Project description:Metagenomics in organic fertilizer fermented with erythromycin fermentation residue enhanced by Trichoderma asperellum Ta TS7-1
| PRJNA1290333 | ENA
Project description:Metagenomics in soil treated with organic fertilizer that Trichoderma-enhanced composting of erythromycin residue
| PRJNA1289197 | ENA
Project description:Metagenomics in soil treated with organic fertilizer that Trichoderma-enhanced composting of erythromycin residue
| PRJNA1289910 | ENA
Project description:Metagenomics in soil treated with organic fertilizer that Trichoderma asperellum TS7-1-enhanced composting of erythromycin fermintation residue
Project description:Anaerobic digestion (AD) is a core technology in management of urban organic wastes, converting a fraction of the organic carbon to methane and the residual digestate, the biorest, have a great potential to become a major organic fertilizer for agricultural soils in the future. At the same time, mitigation of N2O-emissions from the agricultural soils is needed to reduce the climate forcing by food production. Our goal was therefore to enrich for N2O reducing bacteria in AD digestates prior to fertilization, and in this way provide an avenue for large-scale and low-cost cultivation of strongly N2O reducing bacteria which can be directly introduced to agricultural soils in large enough volumes to alter the fate of nitrogen in the soils. Gas kinetics and meta-omics (metagenomics and metaproteomics) analyses of the N2O enriched digestates identified populations of N2O respiring organisms that grew by harvesting fermentation intermediates of the methanogenic consortium.
2022-02-16 | PXD022030 | Pride
Project description:Pot experiment of erythromycin fermentation residue, metagenomic sequencing
Project description:To investigate the effects of organic fertilizer replacing chemical fertilizer on the growth and development of barley (Kunlun-14), a pot experiment was conducted. The study examined the impacts of different ratios of organic fertilizer replacing chemical fertilizer nitrogen (0%, 40%, 100%, denoted as OFR0, OFR40, OFR100, respectively) on the growth characteristics, leaf carbon-nitrogen balance, and nitrogen metabolism enzyme activities of barley.
Project description:Erythromycin is a medically important antibiotic, biosynthesized by the actinomycete Saccharopolyspora erythraea. We used transcriptomic approach to compare whole genome expression in erythromycin high-producing strain, compared to the wild type S. erythraea strain in four stages of fermentation.