It causes a virus
Basal bodies that give rise to cilia and flagella originate from centrioles in animal cells. These centrioles duplicate during the cell cycle and migrate to the cell membrane, where they mature into basal bodies and nucleate the growth of cilia or flagella.
The centriole is the organelle that gives rise to basal bodies. Basal bodies are associated with the microtubule organization within cilia and flagella.
Dinoflagellates use two tail-like structures called flagella to move. These flagella can propel the dinoflagellate through the water in a spinning motion. Additionally, some dinoflagellates can also move by contracting their cell bodies.
Centrioles, basal bodies, cilia, and flagella are primarily composed of microtubules, which are cylindrical structures made of tubulin protein. Centrioles consist of a specific arrangement of nine triplets of microtubules, while basal bodies serve as the anchoring structures for cilia and flagella, consisting of nine pairs of microtubules arranged in a circular pattern. Cilia and flagella have a core structure called the axoneme, which typically features a "9+2" arrangement of microtubules—nine doublets surrounding two central singlets. These structures play essential roles in cellular movement and the organization of the cytoskeleton.
they use there but to push then they blow a bomb
Basal bodies that give rise to cilia and flagella originate from centrioles in animal cells. These centrioles duplicate during the cell cycle and migrate to the cell membrane, where they mature into basal bodies and nucleate the growth of cilia or flagella.
by using flagella
The centriole is the organelle that gives rise to basal bodies. Basal bodies are associated with the microtubule organization within cilia and flagella.
Dinoflagellates use two tail-like structures called flagella to move. These flagella can propel the dinoflagellate through the water in a spinning motion. Additionally, some dinoflagellates can also move by contracting their cell bodies.
Centrioles, basal bodies, cilia, and flagella are primarily composed of microtubules, which are cylindrical structures made of tubulin protein. Centrioles consist of a specific arrangement of nine triplets of microtubules, while basal bodies serve as the anchoring structures for cilia and flagella, consisting of nine pairs of microtubules arranged in a circular pattern. Cilia and flagella have a core structure called the axoneme, which typically features a "9+2" arrangement of microtubules—nine doublets surrounding two central singlets. These structures play essential roles in cellular movement and the organization of the cytoskeleton.
Periplasmic flagella do not extend outside of the cell's outer membrane, but stay wrapped around the inner membrane compartment of the cell. These bacteria move by twisting their bodies like a cork screw. For more information about this, check out the spirochete flagella.
Basal bodies are most closely associated with cilia and flagella in eukaryotic cells. They serve as the base for the growth and extension of these cellular appendages.
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Flagella is the plural form of flagellum.
Yes, protista do have flagella.
No protists ure a flagella because only animal cells have a flagella.
they use there but to push then they blow a bomb