Reproduction: How Life Continues MCQs for UPSC Prelims

155 practice questions covering Reproduction: How Life Continues, organised into 3 topics. 155 questions include a written explanation. Pick a topic below, or try the samples first.

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Sample questions

Q1
easy
A frog may release 5,000 to 50,000 eggs at a time, while a bird lays only 1 to 15 eggs at a time. What is the main reason the frog needs so many?
  1. A Frogs live far longer than birds and so have more time to lay eggs
  2. B Very few of the frog's eggs survive, because they lie exposed in open water
  3. C A bird is physically unable to produce more than 15 eggs in its whole life
  4. D Frog eggs are much smaller, so a great many can be packed into the same space
Show answer and explanation

Correct answer: B - Very few of the frog's eggs survive, because they lie exposed in open water

Frog eggs are shed into open water, where currents and predators destroy most of them, so a very large number is needed for a few to reach adulthood. Fitting eggs into a space is not what decides the number, and lifespan is irrelevant, since the figures given are for one breeding episode. A bird lays many clutches over its life, so the last claim is simply untrue.
Q2
medium
A science club keeps one hydra in a jar of pond water. No second hydra is ever added, yet two weeks later the jar holds several small hydras. What does this best show?
  1. A The small hydras hatched from eggs laid earlier by two parents
  2. B Hydra can reproduce asexually, so one parent is enough
  3. C A male hydra must already have been hidden in the pond water
  4. D Hydra splits into many individuals only when food runs out
Show answer and explanation

Correct answer: B - Hydra can reproduce asexually, so one parent is enough

New individuals appeared although only one parent was present, which is exactly what asexual reproduction means. A hidden male or eggs from two parents would both make this sexual reproduction, and nothing was added to the jar. Shortage of food is not the trigger; hydra buds most readily when conditions are good.
Q3
easy
Potato and ginger have thickened underground stems from which new shoots and roots sprout, without any seed being formed. Reproduction of this kind is called:
  1. A Pollination
  2. B Vegetative propagation
  3. C Seed dispersal
  4. D External fertilisation
Show answer and explanation

Correct answer: B - Vegetative propagation

When a new plant grows from a vegetative part such as a stem, root or leaf, the process is vegetative propagation. Pollination is the transfer of pollen to a stigma, and external fertilisation is the fusion of gametes outside an animal's body, so neither fits a sprouting tuber. Seed dispersal is the scattering of seeds, and no seeds are involved here.
Q4
hard
Measurements show that a wind-pollinated grass releases about 5,00,000 to 10,00,000 pollen grains per flower but forms only about 50 to 200 seeds, while an insect-pollinated sunflower releases about 20,000 to 40,000 pollen grains and forms about 800 to 1,000 seeds. What does this comparison show?
  1. A Sunflower pollen grains must be lighter than grass pollen grains
  2. B Insect pollination delivers pollen to stigmas far more efficiently, so far fewer grains are needed per seed formed
  3. C Wind pollination delivers pollen more efficiently, since far more pollen is released
  4. D Wind-pollinated plants form more seeds than insect-pollinated plants do
Show answer and explanation

Correct answer: B - Insect pollination delivers pollen to stigmas far more efficiently, so far fewer grains are needed per seed formed

The grass spends thousands of pollen grains for each seed, while the sunflower spends only a few tens, so an insect carrying pollen straight from flower to flower wastes far less. Releasing more pollen is a sign of waste, not of efficiency. The data say nothing about pollen weight, and in fact the insect-pollinated sunflower forms the larger number of seeds.
Q5
hard
In human pregnancy the major organs begin forming during the first two months, and from about the ninth week the developing individual is given a new name. A particular pregnancy is now in its tenth week. What is the developing individual called now, and what was it called immediately after fertilisation?
  1. A It is a foetus now, and immediately after fertilisation it was a zygote
  2. B It is a zygote now, and immediately after fertilisation it was an embryo
  3. C It is an embryo now, and immediately after fertilisation it was a foetus
  4. D It is still an embryo now, and it was called a foetus only in the first two weeks
Show answer and explanation

Correct answer: A - It is a foetus now, and immediately after fertilisation it was a zygote

