Meiosis: Videos, Concepts, Definition, Phases and Solved Questions (2024)

Cell Cycle and Cell Division

Sometimes when you’re nervous, you tend to bite your nails and at times you also end up biting your finger. Yet have you noticed how just in a span of days the nail regrows and so does the skin of the finger. How does that happen? Well, it happens because of a process of cell division known as ‘Meiosis’. But what is it? And how is different from mitosis? Let us study more about it.

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What is meiosis?

It is a specialized form of cell division process in which a single cell divided twice to form four daughter cells that possess exactly half the number of chromosomes of the parent cell. Therefore, all the four cells are haploid and will contain half the original amount of the genetic information. These cells are call sex cells: sperms in male whereas eggs in females.

Browse more Topics under Cell Cycle And Cell Division

  • Cell Cycle
  • Mitosis

Meiosis vs Mitosis

Mitosis & Meiosis are the two major cell division processes. However, meiosis is solely used for one purpose in a human body. It is used for the production of gametes cells, also known as the sex cells. Mitosis and meiosis are quite similar in processes with very few differences. One of the differences is that mitosis has one division whereas there are two divisions in meiosis.

This is the reason meiosis is also known as a reduction division process. Thus, in meiosis germ cells are divided by two fissions of the nucleus which result in four gametes or sex cells. Each cell possesses half the number of chromosomes of the parent cell. The process of meiosis occurs in almost all sexually reproducing single-celled and multicellular eukaryotic organisms like animal, plants, and fungi.

Stages of Meiosis

Meiosis can be majorly categorized into 9 different stages. As there are two divisions in meiosis, the two divisions are called meiosis I (where the cell divides for the first time) and meiosis II (where the cell divides for the second time).

Meiosis starts with duplication of chromosomes. Then the parent cell undergoes two rounds of nuclear divisions (meiosis I and meiosis II). Thus in an overall meiosis process, four daughter cells are produced from the parent cell. However, before entering the stages of meiosis the parent cell go through a phase called interphase. Similar to mitosis, the cells growth begins in the G1 phase of interphase, the chromosomes are duplicated in the S phase and then in G2 phase the parent cells prepares for cell division.

Before the start of meiosis I, the chromosomes are duplicated and they are fused together. The duplicated chromosomes are called sister chromatids. The point at which the duplicated chromosomes (sister chromatids) are joined is called centromere. The complete structure looks like a “letter X”. The chromosomes condense and become compact at the time of every nuclear division. At this point, they are visible under the microscope.

Meiosis: Videos, Concepts, Definition, Phases and Solved Questions (8)

Meiosis I

Prophase I

In this stage, the sister chromatids or the chromosomes of the maternal set combines together with their hom*ologs of the paternal chromosomes set. The duplicated chromosomes condense and in combination, they look like two X’s present next to each other.

Every chromosome is made up of two sister chromatids that contain similar genetic information. The chromosomes pair up in a pattern that copies of particular chromosomes are paired together.The maternal and paternal chromatids exchange their parts of DNA and recombine to develop genetic variations.

The process of exchange of genetic information is called recombination or crossing over. However, in the case of a male in humans the sex chromosomes X and Y are not hom*ologs but they can pair together and exchange DNA. Recombination happens in a small part of two chromosomes where hom*ology is present.

The nuclear membrane of the cell breaks down releasing the chromosomes by the end of prophase I. The meiotic spindle that constitutes microtubules and other proteins that is stretched across the cell in between the centrioles.

Metaphase I

The chromosome sets arrange themselves next to each other along the equator of the cell. The meiotic spindle is positioned on both the sides of the cell. At that time the centrioles are present in the opposite ends of the cell and the meiotic spindles stretch from them.

The meiotic spindle attaches to the combined sister chromatids (one chromosome of each pair). At the end of metaphase I, the fused sister chromatids are latched to the centromere and line up in the center of the cell. The hom*ologs still represent X sitting next to each other.

