AbstractNon-conventional yeasts are playing important roles as cell factories for bioproduction of biofuels, food additives and proteins with outstanding natural characteristics. However, the precise genome editing is challenging in non-conventional yeasts due to lack of efficient genetic tools. In the past few years, CRISPR-based genome editing worked as a revolutionary tool for genetic engineering and showed great advantages in cellular metabolic engineering. Here, we review the current advances and barriers of CRISPR–Cas9 for genome editing in non-conventional yeasts and propose the possible solutions in enhancing its efficiency for precise genetic engineering
Numerous important pharmaceuticals and nutraceuticals originate from plant specialized metabolites, ...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
The increasing demand for environmentally friendly production processes of green chemicals and fuels...
Abstract Non-conventional yeasts are playing important roles as cell factories for bioproduction of ...
Non-conventional yeasts are playing important roles as cell factories for bioproduction of biofuels,...
Non-conventional yeasts are playing important roles as cell factories for bioproduction of biofuels,...
Non-conventional yeasts have attracted a growing interest on account of their excellent characterist...
Because the petroleum-based chemical synthesis of industrial products causes serious environmental a...
There is a demand to develop 3rd generation biorefineries that integrate energy production with the ...
One of the key drivers for successful metabolic engineering in microbes is the efficacy by which gen...
One of the key drivers for successful metabolic engineering in microbes is the efficacy by which gen...
CRISPR/Cas9 technology allows accurate, marker-less genome editing. We report a detailed, robust, an...
CRISPR/Cas9 technology allows accurate, marker-less genome editing. We report a detailed, robust, an...
Saccharomyces cerevisiae is an important yeast has been exploited for a long time to produce alcohol...
The yeast Saccharomyces cerevisiae is a commonly used microorganism for metabolic engineering applic...
Numerous important pharmaceuticals and nutraceuticals originate from plant specialized metabolites, ...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
The increasing demand for environmentally friendly production processes of green chemicals and fuels...
Abstract Non-conventional yeasts are playing important roles as cell factories for bioproduction of ...
Non-conventional yeasts are playing important roles as cell factories for bioproduction of biofuels,...
Non-conventional yeasts are playing important roles as cell factories for bioproduction of biofuels,...
Non-conventional yeasts have attracted a growing interest on account of their excellent characterist...
Because the petroleum-based chemical synthesis of industrial products causes serious environmental a...
There is a demand to develop 3rd generation biorefineries that integrate energy production with the ...
One of the key drivers for successful metabolic engineering in microbes is the efficacy by which gen...
One of the key drivers for successful metabolic engineering in microbes is the efficacy by which gen...
CRISPR/Cas9 technology allows accurate, marker-less genome editing. We report a detailed, robust, an...
CRISPR/Cas9 technology allows accurate, marker-less genome editing. We report a detailed, robust, an...
Saccharomyces cerevisiae is an important yeast has been exploited for a long time to produce alcohol...
The yeast Saccharomyces cerevisiae is a commonly used microorganism for metabolic engineering applic...
Numerous important pharmaceuticals and nutraceuticals originate from plant specialized metabolites, ...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
The increasing demand for environmentally friendly production processes of green chemicals and fuels...