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  2. Flagellum - Wikipedia

    en.wikipedia.org/wiki/Flagellum

    A flagellum (/ fləˈdʒɛləm /; pl.: flagella) (Latin for 'whip' or 'scourge') is a hairlike appendage that protrudes from certain plant and animal sperm cells, from fungal spores (zoospores), and from a wide range of microorganisms to provide motility. [1][2][3][4] Many protists with flagella are known as flagellates.

  3. Undulipodium - Wikipedia

    en.wikipedia.org/wiki/Undulipodium

    An undulipodium or undulopodium (Greek: "swinging foot"; plural undulipodia), or a 9+2 organelle is a motile filamentous extracellular projection of eukaryotic cells.It is basically synonymous to flagella and cilia which are differing terms for similar molecular structures used on different types of cells, and usually correspond to different waveforms.

  4. Axoneme - Wikipedia

    en.wikipedia.org/wiki/Axoneme

    In molecular biology, an axoneme, also called an axial filament, is the microtubule -based cytoskeletal structure that forms the core of a cilium or flagellum. [1][2] Cilia and flagella are found on many cells, organisms, and microorganisms, to provide motility. The axoneme serves as the "skeleton" of these organelles, both giving support to ...

  5. Bacterial motility - Wikipedia

    en.wikipedia.org/wiki/Bacterial_motility

    Some eukaryotic cells also use flagella — and they can be found in some protists and plants as well as animal cells. Eukaryotic flagella are complex cellular projections that lash back and forth, rather than in a circular motion. Prokaryotic flagella use a rotary motor, and the eukaryotic flagella use a complex sliding filament system.

  6. Flagellin - Wikipedia

    en.wikipedia.org/wiki/Flagellin

    Flagellin. Flagellins are a family of proteins present in flagellated bacteria [1] which arrange themselves in a hollow cylinder to form the filament in a bacterial flagellum. Flagellin has a mass on average of about 40,000 daltons. [2][3] Flagellins are the principal component of bacterial flagella that have a crucial role in bacterial motility.

  7. Evolution of flagella - Wikipedia

    en.wikipedia.org/wiki/Evolution_of_flagella

    The evolutionary origin of eubacterial flagellae is probably an example of indirect evolution. A hypothesis on the evolutionary pathway of the eubacterial flagellum argues that a secretory system evolved first, based around the SMC rod- and pore-forming complex. This is presumed to be the common ancestor of the type-III secretory system and the ...

  8. Run-and-tumble motion - Wikipedia

    en.wikipedia.org/wiki/Run-and-tumble_motion

    v. t. e. Run-and-tumble motion is a movement pattern exhibited by certain bacteria and other microscopic agents. It consists of an alternating sequence of "runs" and "tumbles": during a run, the agent propels itself in a fixed (or slowly varying) direction, and during a tumble, it remains stationary while it reorients itself in preparation for ...

  9. Choanoflagellate - Wikipedia

    en.wikipedia.org/wiki/Choanoflagellate

    Movement of the flagellum draws water through the collar, and bacteria and detritus are captured by the microvilli and ingested. [13] Water currents generated by the flagellum also push free-swimming cells along, as in animal sperm. In contrast, most other flagellates are pulled by their flagella. [citation needed]