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Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi

Terpenoids constitute one of the largest and most diverse groups within the class of secondary metabolites, comprising over 80,000 compounds. They not only exhibit important functions in plant physiology but also have commercial potential in the biotechnological, pharmaceutical, and agricultural sec...

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Autores principales: Hilgers, Fabienne, Habash, Samer S., Loeschcke, Anita, Ackermann, Yannic Sebastian, Neumann, Stefan, Heck, Achim, Klaus, Oliver, Hage-Hülsmann, Jennifer, Grundler, Florian M. W., Jaeger, Karl-Erich, Schleker, A. Sylvia S., Drepper, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828715/
https://www.ncbi.nlm.nih.gov/pubmed/33466643
http://dx.doi.org/10.3390/microorganisms9010168
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author Hilgers, Fabienne
Habash, Samer S.
Loeschcke, Anita
Ackermann, Yannic Sebastian
Neumann, Stefan
Heck, Achim
Klaus, Oliver
Hage-Hülsmann, Jennifer
Grundler, Florian M. W.
Jaeger, Karl-Erich
Schleker, A. Sylvia S.
Drepper, Thomas
author_facet Hilgers, Fabienne
Habash, Samer S.
Loeschcke, Anita
Ackermann, Yannic Sebastian
Neumann, Stefan
Heck, Achim
Klaus, Oliver
Hage-Hülsmann, Jennifer
Grundler, Florian M. W.
Jaeger, Karl-Erich
Schleker, A. Sylvia S.
Drepper, Thomas
author_sort Hilgers, Fabienne
collection PubMed
description Terpenoids constitute one of the largest and most diverse groups within the class of secondary metabolites, comprising over 80,000 compounds. They not only exhibit important functions in plant physiology but also have commercial potential in the biotechnological, pharmaceutical, and agricultural sectors due to their promising properties, including various bioactivities against pathogens, inflammations, and cancer. In this work, we therefore aimed to implement the plant sesquiterpenoid pathway leading to β-caryophyllene in the heterologous host Rhodobacter capsulatus and achieved a maximum production of 139 ± 31 mg L(−1) culture. As this sesquiterpene offers various beneficial anti-phytopathogenic activities, we evaluated the bioactivity of β-caryophyllene and its oxygenated derivative β-caryophyllene oxide against different phytopathogenic fungi. Here, both compounds significantly inhibited the growth of Sclerotinia sclerotiorum and Fusarium oxysporum by up to 40%, while growth of Alternaria brassicicola was only slightly affected, and Phoma lingam and Rhizoctonia solani were unaffected. At the same time, the compounds showed a promising low inhibitory profile for a variety of plant growth-promoting bacteria at suitable compound concentrations. Our observations thus give a first indication that β-caryophyllene and β-caryophyllene oxide are promising natural agents, which might be applicable for the management of certain plant pathogenic fungi in agricultural crop production.
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spelling pubmed-78287152021-01-25 Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi Hilgers, Fabienne Habash, Samer S. Loeschcke, Anita Ackermann, Yannic Sebastian Neumann, Stefan Heck, Achim Klaus, Oliver Hage-Hülsmann, Jennifer Grundler, Florian M. W. Jaeger, Karl-Erich Schleker, A. Sylvia S. Drepper, Thomas Microorganisms Article Terpenoids constitute one of the largest and most diverse groups within the class of secondary metabolites, comprising over 80,000 compounds. They not only exhibit important functions in plant physiology but also have commercial potential in the biotechnological, pharmaceutical, and agricultural sectors due to their promising properties, including various bioactivities against pathogens, inflammations, and cancer. In this work, we therefore aimed to implement the plant sesquiterpenoid pathway leading to β-caryophyllene in the heterologous host Rhodobacter capsulatus and achieved a maximum production of 139 ± 31 mg L(−1) culture. As this sesquiterpene offers various beneficial anti-phytopathogenic activities, we evaluated the bioactivity of β-caryophyllene and its oxygenated derivative β-caryophyllene oxide against different phytopathogenic fungi. Here, both compounds significantly inhibited the growth of Sclerotinia sclerotiorum and Fusarium oxysporum by up to 40%, while growth of Alternaria brassicicola was only slightly affected, and Phoma lingam and Rhizoctonia solani were unaffected. At the same time, the compounds showed a promising low inhibitory profile for a variety of plant growth-promoting bacteria at suitable compound concentrations. Our observations thus give a first indication that β-caryophyllene and β-caryophyllene oxide are promising natural agents, which might be applicable for the management of certain plant pathogenic fungi in agricultural crop production. MDPI 2021-01-14 /pmc/articles/PMC7828715/ /pubmed/33466643 http://dx.doi.org/10.3390/microorganisms9010168 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hilgers, Fabienne
Habash, Samer S.
Loeschcke, Anita
Ackermann, Yannic Sebastian
Neumann, Stefan
Heck, Achim
Klaus, Oliver
Hage-Hülsmann, Jennifer
Grundler, Florian M. W.
Jaeger, Karl-Erich
Schleker, A. Sylvia S.
Drepper, Thomas
Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title_full Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title_fullStr Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title_full_unstemmed Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title_short Heterologous Production of β-Caryophyllene and Evaluation of Its Activity against Plant Pathogenic Fungi
title_sort heterologous production of β-caryophyllene and evaluation of its activity against plant pathogenic fungi
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828715/
https://www.ncbi.nlm.nih.gov/pubmed/33466643
http://dx.doi.org/10.3390/microorganisms9010168
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