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Potential of genetically engineered hybrid poplar for pyrolytic production of bio-based phenolic compounds.

Identifieur interne : 001706 ( Main/Exploration ); précédent : 001705; suivant : 001707

Potential of genetically engineered hybrid poplar for pyrolytic production of bio-based phenolic compounds.

Auteurs : Hilal E. Toraman [Belgique] ; Ruben Vanholme [Belgique] ; Eleonora Borén [Suède] ; Yumi Vanwonterghem [Belgique] ; Marko R. Djokic [Belgique] ; Guray Yildiz [Belgique] ; Frederik Ronsse [Belgique] ; Wolter Prins [Belgique] ; Wout Boerjan [Belgique] ; Kevin M. Van Geem [Belgique] ; Guy B. Marin [Belgique]

Source :

RBID : pubmed:26890798

Descripteurs français

English descriptors

Abstract

Wild-type and two genetically engineered hybrid poplar lines were pyrolyzed in a micro-pyrolysis (Py-GC/MS) and a bench scale setup for fast and intermediate pyrolysis studies. Principal component analysis showed that the pyrolysis vapors obtained by micro-pyrolysis from wood of caffeic acid O-methyltransferase (COMT) and caffeoyl-CoA O-methyltransferase (CCoAOMT) down-regulated poplar trees differed significantly from the pyrolysis vapors obtained from non-transgenic control trees. Both fast micro-pyrolysis and intermediate pyrolysis of transgenic hybrid poplars showed that down-regulation of COMT can enhance the relative yield of guaiacyl lignin-derived products, while the relative yield of syringyl lignin-derived products was up to a factor 3 lower. This study indicates that lignin engineering via genetic modifications of genes involved in the phenylpropanoid and monolignol biosynthetic pathways can help to steer the pyrolytic production of guaiacyl and syringyl lignin-derived phenolic compounds such as guaiacol, 4-methylguaiacol, 4-ethylguaiacol, 4-vinylguaiacol, syringol, 4-vinylsyringol, and syringaldehyde present in the bio-oil.

DOI: 10.1016/j.biortech.2016.02.022
PubMed: 26890798


Affiliations:


