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Mitosis & Meiosis Challenge

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A quick clash of cell divisions: mitosis vs meiosis.

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Philippines

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Mitosis & Meiosis Challenge
 

Mitosis & Meiosis ChallengeOnline version

A quick clash of cell divisions: mitosis vs meiosis.

by Joey Kevin Tiongco
1

Slide 1: Introduction to Cell Division

Cell division creates new cells for growth and reproduction. This game compares mitosis and meiosis, highlighting their steps and outcomes.

2

Slide 2: What is Mitosis?

Mitosis produces two identical diploid daughter cells. It supports growth, tissue repair, and asexual reproduction in somatic cells.

3

Slide 3: Prophase (Mitosis)

In prophase, chromosomes condense, the nuclear envelope disappears, and spindle fibers form to organize chromatids for separation.

4

Slide 4: Metaphase (Mitosis)

During metaphase, chromosomes line up at the cell’s equator, with spindle fibers attaching to kinetochores for even separation.

5

Slide 5: Anaphase (Mitosis)

Anaphase splits sister chromatids, pulling them toward opposite poles, ensuring each new cell receives identical genetic material.

6

Slide 6: Telophase & Cytokinesis (Mitosis)

In telophase, envelopes reform around chromosomes; cytokinesis divides the cytoplasm, yielding two separate diploid cells.

7

Slide 7: What is Meiosis?

Meiosis creates four genetically diverse haploid gametes, enabling genetic variation essential for sexual reproduction.

8

Slide 8: Meiosis I Overview

Meiosis I reduces chromosome number and introduces genetic variety via crossing over and independent assortment during prophase I and metaphase I.

9

Slide 9: Meiosis II Overview

Meiosis II resembles mitosis: sister chromatids separate, producing four unique haploid cells ready for gamete formation.

10

Slide 10: Mitosis vs Meiosis Recap

Key differences: identical vs. varied offspring, diploid vs. haploid, two divisions vs. four, somatic vs. gamete production.

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