Microbial transformation of traditional fermented fertilizer bokashi alters chemical composition and improves plant growth
Abo-Sido, N.; Goss, J. W.; Griffith, A.; Klepac-Ceraj, V.
Show abstract
Bokashi is an organic soil amendment that makes use of microbial processes to break down agricultural waste and create a nutrient-rich fertilizer. The benefits of various types of bokashi on soil fertility and plant growth are well documented, however the changes in microbial community composition and nutrients during bokashi maturation remain poorly characterized. Here, we aimed to identify potential differences in the quality of bokashi made using different ingredients and to investigate the biochemical transformation and microbial community succession of bokashi throughout the maturation process. We compared the effects of these different types of bokashi on the growth of cucumber (Cucumis sativus) and kale (Brassica napus subsp. pabularia) seedlings, measured concentrations of NH4+ and PO43-, and characterized the bokashi bacterial and fungal communities over a 12-day maturation period. We found that cucumber and kale plants growing in all types of bokashi-amended soils exhibited increased chlorophyll levels and dry biomass. During bokashi maturation, we observed a decrease in available PO43-, and an increase in NH4+. There also appeared to be an increase in relative abundances of decomposers and beneficial microbes and a decrease in putative plant pathogens. Regardless of starting bokashi ingredients and differences in microbial composition and nutrient trends, all types of bokashi similarly improve plant growth and contain beneficial microbes.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Plant Genotype Influences Physicochemical Properties of Substrate as well as Bacterial and Fungal Assemblages in the Rhizosphere of Balsam Poplar 97%
- Soil disturbance affects plant growth via soil microbial community shifts 97%
- Differential impact of plant secondary metabolites on the soil microbiota 97%
Similar papers in this journal
Similar papers in this journal
- Soil prokaryotes associated with decreasing pathogen density during anaerobic soil disinfestation 97%
- A meta-analysis of the effect of organic and mineral fertilizers on soil microbial diversity 95%
- Pinpointing the distinctive impacts of ten cover crop species on the resident and active fractions of the soil microbiome 95%
Similar papers in this journal
- One-time Nitrogen Fertilization Shifts Switchgrass Soil Microbiomes within a Context of Larger Spatial and Temporal Variation 95%
- Effects of initial microbial biomass abundance on respiration during pine litter decomposition 95%
- A simple pyrocosm for studying soil microbial response to fire reveals a rapid, massive response by Pyronema species 95%
Similar papers in this journal
- A comparison among EL-FAME, PLFA, and quantitative PCR methods to detect changes in the abundance of soil bacteria and fungi 96%
- Microbial extracellular polysaccharide production and aggregate stability controlled by Switchgrass (Panicum virgatum) root biomass and soil water potential 95%
- Soil N2O emission potential falls along a denitrification phenotype gradient linked to differences in microbiome, rainfall and carbon availability 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.