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Programmed hierarchical patterning of bacterial populations

机译:细菌种群的程序化分层模式

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Modern genetic tools allow the dissection and emulation of fundamental mechanisms shaping morphogenesis in multicellular organisms. Several synthetic genetic circuits for control of multicellular patterning have been reported to date. However, hierarchical induction of gene expression domains has received little attention from synthetic biologists, despite its importance in biological self-organization. Here we report a synthetic genetic system implementing population-based AND-logic for programmed autonomous induction of bacterial gene expression domains. We develop a ratiometric assay for bacteriophage T7 RNA polymerase activity and use it to systematically characterize different intact and split enzyme variants. We then utilize the best-performing variant to build a three-color patterning system responsive to two different homoserine lactones. We validate the AND gate-like behavior of this system both in cell suspension and in surface culture. Finally, we use the synthetic circuit in a membrane-based spatial assay to demonstrate programmed hierarchical patterning of gene expression across bacterial populations.
机译:现代遗传工具允许解剖和模拟影响多细胞生物形态发生的基本机制。迄今为止,已经报道了几种用于控制多细胞模式的合成遗传电路。然而,尽管基因表达域在生物学自组织中很重要,但是它对基因表达域的分级诱导却很少受到合成生物学家的关注。在这里,我们报告一个合成的遗传系统,实现了基于种群的AND-逻辑,用于细菌基因表达域的程序化自主诱导。我们开发了噬菌体T7 RNA聚合酶活性的比例测定,并用它来系统表征不同的完整和分裂酶变体。然后,我们利用性能最佳的变体构建对两种不同的高丝氨酸内酯响应的三色图案系统。我们验证了该系统在细胞悬浮液和表面培养中的AND门样行为。最后,我们在基于膜的空间测定中使用合成电路来证明整个细菌种群中基因表达的程序化分层模式。

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