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细菌群落中的竞争与合作代谢相互作用。

Competitive and cooperative metabolic interactions in bacterial communities.

机构信息

Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.

出版信息

Nat Commun. 2011 Dec 13;2:589. doi: 10.1038/ncomms1597.

Abstract

Revealing the ecological principles that shape communities is a major challenge of the post-genomic era. To date, a systematic approach for describing inter-species interactions has been lacking. Here we independently predict the competitive and cooperative potential between 6,903 bacterial pairs derived from a collection of 118 species' metabolic models. We chart an intricate association between competition and cooperation indicating that the cooperative potential is maximized at moderate levels of resource overlap. Utilizing ecological data from 2,801 samples, we explore the associations between bacterial interactions and coexistence patterns. The high level of competition observed between species with mutual-exclusive distribution patterns supports the role of competition in community assembly. Cooperative interactions are typically unidirectional with no obvious benefit to the giver. However, within their natural communities, bacteria typically form close cooperative loops resulting in indirect benefit to all species involved. These findings are important for the future design of consortia optimized towards bioremediation and bio-production applications.

摘要

揭示塑造群落的生态原则是后基因组时代的主要挑战。迄今为止,还缺乏一种系统的方法来描述种间相互作用。在这里,我们独立预测了从 118 种代谢模型的集合中得出的 6903 对细菌对之间的竞争和合作潜力。我们绘制了竞争与合作之间错综复杂的关联图,表明在资源重叠程度适中的情况下,合作潜力最大化。我们利用来自 2801 个样本的生态数据,探索了细菌相互作用与共存模式之间的关系。在具有相互排斥分布模式的物种之间观察到的高水平竞争支持了竞争在群落组装中的作用。合作相互作用通常是单向的,对给予者没有明显的好处。然而,在其自然群落中,细菌通常形成紧密的合作循环,从而使所有相关物种间接受益。这些发现对未来设计针对生物修复和生物生产应用的优化联合体具有重要意义。

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