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Increased activities of microorganisms and soil enzymes also indicated that the seabuckthorn plantation is effective in improving the soil quality and these activities can be used as important biological indicators to measure the restoration of damaged ecosystem.
We will describe the OAR, define roles of microorganisms and soil organic matter (SOM) in soil health, outline potential soil health indicators and common methodology, and discuss the importance of soil health assessments and management challenges facing the OAR.
In applying manure from antibiotic-treated animals to arable soils, sulfadiazine can reach the environment, but fate and transformation processes and the consequences for soil microorganisms and soil functions have not been studied adequately.
In the present study plant diversity was the most important plant community trait affecting soil microorganisms and soil fauna.
We studied changes in the impacts of plant diversity and presence of key functional groups on soil biota by investigating the performance of soil microorganisms and soil fauna two, four and six years after the establishment of model grasslands.
In order to improve our mechanistic understanding of plant diversity effects on soil biota, we repeatedly sampled soil microorganisms and soil fauna in the framework of the Jena Experiment, a large grassland plant diversity experiment in Germany [18].
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Future research is recommended focusing on comparative studies on herbaceous species richness, diversity and density, horizontal and vertical distribution of soil seed banks, species richness of soil microorganisms, plant and soil biomass, plant and soil carbon pools (above and below ground) as well as soil contents and properties inside and outside the ORI compound.
Future research is recommended focusing on comparative studies on herbaceous species richness, diversity and density, horizontal and vertical distribution of soil seed banks, species richness in soil microorganisms, plant and soil biomass, plant and carbon pools both above and below ground as well as soil contents and properties inside and outside the ORI compound.
Plant growth promoting rhizobacteria (PGPR) has been functioning as a co-evolution between plants and microbes showing antagonistic and synergistic interactions with microorganisms and the soil.
M. sativa develops a long tap-root [52], providing less fine root biomass for microorganisms and detritivorous soil fauna than legumes with different root architecture.
The diversity, activity, and carbon utilization pattern of soil microorganism community and soil physicochemical properties were all impacted by the introduced species.
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