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1.
ACS Synth Biol ; 10(10): 2767-2771, 2021 10 15.
Article in English | MEDLINE | ID: mdl-34587446

ABSTRACT

To better understand cellular life, it is essential to decipher the contribution of individual components and their interactions. Minimal genomes are an important tool to investigate these interactions. Here, we provide a database of 105 fully annotated genomes of a series of strains with sequential deletion steps of the industrially relevant model bacterium Bacillus subtilis starting with the laboratory wild type strain B. subtilis 168 and ending with B. subtilis PG38, which lacks approximately 40% of the original genome. The annotation is supported by sequencing of key intermediate strains as well as integration of literature knowledge for the annotation of the deletion scars and their potential effects. The strain compendium presented here represents a comprehensive genome library of the entire MiniBacillus project. This resource will facilitate the more effective application of the different strains in basic science as well as in biotechnology.


Subject(s)
Bacillus subtilis/genetics , Genome, Bacterial
2.
Environ Microbiol ; 22(9): 3937-3949, 2020 09.
Article in English | MEDLINE | ID: mdl-32743959

ABSTRACT

The Gram-positive bacterium Bacillus subtilis uses serine not only as a building block for proteins but also as an important precursor in many anabolic reactions. Moreover, a lack of serine results in the initiation of biofilm formation. However, excess serine inhibits the growth of B. subtilis. To unravel the underlying mechanisms, we isolated suppressor mutants that can tolerate toxic serine concentrations by three targeted and non-targeted genome-wide screens. All screens as well as genetic complementation in Escherichia coli identified the so far uncharacterized permease YbeC as the major serine transporter of B. subtilis. In addition to YbeC, the threonine transporters BcaP and YbxG make minor contributions to serine uptake. A strain lacking these three transporters was able to tolerate 100 mM serine whereas the wild type strain was already inhibited by 1 mM of the amino acid. The screen for serine-resistant mutants also identified mutations that result in increased serine degradation and in increased expression of threonine biosynthetic enzymes suggesting that serine toxicity results from interference with threonine biosynthesis.


Subject(s)
Amino Acid Transport Systems/metabolism , Bacillus subtilis/metabolism , Bacterial Proteins/metabolism , Metabolic Networks and Pathways , Serine/metabolism , Threonine/metabolism , Amino Acid Transport Systems/genetics , Bacillus subtilis/drug effects , Bacillus subtilis/genetics , Bacterial Proteins/genetics , Drug Resistance, Bacterial/genetics , Escherichia coli/genetics , Escherichia coli/metabolism , Mutation , Serine/pharmacology , Threonine/genetics
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