Heredity
How to score better in this chapter?
Always write the parental generation, gametes, F1/F2 generation and final ratio clearly.
2. Do not confuse genotype and phenotype.
Genotype refers to the genetic combination, whereas phenotype refers to the expressed characteristic.
3. Remember the important ratios.
3:1 → monohybrid phenotype
1:2:1 → monohybrid genotype
9:3:3:1 → classic dihybrid phenotype
4. Learn the XX-XY cross.
This is a high-priority concept for questions on human sex determination.
5. Use scientific keywords.
Important terms include: variation, heredity, gene, DNA, chromosome, dominant, recessive, genotype, phenotype, independent inheritance, germ cell, XX and XY.
🎯 Learn Heredity. Practise Genetics. Score Better.
Revise Class 10 Science Heredity with NCERT-based important questions, Mendelian crosses, MCQs, case-based questions and Board Exam revision notes.
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