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Fungal species and mycotoxins in mouldy spots of grass and maize silages in Austria

Felipe Penagos-Tabares; Ratchaneewan Khiaosa-ard; Marlene Schmidt; Cátia Pacífico; Johannes Faas; Timothy Jenkins; Veronika Nagl; Michael Sulyok; Roman Labuda; Qendrim Zebeli
Mycotoxin Research · Vol. 38, Issue 2 · pp. 117-136 · 2022

Abstract

Fungi and mycotoxins in silage can have detrimental consequences for both cattle and human health. This pilot study identified, via the routinary direct plating method, the dominant cultivable fungi in mouldy grass silages (GS) ( n = 19) and maize silages (MS) ( n = 28) from Austria. The profiles of regulated, modified, and emerging mycotoxins together with other fungal metabolites were analysed via LC-(ESI)MS/MS. Penicillium roqueforti , Saccharomyces spp., Geotrichum candidum , Aspergillus fumigatus and Monascus ruber were the most frequent fungal organisms identified. Other species including Mucor circinelloides, Fusarium spp. and Paecilomyces niveus were detected at lower frequencies. The presence of complex mixtures of toxic and potentially toxic compounds was evidenced by high levels and occurrences (≥ 50%) of Penicillium -produced compounds such as mycophenolic acid (MPA), roquefortines (ROCs), andrastins (ANDs) and marcfortine A. Mouldy silages contained toxins commonly produced by genus Fusarium (e.g. zearalenone (ZEN) and trichothecenes), Alternaria (like tenuazonic acid (TeA) and alternariol (AHO)) and Aspergillus (such as sterigmatocystin (STC)). Compared to those in GS, mouldy spots in MS presented significantly higher fungal counts and more diverse toxin profiles, in addition to superior levels of Fusarium spp., Penicillium spp. and total fungal metabolites. Generally, no correlation between mould counts and corresponding metabolites was detected, except for the counts of P. roqueforti , which were positively correlated with Penicillium spp. metabolites in mouldy MS. This study represents a first assessment of the fungal diversity in mouldy silage in Austria and highlights its potential role as a substantial contributor to contamination with complex mycotoxin mixtures in cattle diets.

Bibliographic Information

JournalMycotoxin Research
PublisherSpringer
Publication Date2022-05-01
Publication Year2022
Volume38
Issue2
Pages117-136
Document TypeJournal Article
Print ISSN0178-7888
eISSN1867-1632
DOI10.1007/s12550-022-00453-3

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NARA Access Coverage1985-01-01~Current
Journal Homepagehttps://www.springer.com/journal/12550
Publisher PageOpen Publisher Page
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