Abstract Background Yeast has been the focus of development of cell biofactories for the production of lipids and interest in the field has been driven by the need for sustainably sourced lipids for use in a broad range of industrial applications. Previously, we reported a metabolic engineering strategy for enhanced lipid production in yeast which delivered high per-cell lipid but with low cell growth and compromised physiology. To investigate the relationship between lipid engineering and cellular physiological responses and to identify further metabolic engineering targets, we analysed transcriptomes and measured cell physiology parameters in engineered strains. Results In the engineering strategy, the central carbon pathway was reprogram...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Additional file 1. Flow-cytometry-based physiological characterisation and transcriptome analyses re...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Lipid metabolism plays an important role in the development of many different life-style related dis...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Lignocellulose-derived sugars and other biorefinery by-product streams such as glycerol and acetic a...
Nutrient sensing and signaling controls the cellular response to extracellular nutrients and intrace...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Additional file 1. Flow-cytometry-based physiological characterisation and transcriptome analyses re...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Lipid metabolism plays an important role in the development of many different life-style related dis...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Lignocellulose-derived sugars and other biorefinery by-product streams such as glycerol and acetic a...
Nutrient sensing and signaling controls the cellular response to extracellular nutrients and intrace...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...