The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has been explored for production of various organic acids. However, its broader application is hampered by the lack of efficient genetic tools to enable sophisticated metabolic manipulations. We recently constructed an episomal plasmid based on the autonomously replicating sequence (ARS) from Saccharomyces cerevisiae (ScARS) in I. orientalis and developed a CRISPR/Cas9 system for multiplex gene deletions. Here we report three additional genetic tools including: (1) identification of a 0.8 kb centromere-like (CEN-L) sequence from the I. orientalis genome by using bioinformatics and functional screening; (2) discovery and characterization of a set of...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...
Microbial biochemical production as a renewable alternative to traditional methods is a rapidly grow...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
Issatchenkia orientalis, exhibiting high tolerance against harsh environmental conditions, is a prom...
Kluyveromyces marxianus is a non-conventional yeast whose physiology and metabolism lends itself to ...
Background: Yarrowia lipolytica is an ascomycete yeast used in biotechnological research for its abi...
\ua9 2018, The Author(s). The oleaginous yeast Yarrowia lipolytica is widely used for the production...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...
Microbial biochemical production as a renewable alternative to traditional methods is a rapidly grow...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
Issatchenkia orientalis, exhibiting high tolerance against harsh environmental conditions, is a prom...
Kluyveromyces marxianus is a non-conventional yeast whose physiology and metabolism lends itself to ...
Background: Yarrowia lipolytica is an ascomycete yeast used in biotechnological research for its abi...
\ua9 2018, The Author(s). The oleaginous yeast Yarrowia lipolytica is widely used for the production...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Renewable chemical production via microbial fermentation is a growing and critical industry. To over...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
Living systems contain enormous potential to solve many pressing engineering problems, including the...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...
Microbial biochemical production as a renewable alternative to traditional methods is a rapidly grow...
Modern biotechnological tools are making microbial production of chemicals, fuels, and pharmaceutica...