生物
生态学
微生物生态学
微生物种群生物学
微生物群
微尺度化学
进化生态学
社区
空间生态学
基因组
钥匙(锁)
生态系统
地理距离
时间尺度
距离衰减
灵活性(工程)
功能生态学
微生物
应用生态学
水平基因转移
理论生态学
生物进化
环境资源管理
生态演替
特质
进化生物学
生态系统工程师
合成生物学
作者
Ao Huang,Devika Ramesh,Yong Nie,Kun Zhao,Miaoxiao Wang
标识
DOI:10.1093/ismejo/wrag199
摘要
Microorganisms assemble into spatially structured communities in which neighboring cells are separated by highly heterogeneous cell-cell distances. These spatial distances are not merely geometric features but key ecological variables that determine whether cells can exchange metabolites, compete through toxins, sense one another, or transfer genes, thereby profoundly influencing community assembly, productivity, and the evolution of microorganisms residing in communities. In this review, we synthesize recent progress on how cell-cell distance in microbial communities is determined, as well as how it modulates microbial interactions that lead to diverse ecological and evolutionary consequences. Specifically, we propose several testable conceptual frameworks that help quantify complicated distance-interaction relationships. We discuss emerging imaging, automated analysis, and spatial engineering approaches that now make it possible to quantify and manipulate cell-cell distance with increasing precision. Viewing microbial communities through the lens of cell-cell distance provides a unifying framework for linking microscale spatial organization to microbiome function, offering new opportunities to predict and engineer microbial communities.
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