With modern genetic engineering tools, high number of potentially improved production strains can be created in a short time. This results in a bottleneck in the succeeding step of bioprocess development, which can be handled by accelerating quantitative microbial phenotyping. Miniaturization and automation are key technologies to achieve this goal. In this study, a novel workflow for repeated low‐volume sampling of BioLector‐based cultivation setups is presented. Six samples of 20 μL each can be taken automatically from shaken 48‐well microtiter plates without disturbing cell population growth. The volume is sufficient for quantification of substrate and product concentrations by spectrophotometric‐based enzyme assays. From transient conce...
Abstract Background Expanding the application of technical enzymes, e.g., in industry and agricultur...
Industrial biotechnology is concerned with the sustainable production of, for example, fine and bulk...
Baumgart M, Unthan S, Kloss R, et al. Corynebacterium glutamicum chassis C1*: Building and testing a...
Hemmerich J, Labib M, Steffens C, et al. Screening of a genome-reduced Corynebacterium glutamicum st...
After being discovered 60 years ago, Corynebacterium glutamicum is a major industrial workhorse for ...
BackgroundThe throughput of cultivation experiments in bioprocess development has drastically increa...
In this work, concepts were developed and applied to guide the construction of a $\textit{Corynebact...
Abstract Background Microorganisms can be metabolical...
High-throughput growth phenotyping is receiving great attention for establishing the genotype–phenot...
Secretion of bacterial proteins into the culture medium simplifies downstream processing by avoiding...
In recent years, many fungal genomes have become publicly available. In combination with novel gene ...
Abstract Background During bioprocess development, secondary screening is a key step at the boundary...
Microbial genotyping increasingly deals with large numbers of samples, and data are commonly evaluat...
Microbial genotyping increasingly deals with large numbers of samples, and data are commonly evaluat...
Koepff J, Keller M, Tsolis CK, et al. Fast and reliable strain characterization of Streptomyces livi...
Abstract Background Expanding the application of technical enzymes, e.g., in industry and agricultur...
Industrial biotechnology is concerned with the sustainable production of, for example, fine and bulk...
Baumgart M, Unthan S, Kloss R, et al. Corynebacterium glutamicum chassis C1*: Building and testing a...
Hemmerich J, Labib M, Steffens C, et al. Screening of a genome-reduced Corynebacterium glutamicum st...
After being discovered 60 years ago, Corynebacterium glutamicum is a major industrial workhorse for ...
BackgroundThe throughput of cultivation experiments in bioprocess development has drastically increa...
In this work, concepts were developed and applied to guide the construction of a $\textit{Corynebact...
Abstract Background Microorganisms can be metabolical...
High-throughput growth phenotyping is receiving great attention for establishing the genotype–phenot...
Secretion of bacterial proteins into the culture medium simplifies downstream processing by avoiding...
In recent years, many fungal genomes have become publicly available. In combination with novel gene ...
Abstract Background During bioprocess development, secondary screening is a key step at the boundary...
Microbial genotyping increasingly deals with large numbers of samples, and data are commonly evaluat...
Microbial genotyping increasingly deals with large numbers of samples, and data are commonly evaluat...
Koepff J, Keller M, Tsolis CK, et al. Fast and reliable strain characterization of Streptomyces livi...
Abstract Background Expanding the application of technical enzymes, e.g., in industry and agricultur...
Industrial biotechnology is concerned with the sustainable production of, for example, fine and bulk...
Baumgart M, Unthan S, Kloss R, et al. Corynebacterium glutamicum chassis C1*: Building and testing a...