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  2. Prokaryote - Wikipedia

    en.wikipedia.org/wiki/Prokaryote

    The cellular components of prokaryotes are not enclosed in membranes within the cytoplasm, like eukaryotic organelles. Bacteria have microcompartments, quasi-organelles enclosed in protein shells such as encapsulin protein cages, [4] [5] while both bacteria and some archaea have gas vesicles. [6] Prokaryotes have simple cell skeletons.

  3. Monocercomonoides - Wikipedia

    en.wikipedia.org/wiki/Monocercomonoides

    Monocercomonoides is a genus of flagellate Excavata belonging to the order Oxymonadida.It was established by Bernard V. Travis and was first described as those with "polymastiginid flagellates having three anterior flagella and a trailing one originating at a single basal granule located in front of the anteriorly positioned nucleus, and a more or less well-defined axostyle". [14]

  4. Symbiogenesis - Wikipedia

    en.wikipedia.org/wiki/Symbiogenesis

    Mitochondria and plastids contain their own ribosomes; these are more similar to those of bacteria (70S) than those of eukaryotes. [74] Proteins created by mitochondria and chloroplasts use N-formylmethionine as the initiating amino acid, as do proteins created by bacteria but not proteins created by eukaryotic nuclear genes or archaea. [75] [76]

  5. Mitochondrion - Wikipedia

    en.wikipedia.org/wiki/Mitochondrion

    A mitochondrion (pl. mitochondria) is an organelle found in the cells of most eukaryotes, such as animals, plants and fungi. Mitochondria have a double membrane structure and use aerobic respiration to generate adenosine triphosphate (ATP), which is used throughout the cell as a source of chemical energy. [2]

  6. Mitochondrial matrix - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_matrix

    The mitochondria contains its own set of DNA used to produce proteins found in the electron transport chain. The mitochondrial DNA only codes for about thirteen proteins that are used in processing mitochondrial transcripts, ribosomal proteins , ribosomal RNA , transfer RNA , and protein subunits found in the protein complexes of the electron ...

  7. Inner mitochondrial membrane - Wikipedia

    en.wikipedia.org/wiki/Inner_mitochondrial_membrane

    This phenomenon can be explained by the endosymbiont hypothesis of the origin of mitochondria as prokaryotes internalized by a eukaryotic host cell. In pig heart mitochondria, phosphatidylethanolamine makes up the majority of the inner mitochondrial membrane at 37.0% of the phospholipid composition.

  8. Mitochondrial DNA - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_DNA

    The final genome type found in plants and fungi is a linear genome made up of homogeneous DNA molecules (type 5). [22] [23] [24] Great variation in mtDNA gene content and size exists among fungi and plants, although there appears to be a core subset of genes present in all eukaryotes (except for the few that have no mitochondria at all). [9]

  9. Organelle - Wikipedia

    en.wikipedia.org/wiki/Organelle

    Compartmentalization is a feature of prokaryotic photosynthetic structures. [2] Purple bacteria have "chromatophores", which are reaction centers found in invaginations of the cell membrane. [2] Green sulfur bacteria have chlorosomes, which are photosynthetic antenna complexes found bonded to cell membranes. [2]