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Abstract Provided herein are recombinant microorganisms having two or more copies of a nucleic acid sequence encoding xylose isomerase, wherein the nucleic acid encoding the xylose isomerase is an exogenous nucleic acid. Optionally, the recombinant microorganisms include at least one nucleic acid sequence encoding a xylulose kinase and/or at least one nucleic acid sequence encoding a xylose transporter. The provided recombinant microorganisms are capable of growing on xylose as a carbon source. L'invention concerne des micro-organismes de recombinaison comprenant deux copies ou plus d'une séquence d'acide nucléique codant pour la xylose isomérase, l'acide nucléique codant pour la xylose isomérase étant un acide nucléique exogène. Les micro-organismes de recombinaison comprennent éventuellement au moins une séquence d'acide nucléique codant pour une xylulose kinase et/ou au moins une séquence d'acide nucléique codant pour un transporteur de xylose. L'invention concerne des micro-organismes de recombinaison capables de croître sur de la xylose comme source de carbone.
AbstractList Provided herein are recombinant microorganisms having two or more copies of a nucleic acid sequence encoding xylose isomerase, wherein the nucleic acid encoding the xylose isomerase is an exogenous nucleic acid. Optionally, the recombinant microorganisms include at least one nucleic acid sequence encoding a xylulose kinase and/or at least one nucleic acid sequence encoding a xylose transporter. The provided recombinant microorganisms are capable of growing on xylose as a carbon source. L'invention concerne des micro-organismes de recombinaison comprenant deux copies ou plus d'une séquence d'acide nucléique codant pour la xylose isomérase, l'acide nucléique codant pour la xylose isomérase étant un acide nucléique exogène. Les micro-organismes de recombinaison comprennent éventuellement au moins une séquence d'acide nucléique codant pour une xylulose kinase et/ou au moins une séquence d'acide nucléique codant pour un transporteur de xylose. L'invention concerne des micro-organismes de recombinaison capables de croître sur de la xylose comme source de carbone.
Author SCAIFE, Mark
MUISE, Denise
WOODHALL, David
BENJAMIN, Jeremy
MERKX-JACQUES, Alexandra
ARMENTA, Roberto E
RASMUSSEN, Holly
Author_xml – fullname: BENJAMIN, Jeremy
– fullname: WOODHALL, David
– fullname: MUISE, Denise
– fullname: MERKX-JACQUES, Alexandra
– fullname: SCAIFE, Mark
– fullname: RASMUSSEN, Holly
– fullname: ARMENTA, Roberto E
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DocumentTitleAlternate AMÉLIORATION DU MÉTABOLISME DE MICRO-ALGUES DE LA XYLOSE
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Snippet Provided herein are recombinant microorganisms having two or more copies of a nucleic acid sequence encoding xylose isomerase, wherein the nucleic acid...
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SubjectTerms ANIMAL AND VEGETABLE OILS, FATS, FATTY SUBSTANCES AND WAXES
BEER
BIOCHEMISTRY
CANDLES
CHEMISTRY
COMPOSITIONS THEREOF
CULTURE MEDIA
DETERGENTS
ENZYMOLOGY
FATS, OILS OR FATTY ACIDS BY CHEMICAL MODIFICATION OF FATS,OILS, OR FATTY ACIDS OBTAINED THEREFROM
FATTY ACIDS FROM FATS, OILS OR WAXES
FATTY ACIDS THEREFROM
FERMENTATION OR ENZYME-USING PROCESSES TO SYNTHESISE A DESIREDCHEMICAL COMPOUND OR COMPOSITION OR TO SEPARATE OPTICAL ISOMERSFROM A RACEMIC MIXTURE
METALLURGY
MICROBIOLOGY
MICROORGANISMS OR ENZYMES
MUTATION OR GENETIC ENGINEERING
ORGANIC CHEMISTRY
PEPTIDES
PROPAGATING, PRESERVING OR MAINTAINING MICROORGANISMS
SPIRITS
VINEGAR
WINE
Title ENHANCING MICROALGAL METABOLISM OF XYLOSE
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