Anaphase I

The chromosome pairs are gradually pulled apart when the meiotic spindle fibres start to contract. As a result, one chromosome is pulled to one end of the cell and the other chromosome to the opposite end. Thus each X shape structure moves away from each other towards the opposite pole.

Telophase I and Cytokinesis

In this stage, the chromosomes completely move apart and are present in the opposite poles of the cell. Each pole of the cell contains a full set of chromosomes arrange together. A membrane develops around each chromosome pair. At this point, the single cell splits in the middle to create two separate daughter cells by a process called cytokinesis.

Each daughter cell is composed of a full set of chromosomes present inside the nucleus. At the end of Meiosis I, two daughter cells each having a full set of chromosomes are present. The genetic makeup of each newly formed cells is different because of the DNA exchange taking place between the hom*ologs earlier.

The newly formed daughter cells enter into meiosis II without further duplication of chromosomes.

Meiosis II

Meiosis II process is similar to an equational division. Thus by the end of meiosis II, the chromosome number of cells that are undergoing the meiosis II process and in the resultant daughter cells remain unchanged. There are four stages of meiosis II.

Prophase II

After meiosis I, there are two cells with the same number of chromosomes or the same number of chromatid pairs. The chromosomes in each daughter cell once again condense into visible X shaped structure. The nuclear membrane around the nucleus of the daughter cells disintegrates releasing the chromosome. The meiotic spindles start forming again and the centrioles duplicate.

Metaphase II- The pair of sister chromatids arrange themselves in line along the equator of the cell. The centrioles are now present at the opposite ends in each of the daughter cells. The developed meiotic spindle fibres at each end attach onto the centromere present in the sister chromatids of the cell.

Anaphase II

The meiotic spindle fibres start contracting and the sister chromatids are pulled to the opposite ends. At this point, the chromatids are separated and they form individual chromosomes.

Telophase II

The chromosomes finally move to the opposite ends of the cell. At each end or pole, an entire set of chromosomes are arranged together. Again the nucleus membrane develops around each pair of chromosomes and two new cell nuclei are formed. This marks the last phase of meiosis but the cell division process remains incomplete without the cytokinesis process. So the cell undergoes cytokinesis and after the process, four granddaughter cells are formed.

Each newly formed cell contains half a set of chromosomes or haploid chromosomes. Each chromosome is distinct and unique. It is composed of a mix of genetic material from the paternal as well as paternal chromosomes of the original cell.

For example in humans, these special cells are known as germ cells. The germ cells undergo meiosis and create sperms (male) or eggs (female). Germ cells constitute a total of 46 chromosomes (23 maternal and 23 paternal). Finally, after meiosis, the reproductive cells or the gametes formed contain 23 genetically distinct and unique chromosomes each.

Question For You

Q. What does the word hom*ologous means?

  1. Different traits with same information
  2. Different traits with different information
  3. Same traits with different information
  4. Same traits with same information

Ans: The correct answer is 3.

hom*ologous chromosomes, also termed as hom*ologs, is chromosome pairs from the paternal and maternal chromosome that form a pair with each other during meiosis. hom*ologous chromosomes have similar traits such as length, gene position, and location of centromere but they have different information. In each hom*ologous chromosome, the position of the gene is same but the genes may have different alleles.

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Meiosis: Videos, Concepts, Definition, Phases and Solved Questions (2024)

FAQs

What is meiosis answers? ›

Meiosis is a process where a single cell divides twice to produce four cells containing half the original amount of genetic information. During meiosis one cell divides twice to form four daughter cells. These four daughter cells only have half the number of chromosomes of the parent cell – they are haploid.

What is meiosis for idiots? ›

Meiosis is a process of cell division, whereby one gamete-producing cell divides twice to produce four gametes, or sex cells. Gamete-producing cells are diploid cells within the sexual reproductive parts of an organism.

