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January 17, 2026Agronomy0 citationsOpen Access

Soil–Plant Microbial Interactions and Their Effects on Silage Quality and Mycotoxin Risk in Lodged Oats

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YJYongmei JiangXGXusheng GuoHLHaiping Li

Key Points

  • This research aims to understand how soil–plant microbial interactions influence silage quality and mycotoxin risk in lodged oats.
  • Harvested upright and lodged oat forage at multiple time points
  • Conducted ensiling over a 60-day period
  • Analyzed dry matter, water-soluble carbohydrate, crude protein, and fiber content
  • Assessed microbial community changes and mycotoxin accumulation
  • Dry matter and water-soluble carbohydrates significantly decreased in lodged oats
  • Crude protein and fiber content increased in lodged oats
  • Aflatoxin levels in silage exceeded EU limits after lodging
  • Lactobacillus dominated the microbial community in lodged silage
  • Lower levels of mycotoxins were found in silage from the upper layer after seven days of lodging.

Abstract

This study explored the patterns and mechanisms influencing changes in silage quality, mycotoxin accumulation, and microbial community structure in oat silage after lodging. Upright oat forage (control, CK), lodging oat forage (upper layer (UL), lower layer (LL), and mixed layers (MLs) were harvested at 0, 7, 25, and 45 days after lodging and ensiled for 60 days. The results showed that the dry matter (DM) and water-soluble carbohydrate (WSC) content decreased significantly (p < 0.05), whereas crude protein (CP) and fiber content increased significantly compared to upright oats (p < 0.05). The WSC and CP content in silage decreased with increasing lodging duration. The fiber content increased in late harvest after lodging. The risk of mycotoxin infection increased after lodging, with aflatoxin levels exceeding EU limits. The mycotoxins in UL silage were the lowest when lodging lasted for seven days. Lodging oat silage was dominated by Lactobacillus, and the Pseudomonas in the lodging group was less than 4%. The fungi in lodging oat silage was lower, and the UL (upper layer) treatment was the lowest when lodging for 7 days. Overall, the transfer of microorganisms, especially Plectosphaerella, Fusarium, Alternaria, Cladosporium, and Botryotrichum, from soil to silage following oat collapse is of interest. The results suggest the soil–plant microbial interactions and their effects on silage fermentation and mycotoxins in lodging oats.

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Cite This Study

Jiang et al. (2026) studied this question.

synapsesocial.com/papers/696b25f3d2a12237a93493a0https://doi.org/10.3390/agronomy16020209
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