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− | <h1 class="box-heading"><i>Bacillus subtilis</i> – Gram-positive model organism</h1> | + | <h1 class="box-heading"><i>Bacillus subtilis</i> – The Gram-positive model organism</h1> |
<p>B. subtilis is the best-studied Gram-positive microorganisms, and a model bacterium studying bacterial differentiation (e.g. endospore formation) and phenotypic heterogeneity. Its ability to become naturally competent makes <i>B. subtilis</i> an organism with easily tractable genetics. The GRAS (generally recognized as safe) status and secretory capacity made <i>B. subtilis</i> a preferred host of choice for big scale production of secreted proteins, such as lipases, proteases and amylases, highlighting the industrial relevance of this bacterium.</p> | <p>B. subtilis is the best-studied Gram-positive microorganisms, and a model bacterium studying bacterial differentiation (e.g. endospore formation) and phenotypic heterogeneity. Its ability to become naturally competent makes <i>B. subtilis</i> an organism with easily tractable genetics. The GRAS (generally recognized as safe) status and secretory capacity made <i>B. subtilis</i> a preferred host of choice for big scale production of secreted proteins, such as lipases, proteases and amylases, highlighting the industrial relevance of this bacterium.</p> | ||
− | < | + | <p> |
− | In addition, the iGEM Team LMU-Munich 2012 has constructed the Bacillus BioBrickBox, which contains several well evaluated integrative and replicative vectors and other parts for the use in <i>B. subtilis</i>, thus providing a powerful toolbox to engineer <i>B. subtilis</i>. | + | In addition, the iGEM Team LMU-Munich 2012 has constructed the Bacillus BioBrickBox, which contains several well evaluated integrative and replicative vectors and other parts for the use in <i>B. subtilis</i>, thus providing a powerful toolbox to engineer <i>B. subtilis</i>.</p> |
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Revision as of 19:17, 30 October 2017