Diversity of formyltetrahydrofolate synthetase genes in the rumens of roe deer (Capreolus pygargus) and sika deer (Cervus nippon) fed different diets

Can J Microbiol. 2017 Jan;63(1):11-19. doi: 10.1139/cjm-2016-0424. Epub 2016 Aug 23.

Abstract

Reductive acetogenesis by homoacetogens represents an alternative pathway to methanogenesis to remove metabolic hydrogen during rumen fermentation. In this study, we investigated the occurrence of homoacetogen in the rumens of pasture-fed roe deer (Capreolus pygargus) and sika deer (Cervus nippon) fed either oak-leaf-based (tannin-rich, 100 mg/kg dried matter), corn-stover-based, or corn-silage-based diets, by using formyltetrahydrofolate synthetase (FTHFS) gene sequences as a marker. The diversity and richness of FTHFS sequences was lowest in animals fed oak leaf, indicating that tannin-containing plants may affect rumen homoacetogen diversity. FTHFS amino acid sequences in the rumen of roe deer significantly differed from those of sika deer. The phylogenetic analyses showed that 44.8% of sequences in pasture-fed roe deer, and 72.1%, 81.1%, and 37.5% of sequences in sika deer fed oak-leaf-, corn-stover-, and corn-silage-based diets, respectively, may represent novel bacteria that have not yet been cultured. These results demonstrate that the rumens of roe deer and sika deer harbor potentially novel homoacetogens and that diet may influence homoacetogen community structure.

Keywords: cerf; deer; diets; homoacetogens; homoacétogènes; régimes alimentaires.

MeSH terms

  • Animal Feed / analysis
  • Animals
  • Bacteria / classification
  • Bacteria / enzymology*
  • Bacteria / genetics
  • Bacteria / isolation & purification
  • Bacterial Proteins / genetics
  • Bacterial Proteins / metabolism
  • Deer / metabolism
  • Deer / microbiology
  • Fermentation
  • Formate-Tetrahydrofolate Ligase / genetics*
  • Formate-Tetrahydrofolate Ligase / metabolism
  • Phylogeny
  • Rumen / metabolism
  • Rumen / microbiology*
  • Silage / analysis
  • Zea mays / metabolism

Substances

  • Bacterial Proteins
  • Formate-Tetrahydrofolate Ligase