Home
Class 12
BIOLOGY
In Cassia, symmetry of flower is...

In Cassia, symmetry of flower is

A

Radial

B

Bilateral

C

Asymmetric

D

Irregular

Text Solution

AI Generated Solution

The correct Answer is:
To determine the symmetry of the flower in Cassia, we can follow these steps: ### Step-by-Step Solution: 1. **Understand Flower Symmetry Types**: - There are three main types of symmetry in flowers: radial, bilateral, and asymmetric. - **Radial Symmetry**: A flower exhibits radial symmetry if it can be divided into two equal halves by multiple planes passing through its center. - **Bilateral Symmetry**: A flower exhibits bilateral symmetry if it can be divided into two equal halves by only one plane, typically creating a left and right side. - **Asymmetric**: A flower is asymmetric if it cannot be divided into equal halves by any plane. - **Irregular**: This term refers to a shape that does not conform to standard symmetry classifications. 2. **Identify the Symmetry in Cassia**: - When examining the flower structure of Cassia, we need to determine whether it can be divided into equal halves. - If we can find only one plane that divides the flower into two equal halves, it indicates bilateral symmetry. 3. **Conclusion**: - After analyzing the flower structure of Cassia, it is observed that it displays bilateral symmetry. Therefore, the correct answer is **Option B: Bilateral**.
Promotional Banner

Topper's Solved these Questions

Similar Questions

Explore conceptually related problems

Read the following matches Datura- Actinomorphic flower (ii) Canna - Zygomorphic flower (iii) Gulmohur - Zygomorphic flower (iv) Cassia - Asymmetric flower Which of these are correct ?

Radial symmetry is

Discuss different symmetry of flowers giving examples.

Path Symmetry

$ Actinomorphic flower has a regular symmetry. ! Shoe-flower is actinomorphic.

Draw, wherever possible, a rough sketch of (i) a triangle with both line and rotational symmetries of order more than 1. (ii) a triangle with only line symmetry and no rotational symmetry of order more than 1. (iii) a quadrilateral with a rotational symmetry of order more than 1 but not a line symmetry. (iv) a quadrilateral with line symmetry but not a rotational symmetry of order more than 1.