Final answer:
Mitosis results in two genetically identical diploid daughter cells and is essential for growth and repair, while meiosis produces four genetically diverse haploid gametes, necessary for sexual reproduction and genetic variation.
Step-by-step explanation:
Comparison of Mitosis and Meiosis
- In mitosis, a single cell division results in two genetically identical diploid daughter cells, with the same number of chromosomes as the original cell.
- This process is crucial for growth, development, and repair in multicellular organisms.
- In contrast, meiosis involves two rounds of cell division—Meiosis I and Meiosis II—resulting in four genetically unique haploid gametes that have half the number of chromosomes of the original cell.
- Meiosis is essential for sexual reproduction and contributes to genetic variation through mechanisms like crossing-over and independent assortment during Meiosis I.
- Another difference between meiosis and mitosis is the way they start; mitosis begins with a diploid cell, whereas meiosis I starts after DNA replication in a diploid cell that has undergone interphase.
Ultimately, meiosis generates diversity, which is advantageous for the survival and adaptation of species, while mitosis is essential for organismal maintenance and asexual reproduction.