What is meiosis pdf? ›

Meiosis is a specialised type of cell division, the principal function of which is to produce spores/gametes (sperm and eggs in mammals) that have the haploid number of chromosomes. In humans, this represents a reduction from 46 (23 pairs) to 23 chromosomes (one complete set) in sperm and eggs.

What is the definition and phases of meiosis? ›

Since cell division occurs twice during meiosis, one starting cell can produce four gametes (eggs or sperm). In each round of division, cells go through four stages: prophase, metaphase, anaphase, and telophase.

What are the 8 stages of meiosis? ›

  • Prophase I. Events that occur during prophase of mitosis also occur during prophase I of meiosis. ...
  • Metaphase I. Bivalents (tetrads) become aligned in the center of the cell and are attached to spindle fibers.
  • Anaphase I. ...
  • Telophase I. ...
  • Prophase II. ...
  • Metaphase II. ...
  • Anaphase II.
  • Telophase II & Cytokinesis II.

What is meiosis in short words? ›

Meiosis is a type of cell division in sexually reproducing organisms that reduces the number of chromosomes in gametes (the sex cells, or egg and sperm).

What is the main purpose of meiosis? ›

Therefore the purpose of meiosis is to produce gametes, the sperm and eggs, with half of the genetic complement of the parent cells. In the figures below, pink represents a genetic contribution from mom and blue represents a genetic contribution from dad.

Is meiosis good or bad? ›

Meiosis is important because it ensures that all organisms produced via sexual reproduction contain the correct number of chromosomes. Meiosis also produces genetic variation by way of the process of recombination.

What happens in meiosis only? ›

Meiosis is a type of cell division that reduces the number of chromosomes in the parent cell by half and produces four gamete cells. This process is required to produce egg and sperm cells for sexual reproduction.

What controls meiosis? ›

The decision to enter the meiotic cell cycle occurs in response to cues that vary greatly among different organisms. In multicellular organisms, extrinsic cues from surrounding cells control the differentiation of germline stem cells that will enter the meiotic cell cycle.

What cell starts meiosis? ›

Meiosis begins in a specific cell called a germ cell, which like most of the cells in our bodies is diploid, with 46 chromosomes in 23 pairs. Before meiosis begins, the DNA in each chromosome is replicated.

Why is meiosis called? ›

Meiosis is called reduction division because number of chromosomes in daughter cells is reduced to half than that of parent cell. For example a human cell contain 46 chromosomes, but the egg and sperm cells produced as a result of meiotic division contain 23 chromosomes.

Is meiosis asexual? ›

Meiosis does not occur during asexual reproduction. Meiosis is the process of producing gametes (eggs and sperm). Mitosis, on the other hand, is simply the process of cell division. This is the process that animals are going through during regeneration.

Where does meiosis take place? ›

It occurs in the cells of reproductive organs. Meiosis occurs in the testes of males and ovaries of females. Meiosis produces gametes (sperm and ova).

Which best explains the process of meiosis? ›

Meiosis is the process of the formation of gametes or sex cells. In this process single cell divides twice resulting in the formation of four daughter cells. In the process of meiosis, the number of chromosomes reduces to half the number of chromosomes in the mother cell.

What is meiosis for quizlet? ›

The purpose of meiosis is to reproduce the normal diploid cells to haploid cells and to make egg and sperm.

What is meiosis and mitosis short answer? ›

There are two types of cell division: mitosis and meiosis. Most of the time when people refer to “cell division,” they mean mitosis, the process of making new body cells. Meiosis is the type of cell division that creates egg and sperm cells.

What is a meiosis example? ›

Examples of Meiosis

Meiosis may produce spores or gametes depending on the species where in humans and other animals meiosis produces gametes (sperm cells and egg cells) while in plants and algae meiosis is responsible for the production of spores.

What best summarizes meiosis? ›

Expert-Verified Answer

The right answer is It produces male and female sex cells. Meiosis is the process of double cell division allowing the formation of gametes, or sexual cells in eukaryotic organisms. It differs from mitosis, somatic cell division, which takes place only in a time.

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