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Selected model strains of phototrophic cyanobacteria have been genetically engineered for heterologous expression of numerous enzymes.
Enterobacter aerogenes is one of the most widely-studied model strains for fermentative hydrogen production.
In recent decades, metabolic engineering of model strains, and process optimization for malic acid production have been rapidly developed.
Compared with model strains, few reports have successfully coexpressed VHb and other foreign proteins in industrial strains.
Hydrocarbon production in three representative types of native cyanobacterial model strains and the mutant strain overexpressing acetyl-CoA carboxylase was evaluated.
In recent decades, robust producing strain selection, metabolic engineering of model strains, and process optimization for succinic acid production have been developed.
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Lig 290 may serve as a model strain for evaluating acidophilic culturing strategies.
The strain therefore serves as a model strain for glycopeptide antibiotic production.
It was also shown that a mixed model (fixed strain effect+random sire effect) gave more accurate results than a simple fixed model (strain effect only).
In this study we determined survival during desiccation of the commercial strains 102F84 and 102F85 as well as the model strain USDA1021.
In this study, Bacillus subtilis, the "generally recognized as safe" model strain, was chosen to overproduce the heterologous GehC protein.
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