Please use this identifier to cite or link to this item: https://biore.bio.bg.ac.rs/handle/123456789/4635
Title: Impact of grape pomace as a cultivation substrate on the Pleurotus ostreatus chemical and biological properties
Authors: Doroški, Ana
Klaus, Anita
Kozarski, Maja
Nikolić, Biljana 
Vunduk Jovana
Lazić, Vesna
Đekić, Ilija
Keywords: Pleurotus ostreatus;food waste;quality index;grape pomace;mushroom
Issue Date: 5-Feb-2021
Rank: M24
Publisher: Faculty of Technology, Novi Sad, Serbia
Citation: Doroški, A., Klaus, A., Kozarski, M., Nikolić, B., Vunduk, J., Lazić, V., Đekić, I. (2021). Impact of grape pomace as a cultivation substrate on the Pleurotus ostreatus chemical and biological properties. Acta Periodica Technologica, 52, 25-32. https://doi.org/10.2298/APT2152025D
Journal: Acta Periodica Technologica
Abstract: 
The objective of this study was to develop a single quality index of chemical characteristics of
Pleurotus ostreatus extracts on 7th and 14th day of its shelf life, derived from the mushroom fruiting
bodies. P. ostreatus was cultivated on four substrates containing different ratio of wine industry
waste-grape pomace (P) and wheat straw (S): 100P, 80P20S, 50P50S, 20P80S. Four quality parame-
ters of P. ostreatus mushroom extracts, i.e. antioxidative parameters: ABTS + and DPPH
• free radical
scavenging capability, total phenolic compounds (TPC) and total polysaccharides (TPS) were used to
define the final extract quality index. Analysis indicated 100P and 80P20S as the samples cultivated
on the substrate with higher percent of grape pomace, as the best quality at the 7th day of its shelf life.
On the other hand, final quality score indicated 50P50S and 20P80S, cultivated on a substrate with a
lower percent of grape pomace, as the best quality samples at the 14th day of its shelf life. According
to the results, samples cultivated on a higher pomace content substrate are of better quality in a shor-
ter storage time period.
URI: https://biore.bio.bg.ac.rs/handle/123456789/4635
ISSN: 1450-7188
2406-095X
DOI: 10.2298/APT2152025D
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