Class 10 Exam  >  Class 10 Tests  >  Test: Chemical Coordination in Plants - Class 10 MCQ

Test: Chemical Coordination in Plants - Class 10 MCQ


Test Description

20 Questions MCQ Test - Test: Chemical Coordination in Plants

Test: Chemical Coordination in Plants for Class 10 2025 is part of Class 10 preparation. The Test: Chemical Coordination in Plants questions and answers have been prepared according to the Class 10 exam syllabus.The Test: Chemical Coordination in Plants MCQs are made for Class 10 2025 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Chemical Coordination in Plants below.
Solutions of Test: Chemical Coordination in Plants questions in English are available as part of our course for Class 10 & Test: Chemical Coordination in Plants solutions in Hindi for Class 10 course. Download more important topics, notes, lectures and mock test series for Class 10 Exam by signing up for free. Attempt Test: Chemical Coordination in Plants | 20 questions in 20 minutes | Mock test for Class 10 preparation | Free important questions MCQ to study for Class 10 Exam | Download free PDF with solutions
Test: Chemical Coordination in Plants - Question 1

What is the primary role of gibberellins during seed germination?

Detailed Solution for Test: Chemical Coordination in Plants - Question 1

Gibberellins play a critical role in stimulating shoot elongation during seed germination. They help break dormancy and promote the growth of seedlings, ensuring that plants can emerge effectively from the soil and access sunlight.

Test: Chemical Coordination in Plants - Question 2

How does hydrotropism benefit plants?

Detailed Solution for Test: Chemical Coordination in Plants - Question 2

Hydrotropism benefits plants by directing roots towards moisture sources in the soil. This response is essential for ensuring that plants can access the water necessary for survival, particularly in arid environments where water is limited.

Test: Chemical Coordination in Plants - Question 3

What is the effect of auxins on root growth?

Detailed Solution for Test: Chemical Coordination in Plants - Question 3

Auxins generally inhibit root growth when applied in high concentrations, which is why they are used in horticulture to promote rooting in cuttings. Understanding this balance is crucial for effective plant propagation techniques.

Test: Chemical Coordination in Plants - Question 4

What is the effect of auxins on fruit growth?

Detailed Solution for Test: Chemical Coordination in Plants - Question 4

Auxins promote fruit growth by stimulating cell elongation and division. They play a significant role in the development of fruits, ensuring that they mature properly and contribute to the plant's reproductive success.

Test: Chemical Coordination in Plants - Question 5

Which plant hormone is known to act as a growth inhibitor?

Detailed Solution for Test: Chemical Coordination in Plants - Question 5

Abscisic acid serves as a growth inhibitor, promoting dormancy in seeds and buds. It also plays a role in closing stomata to reduce water loss during stress conditions. This hormone is critical for helping plants survive adverse environmental conditions.

Test: Chemical Coordination in Plants - Question 6

Which hormone is involved in breaking seed dormancy?

Detailed Solution for Test: Chemical Coordination in Plants - Question 6

Gibberellins are involved in breaking seed dormancy and promoting seed germination. They stimulate growth and elongation in shoots, helping plants transition from a dormant state to an active growth phase, which is crucial for successful reproduction and survival.

Test: Chemical Coordination in Plants - Question 7

What type of movement is thigmotropism associated with?

Detailed Solution for Test: Chemical Coordination in Plants - Question 7

Thigmotropism is associated with the movement of plants in response to physical contact with solid objects. This response is particularly beneficial for climbing plants, allowing them to secure themselves as they grow towards sunlight.

Test: Chemical Coordination in Plants - Question 8

How do shoots react to light?

Detailed Solution for Test: Chemical Coordination in Plants - Question 8

Shoots exhibit positive phototropism by growing towards the light source. This adaptive response enhances photosynthesis and allows plants to maximize their energy intake, which is crucial for growth and survival.

Test: Chemical Coordination in Plants - Question 9

What is the role of cytokinins in leaf aging?

Detailed Solution for Test: Chemical Coordination in Plants - Question 9

Cytokinins play a vital role in delaying the aging of leaves. By promoting cell division and growth, these hormones help maintain leaf vitality, which is essential for continuous photosynthesis and overall plant health.

Test: Chemical Coordination in Plants - Question 10

What is the definition of chemotropism?