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Le document en format XML

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<term>Biosynthetic Pathways (MeSH)</term>
<term>Gas Chromatography-Mass Spectrometry (MeSH)</term>
<term>Genetic Engineering (methods)</term>
<term>Hybridization, Genetic (MeSH)</term>
<term>Lignin (metabolism)</term>
<term>Phenols (metabolism)</term>
<term>Plants, Genetically Modified (MeSH)</term>
<term>Populus (genetics)</term>
<term>Populus (metabolism)</term>
<term>Principal Component Analysis (MeSH)</term>
<term>Temperature (MeSH)</term>
</keywords>
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<term>Analyse en composantes principales (MeSH)</term>
<term>Chromatographie gazeuse-spectrométrie de masse (MeSH)</term>
<term>Génie génétique (méthodes)</term>
<term>Hybridation génétique (MeSH)</term>
<term>Lignine (métabolisme)</term>
<term>Phénols (métabolisme)</term>
<term>Populus (génétique)</term>
<term>Populus (métabolisme)</term>
<term>Température (MeSH)</term>
<term>Voies de biosynthèse (MeSH)</term>
<term>Végétaux génétiquement modifiés (MeSH)</term>
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<keywords scheme="MESH" type="chemical" qualifier="metabolism" xml:lang="en">
<term>Lignin</term>
<term>Phenols</term>
</keywords>
<keywords scheme="MESH" qualifier="genetics" xml:lang="en">
<term>Populus</term>
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<keywords scheme="MESH" qualifier="génétique" xml:lang="fr">
<term>Populus</term>
</keywords>
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<term>Populus</term>
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<term>Genetic Engineering</term>
</keywords>
<keywords scheme="MESH" qualifier="métabolisme" xml:lang="fr">
<term>Lignine</term>
<term>Phénols</term>
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<term>Génie génétique</term>
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<term>Gas Chromatography-Mass Spectrometry</term>
<term>Hybridization, Genetic</term>
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<term>Principal Component Analysis</term>
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<term>Hybridation génétique</term>
<term>Température</term>
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<front>
<div type="abstract" xml:lang="en">Wild-type and two genetically engineered hybrid poplar lines were pyrolyzed in a micro-pyrolysis (Py-GC/MS) and a bench scale setup for fast and intermediate pyrolysis studies. Principal component analysis showed that the pyrolysis vapors obtained by micro-pyrolysis from wood of caffeic acid O-methyltransferase (COMT) and caffeoyl-CoA O-methyltransferase (CCoAOMT) down-regulated poplar trees differed significantly from the pyrolysis vapors obtained from non-transgenic control trees. Both fast micro-pyrolysis and intermediate pyrolysis of transgenic hybrid poplars showed that down-regulation of COMT can enhance the relative yield of guaiacyl lignin-derived products, while the relative yield of syringyl lignin-derived products was up to a factor 3 lower. This study indicates that lignin engineering via genetic modifications of genes involved in the phenylpropanoid and monolignol biosynthetic pathways can help to steer the pyrolytic production of guaiacyl and syringyl lignin-derived phenolic compounds such as guaiacol, 4-methylguaiacol, 4-ethylguaiacol, 4-vinylguaiacol, syringol, 4-vinylsyringol, and syringaldehyde present in the bio-oil. </div>
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<Month>10</Month>
<Day>31</Day>
</DateCompleted>
<DateRevised>
<Year>2018</Year>
<Month>12</Month>
<Day>02</Day>
</DateRevised>
<Article PubModel="Print-Electronic">
<Journal>
<ISSN IssnType="Electronic">1873-2976</ISSN>
<JournalIssue CitedMedium="Internet">
<Volume>207</Volume>
<PubDate>
<Year>2016</Year>
<Month>May</Month>
</PubDate>
</JournalIssue>
<Title>Bioresource technology</Title>
<ISOAbbreviation>Bioresour Technol</ISOAbbreviation>
</Journal>
<ArticleTitle>Potential of genetically engineered hybrid poplar for pyrolytic production of bio-based phenolic compounds.</ArticleTitle>
<Pagination>
<MedlinePgn>229-36</MedlinePgn>
</Pagination>
<ELocationID EIdType="doi" ValidYN="Y">10.1016/j.biortech.2016.02.022</ELocationID>
<ELocationID EIdType="pii" ValidYN="Y">S0960-8524(16)30148-1</ELocationID>
<Abstract>
