Lignocellulosic biomass offers a sustainable source for biofuel production that does not compete with food-based cropping systems. Importantly, two critical bottlenecks prevent economic adoption: many industrially relevant microorganisms cannot ferment pentose sugars prevalent in lignocellulosic medium, leaving a significant amount of carbon unutilized. Furthermore, chemical biomass pretreatment required to release fermentable sugars generates a variety of toxins, which inhibit microbial growth and metabolism, specifically limiting pentose utilization in engineered strains. Here we dissected genetic determinants of anaerobic xylose fermentation and stress tolerance in chemically pretreated corn stover biomass, called hydrolysate. We previou...
The microbial production of fuels and chemicals has recently received much attention as an alternati...
Abstract Background Lignocellulosic biomass is one of the most abundant materials for biochemicals p...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
Lignocellulosic biomass offers a sustainable source for biofuel production that does not compete wit...
Microbes can be metabolically engineered to produce biofuels and biochemicals, but rerouting metabol...
Microbes can be metabolically engineered to produce biofuels and biochemicals, but rerouting metabol...
The inability of the yeast Saccharomyces cerevisiae to ferment xylose effectively under anaerobic co...
<div><p>The inability of the yeast <i>Saccharomyces cerevisiae</i> to ferment xylose effectively und...
The inability of the yeast Saccharomyces cerevisiae to ferment xylose effectively under anaerobic co...
Organisms have evolved elaborate physiological pathways that regulate growth, proliferation, metabol...
Organisms have evolved elaborate physiological pathways that regulate growth, proliferation, metabol...
Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been hampered ma...
Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been hampered ma...
<div><p>Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been ham...
In 2009 the EU approved two directives as a first initiative towards reducing greenhouse gas emissio...
The microbial production of fuels and chemicals has recently received much attention as an alternati...
Abstract Background Lignocellulosic biomass is one of the most abundant materials for biochemicals p...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
Lignocellulosic biomass offers a sustainable source for biofuel production that does not compete wit...
Microbes can be metabolically engineered to produce biofuels and biochemicals, but rerouting metabol...
Microbes can be metabolically engineered to produce biofuels and biochemicals, but rerouting metabol...
The inability of the yeast Saccharomyces cerevisiae to ferment xylose effectively under anaerobic co...
<div><p>The inability of the yeast <i>Saccharomyces cerevisiae</i> to ferment xylose effectively und...
The inability of the yeast Saccharomyces cerevisiae to ferment xylose effectively under anaerobic co...
Organisms have evolved elaborate physiological pathways that regulate growth, proliferation, metabol...
Organisms have evolved elaborate physiological pathways that regulate growth, proliferation, metabol...
Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been hampered ma...
Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been hampered ma...
<div><p>Economic bioconversion of plant cell wall hydrolysates into fuels and chemicals has been ham...
In 2009 the EU approved two directives as a first initiative towards reducing greenhouse gas emissio...
The microbial production of fuels and chemicals has recently received much attention as an alternati...
Abstract Background Lignocellulosic biomass is one of the most abundant materials for biochemicals p...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...