Cleaner anaerobic fermentation and greenhouse gas reduction of crop straw

  • Du Z
  • Nakagawa A
  • Fang J
  • et al.
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Abstract

To effectively utilize crop by-product resources, we applied microbial additives to silage fermentation of fresh rice straw. Fresh rice straw is extremely rich in microbial diversity, which was significantly reduced after silage fermentation, and its nutrients were well preserved. Silage fermentation was improved by microbial additives, where the combination of cellulase and lactic acid bacteria acted as enzyme-bacteria synergists to promote lactic acid fermentation and inhibit the proliferation of harmful bacteria, such as protein degradation and gas production, thereby reducing GHG emissions and DM losses. The microbial additives accelerated the formation of a symbiotic microbial network system dominated by lactic acid bacteria, which regulated silage fermentation and improved microbial metabolic pathways for carbohydrates and amino acids, as well as biosynthesis of secondary metabolites.

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Du, Z., Nakagawa, A., Fang, J., Ridwan, R., Astuti, W. D., Sarwono, K. A., … Cai, Y. (2024). Cleaner anaerobic fermentation and greenhouse gas reduction of crop straw. Microbiology Spectrum, 12(7). https://doi.org/10.1128/spectrum.00520-24

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