Oleic acid is widely applied in the chemical, material, nutritional, and pharmaceutical industries. However, the current production of oleic acid via high oleic plant oils is limited by the long growth cycle and climatic constraints. Moreover, the global demand for high oleic plant oils, especially the palm oil, has emerged as the driver of tropical deforestation causing tropical rainforest destruction, climate change, and biodiversity loss. In the present study, an alternative and sustainable strategy for high oleic oil production was established by reprogramming the metabolism of the oleaginous yeast Yarrowia lipolytica using a two-layer "push-pull-block" strategy. Specifically, the fatty acid synthesis pathway was first engineered to inc...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...
Background: Odd chain fatty acids (odd FAs) have a wide range of applications in therapeutic and nut...
The oleochemical industry is currently still dominated by conventional chemistry, with biotechnology...
AbstractOne of the most promising alternatives to petroleum for the production of fuels and chemical...
The human population and its demand for food oils is constantly growing. However, increasing food oi...
Background: Oleaginous yeast Yarrowia lipolytica is an organism of choice for the development of bio...
Increasing demand for plant oil for food, feed, and fuel production has led to food-fuel competition...
Current energy security and climate change policies encourage the development and utilization of bio...
Microbial production of value-added chemicals derived from fatty acids is a sustainable alternative ...
Yarrowia lipolytica is a safe and robust yeast that has a history of industrial applications. Its ph...
Yarrowia lipolytica, an oleaginous yeast, is an adequate cell factory platform to convert low-value ...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Free fatty acids are basic oleochemicals implemented in a range of applications including surfactant...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...
Background: Odd chain fatty acids (odd FAs) have a wide range of applications in therapeutic and nut...
The oleochemical industry is currently still dominated by conventional chemistry, with biotechnology...
AbstractOne of the most promising alternatives to petroleum for the production of fuels and chemical...
The human population and its demand for food oils is constantly growing. However, increasing food oi...
Background: Oleaginous yeast Yarrowia lipolytica is an organism of choice for the development of bio...
Increasing demand for plant oil for food, feed, and fuel production has led to food-fuel competition...
Current energy security and climate change policies encourage the development and utilization of bio...
Microbial production of value-added chemicals derived from fatty acids is a sustainable alternative ...
Yarrowia lipolytica is a safe and robust yeast that has a history of industrial applications. Its ph...
Yarrowia lipolytica, an oleaginous yeast, is an adequate cell factory platform to convert low-value ...
Yarrowia lipolytica is a potent microbial cell factory for metabolic engineering that will enable th...
Free fatty acids are basic oleochemicals implemented in a range of applications including surfactant...
Background: Yarrowia lipolytica is a common biotechnological chassis for the production of lipids, ...
Background: Microbial lipids are produced by many oleaginous organisms including the well-characteri...
Due to their vital physiological functions, nutritional fatty acids have great potential as nutraceu...
Background: Odd chain fatty acids (odd FAs) have a wide range of applications in therapeutic and nut...
The oleochemical industry is currently still dominated by conventional chemistry, with biotechnology...