Plant litter decomposition is not a purely chemical or physical process, it is basically a biological one resulting from the diverse activities of microorganisms, protozoa and various other soil organisms like insects and worms. A &D (actinomycetes & fungi) ... Mycorrhizae involve a symbiotic combination of certain bacteria and plant … Colonies of bacteria begin the process of decomposition shortly after the death of an organic life form, be it plant, animal or human. 2016a, b). Aerobic composting is a dynamic process in which the work is done by the combined activities of a wide succession of mixed bacteria, actinomycetes, fungi, and other biological populations. Meso- and macrofauna contribute to organic matter decomposition primarily by__. 2010). Bacteria play an important role in litter decomposition, especially late in the decomposition process, when they become abundant. Factors That Influence the Decomposition Rate of Organic Matter in the Soil. ... microbial group(s) are responsible for a major proportion of the nitrogen fixed globally in symbiosis with higher plants. Although the decomposition processes of plant residues in rice field soil has been documented, the structure and dynamics of the microbial communities involved are poorly understood. Evaluation of ecological succession of microbial communities in organic matter decomposition in mangrove plant in the State of São Paulo ... they have high productivity and are known as areas of production and export of organic matter, and also provide shelter, food and location for reproduction of various marine animals. Healthy soil is living soil, teeming with living things from microscopic bacteria to earthworms. Although some studies tend to confirm the dominance of fungi in litter decomposition in situ (Schneider et al. Process of Decomposition by Microorganisms • Within a very short time period microorganisms can breakdown and digest a large amount of soft tissue, resulting in a large production of gas and ‘decomposition fluid’ • As decomposition proceeds, the skin begins to darken to various shades of green and brown. Bacteria is even useful in the degradation of oil spills. leaf litter decomposition; reciprocal transplant; bacteria; fungi; elevation gradient; Microbial communities are the engines of decomposition (), a fundamental process regulating the carbon cycle.In ecosystems, microbial decomposition converts detritus into CO 2 and releases nutrients for plant growth. Soil microorganisms are diverse, although they share functions during the decomposition of organic matter. Thus, preferences for soil conditions and litter quality were explored to understand their niche partitioning. Understanding plant litter decomposition in broad-leaved forests is important because it influences the geochemical cycles of nutrients and represents a vital link in the global carbon cycle. The action is essential for the dead matter to be managed. The bacteria and fungi play a very significant role in plant litter decomposition and humus formation. Although the decomposition processes of plant residues in rice field soil has been documented, the structure and dynamics of the microbial communities involved are poorly understood. Microbial decomposer diversity, as well as the compositional variation of decomposer community during decomposition, all affected the decomposition rate (Setälä and Mclean 2004, Dang et al. The fungi which 2012), others indicate that the role of bacteria in the decay of dead plant biomass is also important (López-Mondéjar et al. Matter decomposition primarily by__ ) are responsible for a major proportion of the nitrogen fixed globally in symbiosis higher. 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