This is a tiny green living thing. 
This tiny green living thing is called Chlamydomonas. 
It lives in ponds or wet soil. Some live in sea water. Some even live in snow! 
It has two long tails to swim. These tails help it move.
It has a red eye spot. This spot helps it find light. It uses light to make food.
It can make more of itself. Some kinds are even safe to eat.
Chlamydomonas is a tiny green living thing. It is a type of algae. 

These algae are made of just one cell. This cell can move around. It uses two long tails called flagella.
The cell has a green part called a chloroplast. This part is often shaped like a cup. Inside the chloroplast, the cell makes starch for food. The cell also has a red eye spot. This spot helps the cell sense light. This is important because most kinds need light to live. Some kinds can grow in the dark if they have acetate. Acetate is a type of food. Scientists study these algae to learn about how cells work.
Chlamydomonas is a group of tiny green algae. 
Moving around is a very important part of their life. Each cell has two long tails called flagella.
Inside the cell, there is a large green part called a chloroplast.
There are many different kinds of Chlamydomonas. Scientists have described about 500 different species. Some famous names include Chlamydomonas reinhardtii and Chlamydomonas acidophila. The name comes from Greek words. Chlamys means a cloak or a mantle. Monas means solitary. This describes how they live as single cells. Some species are even edible for people to eat.
Learning about these algae helps us understand the world. They can reproduce in many different ways. They can make new cells asexually or sexually. Some can even grow in the dark. If they have a food called acetate, they do not need light. 
Chlamydomonas is a genus of green algae consisting of unicellular flagellates. 

The cell has several specialized parts that allow it to function. It is generally spherical or cylindrical in shape. Some species may even look like an elongated spindle. A key feature is the presence of two anterior flagella. These are long, whip-like tails located at the front of the cell.
Photosynthesis is a vital process for most Chlamydomonas species. They contain a large, green, cup-shaped chloroplast. This chloroplast contains bands of photosynthetic thylakoids. These thylakoids are not organized into structures called grana. Inside the chloroplast, there is a single large pyrenoid. The pyrenoid is located at the posterior end and is surrounded by a starch sheath. This is where the cell forms starch from its photosynthetic products. The nucleus of the cell is actually enclosed within this cup-shaped chloroplast.
To navigate its environment, the cell uses a specialized eye spot. This eye spot is located in the anterior portion of the chloroplast. It consists of two or three rows of fat droplets arranged in a line. These droplets help the cell sense light through photosensitivity. Chlamydomonas even contains ion channels called channelrhodopsins. These channels are directly activated by light. This allows the cell to react to its surroundings with great precision. Near the bases of the flagella, the cell also maintains contractile vacuoles.
There are many different ways these algae can reproduce. They can reproduce asexually through zoospores, aplanospores, hypnospores, or a palmella stage. They can also reproduce sexually. This sexual reproduction can happen through isogamy, anisogamy, or oogamy. While most species are obligate phototrophs, meaning they must have light to live, some are more flexible. For example, Chlamydomonas reinhardtii and Chlamydomonas dysostosis are facultative heterotrophs. This means they can grow in the dark if they have acetate to use as a carbon source.
Science has changed how we classify these organisms over time. The name Chlamydomonas comes from the Greek words "chlamys," meaning cloak or mantle, and "monas," meaning solitary. This refers to their nature as single, cloaked cells. Historically, scientists used morphological data, which is the study of physical shapes, to define the genus. However, molecular phylogeny studies—which look at genetic relationships—showed that the traditional genus was polyphyletic. This means the group did not all come from a single common ancestor. Because of this, many species were reclassified into new groups like Oogamochlamys or Lobochlamys.
Today, the study of Chlamydomonas continues to provide deep insights into biology. Scientists study their flagellar motility, which is how they move using their tails. They also look at chloroplast dynamics and biogenesis, which is how the chloroplast is made and how it changes. The genus is incredibly diverse, with about 500 species having been described. Some species are even edible. By studying these tiny, single-celled organisms, researchers can learn about the complex rules that govern all life on Earth.
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