What Do A Pine Tree, An Octopus, And A Bacterium Have In Common At The Microscopic Level?

A pine tree, an octopus, and a bacterium have the same microscopic level of life.

Why is bacteria a prokaryotic cell?

Bacteria are prokaryotic cells because they lack a cell wall. Prokaryotic cells have a cell wall to keep them together, but bacteria do not. This is because bacteria are made of a type of cell called a plasmid. A plasmid is a piece of DNA that is not inside a cell, but is inside another cell. When a bacteria takes a piece of the plasmid from another cell, it can start to grow. This can happen because the bacteria can use the plasmid to make new genes.

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Are all bacteria prokaryotic?

No, bacteria are not all prokaryotic. Prokaryotic cells are those that have a nucleus and are able to produce DNA.

Which of the following structures are found in all living cells?

A protein, DNA, and RNA.

What are five structures every cell has?

A nucleus, a mitochondria, a plasma membrane, a Golgi apparatus, and a peroxisome.

What are bacterial characteristics?

Bacterial characteristics include their ability to grow in water, their ability to produce toxins, and their ability to cause disease.

Which cells are bacteria?

Bacteria are single-celled organisms that live in and on the skin and mucous membranes of animals and humans.

What do bacteria have in common with the cells of other living organisms?

Bacteria have a lot in common with cells of other living organisms. They are able to reproduce and grow by taking in food and turning it into a new form. They also have a lot in common with cells in the body. Bacteria can create new cells in your gut, and they can help to clean up your body.

What are the main cytoplasmic structures present in animal cells?

The cytoplasm of animal cells contains a variety of proteins and lipids. These proteins and lipids help to control the cell’s movement and behavior.

How are animal and plant cells different from a cell of a bacterium?

Animal and plant cells are not the same as bacteria cells. Animal cells have a plasma membrane and are filled with a cell’s DNA. Plant cells do not have a plasma membrane and are filled with water. Animal cells use a process called replication to create new cells, while plant cells do not use replication. Animal cells use a process called endocytosis to take in nutrients, while plant cells do not use endocytosis. Animal cells use a process called translation to produce new proteins, while plant cells do not use translation. Animal cells use a process called transcription to produce new DNA, while plant cells do not use transcription.

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What structures are present in plant and animal cells but not bacterial cells?

Plant cells have a plasma membrane and a Golgi apparatus. Animal cells do not.

What are bacteria prokaryotic?

Bacteria are prokaryotic. Prokaryotic cells are smaller and have fewer proteins than eukaryotic cells.

How many cells do bacteria have?

Bacteria have a cell count of about 10-12 cells/ml.

What are 4 structures that all cells have?

The four structures that all cells have are a nucleus, a cytoskeleton, a membrane, and a protein.

What do all cells have quizlet?

All cells have a quizlet.

What do Bacteria and Archaea have in common?

Bacteria and archaea have a common ancestor, which is a bacterium.

How do cells maintain surface area to volume?

A cell’s surface area is determined by its cell volume. The more surface area a cell has, the more nutrients it can offer to its cells.

What 3 structures do all cells have?

A) NucleusB) MembranesC) CytoplasmD) Cell Wall

What do bacteria cells contain?

Bacteria cells contain the bacteria themselves as well as their genetic material.

What are the 3 main parts of a cell and their functions?

A cell contains the nucleus, the cytoplasm, and the cell membrane. The nucleus is where the genetic information for the cell is stored. The cytoplasm is where the cell’s proteins are stored and the cell membrane is where the cell’s water and nutrients are delivered.

What structure is found in animal plant and bacterial cells?

A cell’s cytoplasm is made up of a large number of molecules called proteins. These proteins are folded into proteins chains and can be either folded into small loops or into more complex structures.

How do eukaryotic cells resolve the surface area to volume limitations?

Eukaryotic cells have a limited surface area to volume because they are limited in the number of cells that can form a single layer on the cell membrane. To overcome this limitation, eukaryotic cells use a process called cell division. During cell division, the cell membrane splits into two parts, and the two parts move towards each other and fusion to form a new cell. This process of cell division allows the cell to increase its surface area to volume.

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What cellular structure is found in prokaryotic cells plant cells and animal cells?

There is no cellular structure found in prokaryotic cells.

What structures do plants and bacteria have in common?

Plants and bacteria have a common ancestor, the prokaryotic cell. This ancestor had a single membrane and was the smallest form of life on Earth.

What are the 3 main types of bacteria?

The three main types of bacteria are the Gram-negative bacteria, the Gram-positive bacteria, and the fungal bacteria.

How is a bacterium different from your body’s cells?

A bacterium is a small, single-celled organism that lives on Earth in soil and water. Bacteria can cause disease, while your body’s cells can’t.

What feature is common in all cells?

The DNA of all cells is the same.

How do cells avoid the limitation of surface area?

One way cells avoid the limitation of surface area is by using a variety of surface proteins that help to cover the cell’s surface area in a variety of ways.

What is cytoplasm and its function?

Cytoplasm is the innermost layer of cells and is responsible for the cell’s genetic instructions. It also contains the cell’s energy sources, such as mitochondria.

Is cell wall a bacteria?

Yes, the cell wall is a bacteria.

Where are bacteria found?

Bacteria are found in all parts of the body. They are responsible for creating and maintaining the immune system.

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