Changes in physico-chemical characteristics and viable bacterial communities during fermentation of alfalfa silages inoculated with Lactobacillus plantarum

World J Microbiol Biotechnol. 2021 Jun 28;37(7):127. doi: 10.1007/s11274-021-03095-2.

Abstract

This study investigated the effect of inoculating Lactobacillus (L.) plantarum PS-8 in fermentation of alfalfa silages. We monitored the fermentation characteristics and bacterial population dynamics during the ensiling process. PacBio single molecule real time sequencing was combined with propidium monoazide (PMA) treatment to monitor the viable microbiota dynamics. We found that inoculating L. plantarum PS-8 may improve the silage quality by accelerating acidification, reducing the amounts of clostridia, coliform bacteria, molds and yeasts, elevating the protein and organic acid contents (except butyrate), and enhancing lactic acid bacteria (LAB) while suppressing harmful microorganisms. Some significant differential abundant taxa were found between the PMA-treated and non-treated microbiota. For example, the relative abundances of L. brevis, L. plantarum, and Pediococcus pentosaceus were significantly higher in the PMA-treated group than the non-PMA-treated group, suggesting obvious differences between the viable and non-viable microbiota. It would thus be necessary to distinguish between the viable and non-viable microbial communities to further understand their physiological contribution in silage fermentation. By tracking the dynamics of viable microbiota in relation with changes in the physico-chemical parameters, our study provided novel insights into the beneficial effects of inoculating L. plantarum PS-8 in silage fermentation and the physiological function of the viable bacterial communities.

Keywords: Alfalfa; Lactobacillus plantarum PS-8; Propidium monoazide (PMA); Silage; Single molecule real time sequencing (SMRT).

MeSH terms

  • Azides / analysis
  • Bacteria / classification
  • Bacteria / genetics
  • Bacteria / growth & development*
  • Bacteria / metabolism*
  • Biodiversity
  • DNA, Bacterial
  • Fermentation
  • Fungi / growth & development*
  • Lactobacillales / growth & development
  • Lactobacillus plantarum / growth & development*
  • Medicago sativa / metabolism
  • Medicago sativa / microbiology*
  • Microbiota*
  • Propidium / analogs & derivatives
  • Propidium / analysis
  • Silage / microbiology*

Substances

  • Azides
  • DNA, Bacterial
  • propidium monoazide
  • Propidium