<AbstractText>Wild-type and two genetically engineered hybrid poplar lines were pyrolyzed in a micro-pyrolysis (Py-GC/MS) and a bench scale setup for fast and intermediate pyrolysis studies. Principal component analysis showed that the pyrolysis vapors obtained by micro-pyrolysis from wood of caffeic acid O-methyltransferase (COMT) and caffeoyl-CoA O-methyltransferase (CCoAOMT) down-regulated poplar trees differed significantly from the pyrolysis vapors obtained from non-transgenic control trees. Both fast micro-pyrolysis and intermediate pyrolysis of transgenic hybrid poplars showed that down-regulation of COMT can enhance the relative yield of guaiacyl lignin-derived products, while the relative yield of syringyl lignin-derived products was up to a factor 3 lower. This study indicates that lignin engineering via genetic modifications of genes involved in the phenylpropanoid and monolignol biosynthetic pathways can help to steer the pyrolytic production of guaiacyl and syringyl lignin-derived phenolic compounds such as guaiacol, 4-methylguaiacol, 4-ethylguaiacol, 4-vinylguaiacol, syringol, 4-vinylsyringol, and syringaldehyde present in the bio-oil. </AbstractText>
<CopyrightInformation>Copyright © 2016 Elsevier Ltd. All rights reserved.</CopyrightInformation>
</Abstract>
<AuthorList CompleteYN="Y">
<Author ValidYN="Y">
<LastName>Toraman</LastName>
<ForeName>Hilal E</ForeName>
<Initials>HE</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Vanholme</LastName>
<ForeName>Ruben</ForeName>
<Initials>R</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Plant Systems Biology, VIB, Technologiepark 927, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Borén</LastName>
<ForeName>Eleonora</ForeName>
<Initials>E</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Plant Systems Biology, VIB, Technologiepark 927, 9052 Ghent, Belgium; Umeå University, Department of Applied Physics and Electronics, 901 87 Umeå, Sweden.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Vanwonterghem</LastName>
<ForeName>Yumi</ForeName>
<Initials>Y</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Djokic</LastName>
<ForeName>Marko R</ForeName>
<Initials>MR</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Yildiz</LastName>
<ForeName>Guray</ForeName>
<Initials>G</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Biosystems Engineering, Coupure Links 653, 9000 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Ronsse</LastName>
<ForeName>Frederik</ForeName>
<Initials>F</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Biosystems Engineering, Coupure Links 653, 9000 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Prins</LastName>
<ForeName>Wolter</ForeName>
<Initials>W</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Biosystems Engineering, Coupure Links 653, 9000 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Boerjan</LastName>
<ForeName>Wout</ForeName>
<Initials>W</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Department of Plant Systems Biology, VIB, Technologiepark 927, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Van Geem</LastName>
<ForeName>Kevin M</ForeName>
<Initials>KM</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium. Electronic address: Kevin.VanGeem@UGent.be.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Marin</LastName>
<ForeName>Guy B</ForeName>
<Initials>GB</Initials>
<AffiliationInfo>
<Affiliation>Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium.</Affiliation>
</AffiliationInfo>
</Author>
</AuthorList>
<Language>eng</Language>
<PublicationTypeList>
<PublicationType UI="D016428">Journal Article</PublicationType>
<PublicationType UI="D013485">Research Support, Non-U.S. Gov't</PublicationType>
</PublicationTypeList>
<ArticleDate DateType="Electronic">
<Year>2016</Year>
<Month>02</Month>
<Day>09</Day>
</ArticleDate>
</Article>
<MedlineJournalInfo>
<Country>England</Country>
<MedlineTA>Bioresour Technol</MedlineTA>
<NlmUniqueID>9889523</NlmUniqueID>
<ISSNLinking>0960-8524</ISSNLinking>
</MedlineJournalInfo>
<ChemicalList>
<Chemical>
<RegistryNumber>0</RegistryNumber>
<NameOfSubstance UI="D010636">Phenols</NameOfSubstance>
</Chemical>
<Chemical>
<RegistryNumber>9005-53-2</RegistryNumber>
<NameOfSubstance UI="D008031">Lignin</NameOfSubstance>
</Chemical>
</ChemicalList>
<CitationSubset>IM</CitationSubset>
<MeshHeadingList>
<MeshHeading>
<DescriptorName UI="D053898" MajorTopicYN="N">Biosynthetic Pathways</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D008401" MajorTopicYN="N">Gas Chromatography-Mass Spectrometry</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D005818" MajorTopicYN="N">Genetic Engineering</DescriptorName>
