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  2. Photoautotroph - Wikipedia

    en.wikipedia.org/wiki/Photoautotroph

    Winogradsky column showing Photoautotrophs in purple and green. Photoautotrophs are organisms that can utilize light energy from sunlight and elements (such as carbon) from inorganic compounds to produce organic materials needed to sustain their own metabolism (i.e. autotrophy).

  3. Acidithiobacillus thiooxidans - Wikipedia

    en.wikipedia.org/wiki/Acidithiobacillus_thiooxidans

    The following characteristic reactions accompany the growth of A. thiooxidans in the presence of tricalcium phosphate: the layer on the surface of the medium formed by sulfur tends to drop to the bottom, tricalcium phosphate is dissolved by the product of sulfur oxidation, sulfuric acid, giving soluble phosphate and CaSO 4 + 2 H 2 O, and ...

  4. Lithoautotroph - Wikipedia

    en.wikipedia.org/wiki/Lithoautotroph

    A lithoautotroph is an organism which derives energy from reactions of reduced compounds of mineral (inorganic) origin. [1] Two types of lithoautotrophs are distinguished by their energy source; photolithoautotrophs derive their energy from light while chemolithoautotrophs (chemolithotrophs or chemoautotrophs) derive their energy from chemical reactions. [1]

  5. Primary nutritional groups - Wikipedia

    en.wikipedia.org/wiki/Primary_nutritional_groups

    Organotrophs use organic compounds as electron/hydrogen donors. Lithotrophs use inorganic compounds as electron/hydrogen donors.. The electrons or hydrogen atoms from reducing equivalents (electron donors) are needed by both phototrophs and chemotrophs in reduction-oxidation reactions that transfer energy in the anabolic processes of ATP synthesis (in heterotrophs) or biosynthesis (in autotrophs).

  6. Autotroph - Wikipedia

    en.wikipedia.org/wiki/Autotroph

    The primary producers can convert the energy in the light (phototroph and photoautotroph) or the energy in inorganic chemical compounds (chemotrophs or chemolithotrophs) to build organic molecules, which is usually accumulated in the form of biomass and will be used as carbon and energy source by other organisms (e.g. heterotrophs and mixotrophs).

  7. Bacteriochlorophyll - Wikipedia

    en.wikipedia.org/wiki/Bacteriochlorophyll

    Chemical structures comparing porphin, chlorin, bacteriochlorin, and isobacteriochlorin.Note relocation of C=C double bond between the two bacteriochlorin isomers.There are two π electrons (symbolized by π e −) for every double bond in the macrocycle.

  8. Aerobic anoxygenic phototrophic bacteria - Wikipedia

    en.wikipedia.org/wiki/Aerobic_anoxygenic...

    Aerobic anoxygenic phototrophic bacteria are divided into two genera. There are two marine (Erythrobacter and Roseobacter) and six freshwater (Acidiphilium, Erythromicrobium, Blastomonas (synonym: Erythromonas), Porphyrobacter, Roseococcus, and Sandaracinobacter) genera of these bacteria. [3]

  9. Phototroph - Wikipedia

    en.wikipedia.org/wiki/Phototroph

    Terrestrial and aquatic phototrophs: plants grow on a fallen log floating in algae-rich water. Phototrophs (from Ancient Greek φῶς, φωτός (phôs, phōtós) 'light' and τροφή (trophḗ) 'nourishment') are organisms that carry out photon capture to produce complex organic compounds (e.g. carbohydrates) and acquire energy.