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  2. Symbiogenesis - Wikipedia

    en.wikipedia.org/wiki/Symbiogenesis

    The original theory by Lynn Margulis proposed an additional preliminary merger, but this is poorly supported and not now generally believed. [1] Symbiogenesis (endosymbiotic theory, or serial endosymbiotic theory [2]) is the leading evolutionary theory of the origin of eukaryotic cells from prokaryotic organisms. [3]

  3. Nucleomorph - Wikipedia

    en.wikipedia.org/wiki/Nucleomorph

    The chloroplast is surrounded by 4 membranes: 2 layers resulting from the primary, and 2 resulting from the secondary. When the nucleus of the algal endosymbiont remains, it's called a "nucleomorph". [1] Most tertiary endosymbiosis events end up with only the plastid retained.

  4. Endosymbiont - Wikipedia

    en.wikipedia.org/wiki/Endosymbiont

    A representation of the endosymbiotic theory. An endosymbiont or endobiont [1] is an organism that lives within the body or cells of another organism. Typically the two organisms are in a mutualistic relationship.

  5. Symbiotic bacteria - Wikipedia

    en.wikipedia.org/wiki/Symbiotic_bacteria

    The theory of endosymbiosis, as known as symbiogenesis, provides an explanation for the evolution of eukaryotic organisms. According to the theory of endosymbiosis for the origin of eukaryotic cells, scientists believe that eukaryotes originated from the relationship between two or more prokaryotic cells approximately 2.7 billion years ago.

  6. Plastid evolution - Wikipedia

    en.wikipedia.org/wiki/Plastid_evolution

    Chloroplasts and mitochondria also replicate semi-autonomously outside of the cell cycle replication system via binary fission. [12] Consistent with the theory, decreased genome size within the organelle and gene integration into the nucleus occurred. Chloroplasts genomes encode 50-200 proteins, compared to the thousands in cyanobacterium. [13]

  7. Lynn Margulis - Wikipedia

    en.wikipedia.org/wiki/Lynn_Margulis

    She later formulated a theory that proposed symbiotic relationships between organisms of different phyla, or kingdoms, as the driving force of evolution, and explained genetic variation as occurring mainly through transfer of nuclear information between bacterial cells or viruses and eukaryotic cells. [25]

  8. Eukaryogenesis - Wikipedia

    en.wikipedia.org/wiki/Eukaryogenesis

    A second merger, 1.6 billion years ago, added chloroplasts, creating the green plants. [5] According to the theory of symbiogenesis (also known as the endosymbiotic theory) championed by Lynn Margulis, a member of the archaea gained a bacterial cell as a component. The archaeal cell was a member of the Asgard group.

  9. Konstantin Mereschkowski - Wikipedia

    en.wikipedia.org/wiki/Konstantin_Mereschkowski

    Konstantin Sergeevich Mereschkowski [a] (Russian: Константи́н Серге́евич Мережко́вский, IPA: [mʲɪrʲɪˈʂkofskʲɪj]; 4 August 1855 [O.S. 23 July] – 9 January 1921) was a Russian biologist and botanist, active mainly around Kazan, whose research on lichens led him to propose the theory of symbiogenesis – that larger, more complex cells (of eukaryotes ...