Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane

In this work, we describe a study on the biotransformation of seven natural occurring apocarotenoids by means of eleven selected fungal species. The substrates, namely ionone (α-, β- and γ-isomers), 3,4-dehydroionone, damascone (α- and β-isomers) and thea...

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Main Authors: Stefano Serra, Davide De Simeis
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/24/1/19
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spelling doaj-d6b424f0615d4fb68c9fb6b36fd3da6b2020-11-25T02:46:37ZengMDPI AGMolecules1420-30492018-12-012411910.3390/molecules24010019molecules24010019Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and TheaspiraneStefano Serra0Davide De Simeis1C.N.R. Istituto di Chimica del Riconoscimento Molecolare, Via Mancinelli 7, 20131 Milano, ItalyC.N.R. Istituto di Chimica del Riconoscimento Molecolare, Via Mancinelli 7, 20131 Milano, ItalyIn this work, we describe a study on the biotransformation of seven natural occurring apocarotenoids by means of eleven selected fungal species. The substrates, namely ionone (α-, β- and γ-isomers), 3,4-dehydroionone, damascone (α- and β-isomers) and theaspirane are relevant flavour and fragrances components. We found that most of the investigated biotransformation reactions afforded oxidized products such as hydroxy- keto- or epoxy-derivatives. On the contrary, the reduction of the keto groups or the reduction of the double bond functional groups were observed only for few substrates, where the reduced products are however formed in minor amount. When starting apocarotenoids are isomers of the same chemical compound (e.g., ionone isomers) their biotransformation can give products very different from each other, depending both on the starting substrate and on the fungal species used. Since the majority of the starting apocarotenoids are often available in natural form and the described products are natural compounds, identified in flavours or fragrances, our biotransformation procedures can be regarded as prospective processes for the preparation of high value olfactory active compounds.https://www.mdpi.com/1420-3049/24/1/19biotransformationoxidationapocarotenoidsflavoursfungiiononedamasconetheaspirane
collection DOAJ
language English
format Article
sources DOAJ
author Stefano Serra
Davide De Simeis
spellingShingle Stefano Serra
Davide De Simeis
Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
Molecules
biotransformation
oxidation
apocarotenoids
flavours
fungi
ionone
damascone
theaspirane
author_facet Stefano Serra
Davide De Simeis
author_sort Stefano Serra
title Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
title_short Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
title_full Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
title_fullStr Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
title_full_unstemmed Fungi-Mediated Biotransformation of the Isomeric Forms of the Apocarotenoids Ionone, Damascone and Theaspirane
title_sort fungi-mediated biotransformation of the isomeric forms of the apocarotenoids ionone, damascone and theaspirane
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2018-12-01
description In this work, we describe a study on the biotransformation of seven natural occurring apocarotenoids by means of eleven selected fungal species. The substrates, namely ionone (α-, β- and γ-isomers), 3,4-dehydroionone, damascone (α- and β-isomers) and theaspirane are relevant flavour and fragrances components. We found that most of the investigated biotransformation reactions afforded oxidized products such as hydroxy- keto- or epoxy-derivatives. On the contrary, the reduction of the keto groups or the reduction of the double bond functional groups were observed only for few substrates, where the reduced products are however formed in minor amount. When starting apocarotenoids are isomers of the same chemical compound (e.g., ionone isomers) their biotransformation can give products very different from each other, depending both on the starting substrate and on the fungal species used. Since the majority of the starting apocarotenoids are often available in natural form and the described products are natural compounds, identified in flavours or fragrances, our biotransformation procedures can be regarded as prospective processes for the preparation of high value olfactory active compounds.
topic biotransformation
oxidation
apocarotenoids
flavours
fungi
ionone
damascone
theaspirane
url https://www.mdpi.com/1420-3049/24/1/19
work_keys_str_mv AT stefanoserra fungimediatedbiotransformationoftheisomericformsoftheapocarotenoidsiononedamasconeandtheaspirane
AT davidedesimeis fungimediatedbiotransformationoftheisomericformsoftheapocarotenoidsiononedamasconeandtheaspirane
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