Fertilisation produces a zygote, which divides and implants and is then called an embryo, and from about the ninth week onwards it is called a foetus, so in the tenth week it is a foetus. Naming it an embryo now ignores the change of name at the ninth week. It cannot still be a zygote, which is a single cell, and the name foetus belongs to the later part of pregnancy, not to its first two weeks.
Q6
medium
Assertion (A): A Bryophyllum leaf that falls on moist soil can give rise to several new plants. Reason (R): The plantlets on a Bryophyllum leaf are formed by the fusion of a male gamete and a female gamete.
  1. A Both A and R are true, and R is the correct explanation of A
  2. B Both A and R are true, but R is not the correct explanation of A
  3. C A is true, but R is false
  4. D A is false, but R is true
Show answer and explanation

Correct answer: C - A is true, but R is false

A fallen Bryophyllum leaf really can give rise to many new plants from the plantlets on its margins, so (A) is true. (R) is false: these plantlets grow by cell division on a single parent leaf, with no gametes and no fusion, which is why they are identical to the parent. Since (R) is false, it cannot be an explanation of (A), correct or otherwise.

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Other subjects

Environment & Ecology 1179 Economy 1062 Logical Reasoning 995 Quantitative Aptitude 897 Polity & Governance 889 Geography 877 Science & Technology 823 Ancient & Medieval History 735 Art & Culture 704 Modern History 580 International Relations 580 Data Interpretation 514 Reading Comprehension 408 Number Play 317 Probability 225 Statistics 162 Relations and Functions 150 Biomolecules 150 Journey Inside the Atom 145 Tissues in Action 145 Fractions 142 Patterns in Life: Diversity and Classification 135 Exploring Algebraic Identities 135 I'm Up and Down, and Round and Round 134 How Forces Affect Motion 133 Describing Motion Around Us 130 Work, Energy, and Simple Machines 130 Predicting What Comes Next: Exploring Sequences and Progressions 128 Exploring Mixtures and their Separation 126 Measuring Space: Perimeter and Area 125 A Peek Beyond the Point 125 Sound Waves: Characteristics and Applications 125 Hydrocarbons 125 Atomic Foundations of Matter 125 Introduction to Linear Polynomials 125 The World of Numbers 125 Earth as a System: Energy, Matter, and Life 125 Cell: The Building Block of Life 120 Light: Shadows and Reflections 120 The Mathematics of Maybe: Introduction to Probability 120 Quadrilaterals 120 Proportional Reasoning-1 120 Changes Around Us: Physical and Chemical 120 Organic Chemistry - Some Basic Principles and Techniques 118 Prime Time 116 Light: Mirrors and Lenses 116 Measurement of Length and Motion 116 Exploring Substances: Acidic, Basic, and Neutral 116 Structure of Atom 115 Exploring Forces 115 Lines and Angles 115 Measurement of Time and Motion 115 Mindful Eating: A Path to a Healthy Body 115 Nature's Treasures 115 Parallel and Intersecting Lines 115 Pressure, Winds, Storms, and Cyclones 115 Power Play 114 The Invisible Living World: Beyond Our Naked Eye 112 The World of Metals and Non-metals 110 Electricity: Magnetic and Heating Effects 110 Electricity: Circuits and their Components 110 Diversity in the Living World 110 A Tale of Three Intersecting Lines 110 We Distribute, Yet Things Multiply 110 A Journey through States of Water 110 The Amazing World of Solutes, Solvents, and Solutions 110 Large Numbers Around Us 110 Working with Fractions 110 How Nature Works in Harmony 110 Nature of Matter: Elements, Compounds, and Mixtures 110 A Square and A Cube 109 Chemical Bonding and Molecular Structure 108 The Other Side of Zero 106 Living Creatures: Exploring their Characteristics 105 Life Processes in Plants 105 Life Processes in Animals 105 Our Home: Earth, a Unique Life Sustaining Planet 105 Laws of Motion 105 Heat Transfer in Nature 105 Health: The Ultimate Treasure 105 Expressions using Letter-Numbers 105 Exploring Magnets 105 Equilibrium 105 Beyond Earth 105 Aldehydes, Ketones and Carboxylic Acids 105 Methods of Separation in Everyday Life 105 Patterns in Mathematics 103 Perimeter and Area 100 Particulate Nature of Matter 100 Materials Around Us 100 Orienting Yourself: The Use of Coordinates 100 System of Particles and Rotational Motion 100 A Story of Numbers 100 Earth, Moon, and the Sun 100