Effective methane production from the Japanese weed Gyougi-shiba (Cynodon dactylon) is accomplished by colocalization of microbial communities that assimilate water-soluble and -insoluble fractions

FEMS Microbiol Lett. 2021 Mar 3;368(4):fnab015. doi: 10.1093/femsle/fnab015.

Abstract

Weed, an abundant biomass, is considered unsuitable as a raw material for methane production. There are few reports on the anaerobic digestion of weeds without the addition of other organic wastes. To solve this problem, a methane-producing microbial community with weed as a sole feedstock was established. This study mainly focused on the degree of contribution between water-soluble and -insoluble fractions of the weed to methane production; thus, methane production from both fractions was tested separately. Methane production after 80-day batch cultures with whole weed, water-soluble and water-insoluble fractions was 184.5, 96.8 and 26.5 NmL g-1 dry matter (DM), respectively. The results of 16S rRNA gene amplicon sequence analysis revealed that Proteiniphilum saccharofermentans and several Methanobacterium species commonly dominated all cultures, whereas the population dynamics of minor species differed in every culture. Moreover, the remixed culture of microbial communities adapted to water-soluble and -insoluble fractions recovered methane production (252.4 NmL g-1 DM). Based on these results, it can be strongly inferred that colocalizing the minor species in water-soluble and -insoluble fractions is important for effective methane production.

Keywords: lignocellulose; methane production; microbial community; nanopore sequencing; soluble and insoluble fractions; weed.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biomass
  • Bioreactors / microbiology
  • Cynodon / chemistry
  • Cynodon / microbiology*
  • Fatty Acids, Volatile / metabolism
  • Hydrogen-Ion Concentration
  • Methane / metabolism*
  • Microbiota*
  • Plant Weeds / chemistry
  • Plant Weeds / microbiology*
  • Water / chemistry

Substances

  • Fatty Acids, Volatile
  • Water
  • Methane