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Aerobic organism
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An aerobic organism or aerobe is an that can survive and grow in an environment. The ability to exhibit aerobic respiration may yield benefits to the aerobic organism, as aerobic respiration yields more energy than anaerobic respiration.

(2025). 9783110588903, de Gruyter GmbH & Co. KG.
Energy production of the cell involves the synthesis of ATP by an enzyme called . In aerobic respiration, ATP synthase is coupled with an electron transport chain in which oxygen acts as a terminal electron acceptor. In July 2020, reported that aerobic (mainly), in "quasi-suspended animation", were found in , up to 101.5 million years old, 250 feet below the in the South Pacific Gyre (SPG) ("the deadest spot in the ocean"), and could be the longest-living life forms ever found.


Types
  • need oxygen to grow. In a process known as cellular respiration, these organisms use oxygen to substrates (for example and ) and generate .
  • Facultative anaerobes use oxygen if it is available, but also have anaerobic methods of energy production.
    (1996). 9780963117212, University of Texas Medical Branch at Galveston. .
  • require oxygen for energy production, but are harmed by atmospheric concentrations of oxygen (21% O2).
  • do not use oxygen but are not harmed by it.

When an organism is able to survive in both oxygen and anaerobic environments, the use of the can distinguish between facultative anaerobes and aerotolerant organisms. If the organism is using fermentation in an anaerobic environment, the addition of oxygen will cause facultative anaerobes to suspend fermentation and begin using oxygen for respiration. Aerotolerant organisms must continue fermentation in the presence of oxygen. Facultative organisms grow in both oxygen rich media and oxygen free media.


Aerobic respiration
Aerobic organisms use a process called aerobic respiration to create ATP from ADP and a phosphate. (a ) is oxidized to power the electron transport chain:
(2025). 9788131803226, Laxmi Publications.

This equation is a summary of what happens in three series of biochemical reactions: , the (also known as the Citric acid cycle), and oxidative phosphorylation.

C6H12O6 + 6 O2 + 38 ADP + 38 phosphate → 6 CO2 + 44 H2O + 38 ATP

In Oxidative phosphorylation, ATP is synthesized from ADP and a phosphate using ATP synthase. ATP synthase is powered by a proton-motive force created by using the energy generated from the electron transport chain. A (H+) has a positive charge and if separated by a cellular membrane, it creates a difference in charge between the inside and outside of the membrane. Oxidative phosphorylation occurs in the of .

Aerobic respiration needs O2 because it acts as the terminal electron acceptor in prokaryotes' electron transport chain. Molecular Oxygen is reduced to water in this process.


See also
  • Aerobic digestion
  • Anaerobic digestion
  • Fermentation (biochemistry)
  • Aerobic vaginitis
  • Oxygenation (environmental)

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