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Design and Diversity in Bacterial Chemotaxis: A Comparative Study in Escherichia coli and Bacillus subtilis

机译:细菌趋化性的设计和多样性:大肠杆菌和枯草芽孢杆菌的比较研究。

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摘要

Comparable processes in different species often involve homologous genes. One question is whether the network structure, in particular the feedback control structure, is also conserved. The bacterial chemotaxis pathways in E. coli and B. subtilis both regulate the same task, namely, excitation and adaptation to environmental signals. Both pathways employ many orthologous genes. Yet how these orthologs contribute to network function in each organism is different. To investigate this problem, we propose what is to our knowledge the first computational model for B. subtilis chemotaxis and compare it to previously published models for chemotaxis in E. coli. The models reveal that the core control strategy for signal processing is the same in both organisms, though in B. subtilis there are two additional feedback loops that provide an additional layer of regulation and robustness. Furthermore, the network structures are different despite the similarity of the proteins in each organism. These results demonstrate the limitations of pathway inferences based solely on homology and suggest that the control strategy is an evolutionarily conserved property.
机译:不同物种中的可比过程通常涉及同源基因。一个问题是网络结构,尤其是反馈控制结构是否也得到保留。大肠杆菌和枯草芽孢杆菌中的细菌趋化途径均调节相同的任务,即激发和适应环境信号。两种途径都使用许多直系同源基因。然而,这些直系同源物如何在每种生物中促进网络功能的发展却不同。为了调查此问题,我们提出了我们所知的第一个枯草芽孢杆菌趋化性计算模型,并将其与以前发表的大肠杆菌趋化性模型进行比较。这些模型表明,两种生物中信号处理的核心控制策略是相同的,尽管在枯草芽孢杆菌中有两个额外的反馈回路,它们提供了额外的调节和鲁棒性。此外,尽管每种生物中蛋白质的相似性,网络结构也不同。这些结果证明了仅基于同源性的途径推断的局限性,并表明控制策略是进化上保守的特性。

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