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March 10, 2026Microbial Biotechnology0 citationsOpen Access

Multi‐Omics Reveals Phenethyl Acetate and Its Producer Lactiplantibacillus plantarum as Key Drivers of Enhanced Palatability in Alfalfa Silage

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ZFZhihui FuTWTianwei WangJZJ. J. Zhang

Key Points

  • The aim is to understand how Lactiplantibacillus plantarum and phenethyl acetate influence the flavour and palatability of alfalfa silage.
  • Investigated fermentation with Lactiplantibacillus plantarum and phenethyl acetate in alfalfa silage.
  • Measured flavour compounds, feed intake, and taste-active amino acids post-fermentation.
  • Compared fermentation quality of treatment groups against control groups.
  • Both treatments significantly improved fermentation quality and increased feed intake.
  • Lactiplantibacillus plantarum alone led to higher levels of specific flavour compounds.
  • Phenethyl acetate addition resulted in increased palatability despite a decrease in certain amino acids.

Abstract

ABSTRACT High‐quality silage enhances palatability and feed intake; however, the effects of co‐fermentation with flavouring agents and lactic acid bacteria (LAB) on its flavour quality, core microbiota, and taste‐active amino acids remain unclear. This study investigated the effects of fermentation using Lactiplantibacillus plantarum (LP) alone or in combination with phenethyl acetate (LPP) on the flavour profile of alfalfa silage and its subsequent influence on feed intake. Both LP and LPP significantly improved fermentation quality versus control (CK), with markedly higher feed intake—LP > CK and LPP > LP. Key flavour compounds, including dimethyl trisulfide, 4‐ethylphenol and β‐damascenone, were significantly increased in the LP alone group. Contrarily, essential taste‐related amino acids including aspartic acid, alanine, proline, histidine, isoleucine, and valine were decreased, except for arginine. These metabolic shifts collectively contributed to enhanced feed intake. The addition of LPP increased phenylethyl alcohol, benzyl alcohol and hexanal, and decreased arginine, contributing to enhanced palatability. Aryl alcohol dehydrogenase, proline aminopeptidase, histidine dehydrogenase, and branched‐chain amino acid transaminase from LP played a crucial role in the formation of phenylethyl alcohol, proline, histidine and isoleucine during fermentation. These results provide insights into how LAB and flavouring agents jointly regulate flavour development in high‐quality alfalfa silage.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69af95de70916d39fea4de5ehttps://doi.org/10.1111/1751-7915.70332
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