<QualifierName UI="Q000379" MajorTopicYN="Y">methods</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D006824" MajorTopicYN="Y">Hybridization, Genetic</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D008031" MajorTopicYN="N">Lignin</DescriptorName>
<QualifierName UI="Q000378" MajorTopicYN="N">metabolism</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D010636" MajorTopicYN="N">Phenols</DescriptorName>
<QualifierName UI="Q000378" MajorTopicYN="Y">metabolism</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D030821" MajorTopicYN="N">Plants, Genetically Modified</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D032107" MajorTopicYN="N">Populus</DescriptorName>
<QualifierName UI="Q000235" MajorTopicYN="Y">genetics</QualifierName>
<QualifierName UI="Q000378" MajorTopicYN="Y">metabolism</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D025341" MajorTopicYN="N">Principal Component Analysis</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D013696" MajorTopicYN="Y">Temperature</DescriptorName>
</MeshHeading>
</MeshHeadingList>
<KeywordList Owner="NOTNLM">
<Keyword MajorTopicYN="N">Bio-oil</Keyword>
<Keyword MajorTopicYN="N">Phenolic compounds</Keyword>
<Keyword MajorTopicYN="N">Principal component analysis</Keyword>
<Keyword MajorTopicYN="N">Pyrolysis</Keyword>
<Keyword MajorTopicYN="N">Transgenic plants</Keyword>
</KeywordList>
</MedlineCitation>
<PubmedData>
<History>
<PubMedPubDate PubStatus="received">
<Year>2015</Year>
<Month>12</Month>
<Day>01</Day>
</PubMedPubDate>
<PubMedPubDate PubStatus="revised">
<Year>2016</Year>
<Month>02</Month>
<Day>04</Day>
</PubMedPubDate>
<PubMedPubDate PubStatus="accepted">
<Year>2016</Year>
<Month>02</Month>
<Day>05</Day>
</PubMedPubDate>
<PubMedPubDate PubStatus="entrez">
<Year>2016</Year>
<Month>2</Month>
<Day>19</Day>
<Hour>6</Hour>
<Minute>0</Minute>
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<PubMedPubDate PubStatus="pubmed">
<Year>2016</Year>
<Month>2</Month>
<Day>19</Day>
<Hour>6</Hour>
<Minute>0</Minute>
</PubMedPubDate>
<PubMedPubDate PubStatus="medline">
<Year>2016</Year>
<Month>11</Month>
<Day>1</Day>
<Hour>6</Hour>
<Minute>0</Minute>
</PubMedPubDate>
</History>
<PublicationStatus>ppublish</PublicationStatus>
<ArticleIdList>
<ArticleId IdType="pubmed">26890798</ArticleId>
<ArticleId IdType="pii">S0960-8524(16)30148-1</ArticleId>
<ArticleId IdType="doi">10.1016/j.biortech.2016.02.022</ArticleId>
</ArticleIdList>
</PubmedData>
</pubmed>
<affiliations>
<list>
<country>
<li>Belgique</li>
<li>Suède</li>
</country>
<region>
<li>Province de Flandre-Orientale</li>
<li>Région flamande</li>
</region>
<settlement>
<li>Gand</li>
</settlement>
<orgName>
<li>Université de Gand</li>
</orgName>
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<tree>
<country name="Belgique">
<region name="Région flamande">
<name sortKey="Toraman, Hilal E" sort="Toraman, Hilal E" uniqKey="Toraman H" first="Hilal E" last="Toraman">Hilal E. Toraman</name>
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<name sortKey="Boerjan, Wout" sort="Boerjan, Wout" uniqKey="Boerjan W" first="Wout" last="Boerjan">Wout Boerjan</name>
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<name sortKey="Marin, Guy B" sort="Marin, Guy B" uniqKey="Marin G" first="Guy B" last="Marin">Guy B. Marin</name>
<name sortKey="Prins, Wolter" sort="Prins, Wolter" uniqKey="Prins W" first="Wolter" last="Prins">Wolter Prins</name>
<name sortKey="Ronsse, Frederik" sort="Ronsse, Frederik" uniqKey="Ronsse F" first="Frederik" last="Ronsse">Frederik Ronsse</name>
<name sortKey="Van Geem, Kevin M" sort="Van Geem, Kevin M" uniqKey="Van Geem K" first="Kevin M" last="Van Geem">Kevin M. Van Geem</name>
<name sortKey="Vanholme, Ruben" sort="Vanholme, Ruben" uniqKey="Vanholme R" first="Ruben" last="Vanholme">Ruben Vanholme</name>
<name sortKey="Vanwonterghem, Yumi" sort="Vanwonterghem, Yumi" uniqKey="Vanwonterghem Y" first="Yumi" last="Vanwonterghem">Yumi Vanwonterghem</name>
<name sortKey="Yildiz, Guray" sort="Yildiz, Guray" uniqKey="Yildiz G" first="Guray" last="Yildiz">Guray Yildiz</name>
</country>
<country name="Suède">
<region name="Région flamande">
<name sortKey="Boren, Eleonora" sort="Boren, Eleonora" uniqKey="Boren E" first="Eleonora" last="Borén">Eleonora Borén</name>
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</country>
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