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基于个体的建模揭示了细菌群落中的空间和社会相互作用。

Individual-based modeling unravels spatial and social interactions in bacterial communities.

作者信息

Wang Jian, Hashem Ihab, Bhonsale Satyajeet, F M Van Impe Jan

机构信息

BioTeC+, Chemical and Biochemical Process Technology and Control, Department of Chemical Engineering, Faculty of Engineering Technology, KU Leuven, 9000 Ghent, Belgium.

出版信息

ISME J. 2025 Jan 2;19(1). doi: 10.1093/ismejo/wraf116.

Abstract

Bacterial interactions are fundamental in shaping community structure and function, driving processes that range from plastic degradation in marine ecosystems to dynamics within the human gut microbiome. Yet, studying these interactions is challenging due to difficulties in resolving spatiotemporal scales, quantifying interaction strengths, and integrating intrinsic cellular behaviors with extrinsic environmental conditions. Individual-based modeling addresses these challenges through single-cell-level simulations that explicitly model growth, division, motility, and environmental responses. By capturing both the spatial organization and social interactions, individual-based modeling reveals how microbial interactions and environmental gradients collectively shape community architecture, species coexistence, and adaptive responses. In particular, individual-based modeling provides mechanistic insights into how social behaviors-such as competition, metabolic cooperation, and quorum sensing-are regulated by spatial structure, uncovering the interplay between localized interactions and emergent community properties. In this review, we synthesize recent applications of individual-based modeling in studying bacterial spatial and social interactions, highlighting how their interplay governs community stability, diversity, and resilience. By linking individual-scale interactions with the ecosystem-level organization, individual-based modeling offers a predictive framework for understanding microbial ecology and informing strategies for controlling and engineering bacterial consortia in both natural and applied settings.

摘要

细菌间的相互作用对于塑造群落结构和功能至关重要,推动着从海洋生态系统中的塑料降解到人类肠道微生物群动态变化等一系列过程。然而,由于在解决时空尺度、量化相互作用强度以及将内在细胞行为与外在环境条件相结合方面存在困难,研究这些相互作用具有挑战性。基于个体的建模通过单细胞水平的模拟来应对这些挑战,该模拟明确地对生长、分裂、运动和环境响应进行建模。通过捕捉空间组织和社会相互作用,基于个体的建模揭示了微生物相互作用和环境梯度如何共同塑造群落结构、物种共存和适应性反应。特别是,基于个体的建模为诸如竞争、代谢合作和群体感应等社会行为如何受空间结构调节提供了机制性见解,揭示了局部相互作用与涌现的群落特性之间的相互作用。在本综述中,我们综合了基于个体的建模在研究细菌空间和社会相互作用方面的最新应用,强调了它们的相互作用如何支配群落稳定性、多样性和恢复力。通过将个体尺度的相互作用与生态系统水平的组织联系起来,基于个体的建模为理解微生物生态学以及为在自然和应用环境中控制和设计细菌群落提供信息的策略提供了一个预测框架。

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