Detailed Solution for Test: Chemical Coordination in Plants - Question 10

Chemotropism is defined as the movement of plant organs in response to chemical stimuli. It can be positive, where growth occurs towards a chemical, or negative, where growth occurs away from it, as seen in various plant responses to nutrients or toxins.

Test: Chemical Coordination in Plants - Question 11

What is the main function of auxins in plant growth?

Detailed Solution for Test: Chemical Coordination in Plants - Question 11

Auxins are primarily known for promoting plant growth. They are produced in the tips of stems and roots and stimulate cell elongation, which is crucial for the overall development of the plant. This hormone is also utilized in horticulture to encourage growth in various plants.

Test: Chemical Coordination in Plants - Question 12

What type of tropism involves plant movement in response to physical contact?

Detailed Solution for Test: Chemical Coordination in Plants - Question 12

Thigmotropism refers to the movement of plant organs in response to physical contact with solid objects. This is particularly evident in climbing plants that use tendrils or twining stems to support themselves, allowing them to reach sunlight more effectively.

Test: Chemical Coordination in Plants - Question 13

What type of tropism involves plant movement in response to gravity?

Detailed Solution for Test: Chemical Coordination in Plants - Question 13

Geotropism is the movement of plant organs in response to gravity. Roots are positively geotropic, growing downwards towards gravity, while shoots are negatively geotropic, growing upwards against it. This response helps ensure that roots anchor the plant and access water and nutrients from the soil.

Test: Chemical Coordination in Plants - Question 14

Which of the following hormones is primarily responsible for promoting cell division in plants?

Detailed Solution for Test: Chemical Coordination in Plants - Question 14

Cytokinins are known for their role in promoting cell division in plants. They also have other vital functions, such as delaying leaf aging and stimulating fruit growth. Understanding the role of cytokinins helps in improving agricultural practices, particularly in enhancing crop yields.

Test: Chemical Coordination in Plants - Question 15

In heliotropism, how do sunflowers respond to sunlight?

Detailed Solution for Test: Chemical Coordination in Plants - Question 15

Sunflowers exhibit heliotropism by bending towards the sun. This movement is facilitated by auxins, which promote growth on the shaded side of the stem, allowing the flower to maximize sunlight exposure and enhance photosynthesis, vital for their growth and reproduction.

Test: Chemical Coordination in Plants - Question 16

What is the characteristic movement of pollen tubes in relation to chemical stimuli?

Detailed Solution for Test: Chemical Coordination in Plants - Question 16

Pollen tubes exhibit positive chemotropism by growing towards the sugary substances secreted by the stigma of flowers. This movement is essential for successful fertilization, as it directs the pollen tubes to the ovule for reproduction.

Test: Chemical Coordination in Plants - Question 17

What phenomenon describes the movement of plant parts towards light?

Detailed Solution for Test: Chemical Coordination in Plants - Question 17

Phototropism refers to the movement of plant parts towards light. This adaptive response allows plants to maximize their exposure to sunlight, essential for photosynthesis. Most shoots exhibit positive phototropism, growing towards the light source, while roots demonstrate negative phototropism, growing away from it.

Test: Chemical Coordination in Plants - Question 18

What is the term for the movement of plant organs in response to water?

Detailed Solution for Test: Chemical Coordination in Plants - Question 18

Hydrotropism describes the movement of plant organs in response to water. Roots grow towards moisture, which is essential for the plant's survival as it helps ensure access to water necessary for various physiological processes.

Test: Chemical Coordination in Plants - Question 19

What happens to leaves when abscisic acid levels increase?

Detailed Solution for Test: Chemical Coordination in Plants - Question 19

When abscisic acid levels increase, it causes the stomata to close, reducing water loss through transpiration. This response is vital during drought conditions, helping plants conserve water and survive in stressful environments.

Test: Chemical Coordination in Plants - Question 20

How do roots respond to gravity?

Detailed Solution for Test: Chemical Coordination in Plants - Question 20

Roots respond positively to gravity, growing downwards in the direction of gravitational pull. This geotropic response is crucial for anchoring the plant and optimizing nutrient and water uptake from the soil.

Information about Test: Chemical Coordination in Plants Page
In this test you can find the Exam questions for Test: Chemical Coordination in Plants solved & explained in the simplest way possible. Besides giving Questions and answers for Test: Chemical Coordination in Plants, EduRev gives you an ample number of Online tests for practice
Download as PDF