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The EM preparation contains numerous enzymes which can decompose the organic matter in an environmentally friendly manner and ensure the survival and growth of the microorganisms both in the soil and in other environmental media (Namasivayam and Kirithiga 2010).
The microorganisms both in the earthworm guts and in the feedstock are responsible for the biochemical degradation of the organic matter while the earthworms are responsible for the fragmentation of the substrate which increases the surface area exposed to the microorganisms.
Microorganisms both in the intestinal organ of the worms and the organic waste have the ability to convert insoluble P into soluble forms.
Vermicomposting is a bio-oxidative process where the microorganisms, both in the gut of the earthworms and in the feedstock, are responsible for the biochemical degradation of the organic matter while the earthworms fragment the substrate, thereby increasing the surface area exposed to the microorganisms.
In the literature, there are studies about the indicator microorganisms both in composting materials and during composting (Golueke 1982; Pereira-Neto et al. 1986; Mandelbaum et al. 1988; de Bertoldi et al. 1991; Shuval et al. 1991; Sesay et al. 1997; Tiquia et al. 1998; Shaban 1999; Tiquia and Tam 2000a, b; Ferrer et al. 2001; Hassen et al. 2001; Lin 2008; Rainisalo et al. 2011).
A number of studies have explored how regulation of metabolic pathways affects the growth rate of microorganisms, both in the steady state and in response to changes in the local environment.
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In recent years, there has been increasing interest in using microorganisms both for overexpression of native proteins and heterologous expression of proteins from other organisms (Medema et al. 2011).
Taking into account the fact that biofilm structures are the main factor of virulence involved in infections with coagulase-negative staphylococci [ 1], it seems to be essential to determine their antibiotic activity considering infections caused by these microorganisms occur both in planktonic forms and those forming a biofilm.
The global database derived from this collective effort established a sound scientific understanding of nutrient dynamics and the vital role of microorganisms, both autotrophic and heterotrophic, in the coupled organic-matter production and decomposition cycles in the sea.
Our lab uses molecular techniques to study groups of microorganisms (both archaea and bacteria) in the marine environment that to date have not been cultivated.
Application of this dye would enable color-based selection in thermophilic microorganisms, both anaerobic and aerobic.
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