Metabolic engineering has been enabling development of high performance microbial strains for the efficient production of natural and non-natural compounds from renewable non-food biomass. Even though microbial production of various chemicals has successfully been conducted and commercialized, there are still numerous chemicals and materials that await their efficient bio-based production. Aromatic chemicals, which are typically derived from benzene, toluene and xylene in petroleum industry, have been used in large amounts in various industries. Over the last three decades, many metabolically engineered microorganisms have been developed for the bio-based production of aromatic chemicals, many of which are derived from aromatic amino acid p...
L-phenylalanine, L-tyrosine and L-tryptophan are aromatic amino acids that are widely used in indust...
Aromatic amines containing an aminobenzene or an aniline moiety comprise versatile natural and artif...
<p>The aromatic nature of shikimate pathway intermediates gives rise to a wealth of potential bio-re...
Abstract Metabolic engineering has been enabling development of high performance microbial strains f...
The aromatic amino acid biosynthesis pathway, together with its downstream branches, represents one ...
Aromatic compounds are an important class of chemicals with different industrial applications. They ...
The original publication is available at www.springerlink.com.ArticleApplied Microbiology and Biotec...
Microbial biosynthesis of aromatics has recently received increasing research interest due to its ad...
The aromatic amino acid biosynthesis pathway, together with its downstream branches, represents one ...
Engineering the shikimate pathway is a primary approach for biosynthesis of various aromatic compoun...
Natural products have been attracting much interest around the world for their diverse applications,...
Aromatics are valuable compounds with a myriad of applications. They are bulk or fine chemicals, use...
Microbial biocatalysis represents a promising alternative for the production of a variety of aromati...
Lee J-H, Wendisch VF. Biotechnological production of aromatic compounds of the extended shikimate pa...
<p>The aromatic nature of shikimate pathway intermediates gives rise to a wealth of potential bio-re...
L-phenylalanine, L-tyrosine and L-tryptophan are aromatic amino acids that are widely used in indust...
Aromatic amines containing an aminobenzene or an aniline moiety comprise versatile natural and artif...
<p>The aromatic nature of shikimate pathway intermediates gives rise to a wealth of potential bio-re...
Abstract Metabolic engineering has been enabling development of high performance microbial strains f...
The aromatic amino acid biosynthesis pathway, together with its downstream branches, represents one ...
Aromatic compounds are an important class of chemicals with different industrial applications. They ...
The original publication is available at www.springerlink.com.ArticleApplied Microbiology and Biotec...
Microbial biosynthesis of aromatics has recently received increasing research interest due to its ad...
The aromatic amino acid biosynthesis pathway, together with its downstream branches, represents one ...
Engineering the shikimate pathway is a primary approach for biosynthesis of various aromatic compoun...
Natural products have been attracting much interest around the world for their diverse applications,...
Aromatics are valuable compounds with a myriad of applications. They are bulk or fine chemicals, use...
Microbial biocatalysis represents a promising alternative for the production of a variety of aromati...
Lee J-H, Wendisch VF. Biotechnological production of aromatic compounds of the extended shikimate pa...
<p>The aromatic nature of shikimate pathway intermediates gives rise to a wealth of potential bio-re...
L-phenylalanine, L-tyrosine and L-tryptophan are aromatic amino acids that are widely used in indust...
Aromatic amines containing an aminobenzene or an aniline moiety comprise versatile natural and artif...
<p>The aromatic nature of shikimate pathway intermediates gives rise to a wealth of potential bio-re...