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合成微生物群落中的多细胞反馈控制

Multicellular Feedback Control in Synthetic Microbial Consortia.

作者信息

Salzano Davide, Shannon Barbara, Grierson Claire, Marucci Lucia, Savery Nigel J, di Bernardo Mario

机构信息

Scuola Superiore Meridionale, 80134 Naples, Italy.

School of Biochemistry, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

ACS Synth Biol. 2025 Jul 18;14(7):2537-2547. doi: 10.1021/acssynbio.4c00862. Epub 2025 Jun 11.

Abstract

In this paper, we present a biomolecular control architecture able to guarantee stable and precise regulation of gene expression. Specifically, we engineer a microbial consortium comprising a cellular population, named , that is tasked to regulate the expression of a gene in a second population, termed . Traditional biomolecular control strategies, while effective, are predominantly confined to single-cell applications, limiting their complexity and adaptability due to factors such as competition for limited cell resources and incompatible chemical reactions. Our approach overcomes these limitations by employing a distributed multicellular feedback loop between two strains of , allowing for division of labor across the consortium. experiments demonstrate that this control system maintains precise and robust gene expression in the target population, even amid variations in consortium composition. Our study fills a critical gap in synthetic biology and paves the way for more complex and reliable applications in the field.

摘要

在本文中,我们提出了一种生物分子控制架构,能够保证基因表达的稳定和精确调控。具体而言,我们构建了一个微生物群落,它由一个名为 的细胞群体组成,其任务是调控另一个称为 的群体中一个基因的表达。传统的生物分子控制策略虽然有效,但主要局限于单细胞应用,由于诸如对有限细胞资源的竞争和不相容化学反应等因素,限制了它们的复杂性和适应性。我们的方法通过在两株 之间采用分布式多细胞反馈回路克服了这些限制,从而实现了整个群落的分工。 实验表明,即使在群落组成发生变化的情况下,该控制系统仍能在目标群体中维持精确且稳健的基因表达。我们的研究填补了合成生物学中的一个关键空白,并为该领域更复杂、更可靠的应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/762b/12281617/d780e1ef6c86/sb4c00862_0001.jpg

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