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<title>Odor Profile of Four Cultivated and Freeze-Dried Edible Mushrooms by Using Sensory Panel, Electronic Nose and GC-MS</title>
<creator>Gómez Bastida, Inmaculada</creator>
<creator>Lavega González, Rebeca</creator>
<creator>Tejedor-Calvo, Eva</creator>
<creator>Pérez Clavijo, Margarita</creator>
<creator>Carrasco, Jaime</creator>
<subject>Edible mushrooms</subject>
<subject>Odor profile</subject>
<subject>Electronic nose</subject>
<subject>Sensory analysis</subject>
<subject>Volatile compounds</subject>
<description>Cultivated mushrooms are well-known nutrient inputs for an equilibrated diet. Some&#xd;
species are broadly appreciated due to their medicinal properties. Lately, a number of novel foods and&#xd;
nutraceuticals based on dehydrated and freeze-dried powder obtained from cultivated mushrooms&#xd;
has been reaching the market. The food industry requires fast and reliable tools to prevent fraud. In&#xd;
this, work we have cultivated Agaricus bisporus sp. bisporus (AB) (white button mushroom), Agaricus&#xd;
bisporus sp. brunnescens (ABP) (portobello), Lentinula edodes (LE) (shiitake) and Grifola frondosa (GF)&#xd;
(maitake) using tailor-made substrates for the different species and standardized cropping conditions,&#xd;
which were individually freeze-dried to obtain the samples under evaluation. The aim of this article&#xd;
was to validate the use of two different methodologies, namely, electronic nose and sensory panel,&#xd;
to discriminate the olfactory profile of nutritional products based on freeze-dried mushrooms from&#xd;
the different cultivated species. Additionally, GC-MS was used to detect and quantify the most&#xd;
abundant volatile organic compounds (VOCs) in the samples. The multivariate analysis performed&#xd;
proved the utility of electronic nose as an analytical tool, which was similar to the classical sensory&#xd;
panel but faster in distinguishing among the different species, with one limitation it being unable to&#xd;
differentiate between the same species. GC-MS analysis showed the chemical volatile formulation&#xd;
of the samples, also showing significant differences between different samples but high similarities&#xd;
between varieties of the same cultivated species. The techniques employed can be used to prevent&#xd;
fraud and have the potential to evaluate further medicinal mushroom species and build solid and&#xd;
trustful connections between these novel food products and potential consumers.</description>
<date>2023-03-22</date>
<date>2023-03-22</date>
<date>2022-09</date>
<type>info:eu-repo/semantics/article</type>
<identifier>http://hdl.handle.net/10259/7582</identifier>
<identifier>10.3390/jof8090953</identifier>
<identifier>2309-608X</identifier>
<language>eng</language>
<relation>Journal of Fungi. 2022, V. 8, n. 9, 953</relation>
<relation>https://doi.org/10.3390/jof8090953</relation>
<rights>http://creativecommons.org/licenses/by/4.0/</rights>
<rights>info:eu-repo/semantics/openAccess</rights>
<rights>Atribución 4.0 Internacional</rights>
<publisher>MDPI</publisher>
</thesis></metadata></record></GetRecord></OAI-PMH>