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The terms detritivore and decomposer are often used interchangeably, but they describe different organisms. Detritivores are usually arthropods and help in the process of remineralization. Detritivores perform the first stage of remineralization, by fragmenting the dead plant matter, allowing decomposers to perform the second stage of ...
Fungi are the primary decomposers in most environments, illustrated here Mycena interrupta. Saprophages are organisms that obtain nutrients by consuming decomposing dead plant or animal biomass. [1] They are distinguished from detritivores in that saprophages are sessile consumers while detritivores are mobile.
Decomposers and detritivores complete this process, by consuming the remains left by scavengers. Scavengers aid in overcoming fluctuations of food resources in the environment. [ 3 ] The process and rate of scavenging is affected by both biotic and abiotic factors, such as carcass size, habitat, temperature, and seasons.
"Detritivore" describes behavior and physiology, while "decomposer" describes an ecosystem role. Therefore, an organism can be both a detritivore and a decomposer. While there are also purely physical processes, like weathering and ultraviolet light , that contribute to decomposition, "decomposer" refers only to living organisms that contribute ...
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Saprobionts should not be confused with detritivores, another class of decomposers which digest internally. [ citation needed ] These organisms can be good sources of extracellular enzymes for industrial processes such as the production of fruit juice.
Prime decomposers are bacteria or fungi, though larger scavengers also play an important role in decomposition if the body is accessible to insects, mites and other animals. Additionally, [3] soil animals are considered key regulators of decomposition at local scales but their role at larger scales is unresolved.
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