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合成化学介导的生态系统中生物多样性的时空调节

Spatiotemporal modulation of biodiversity in a synthetic chemical-mediated ecosystem.

作者信息

Song Hao, Payne Stephen, Gray Meagan, You Lingchong

机构信息

Department of Biomedical Engineering and Institute for Genome Sciences and Policy, Duke University, Durham, North Carolina, USA.

出版信息

Nat Chem Biol. 2009 Dec;5(12):929-35. doi: 10.1038/nchembio.244. Epub 2009 Nov 1.

Abstract

Biodiversity, or the relative abundance of species, measures the persistence of an ecosystem. To better understand its modulation, we analyzed the spatial and temporal dynamics of a synthetic, chemical-mediated ecosystem that consisted of two engineered Escherichia coli populations. Depending on the specific experimental conditions implemented, the dominant interaction between the two populations could be competition for nutrients or predation due to engineered communication. While the two types of interactions resulted in different spatial patterns, they demonstrated a common trend in terms of the modulation of biodiversity. Specifically, biodiversity decreased with increasing cellular motility if the segregation distance between the two populations was comparable to the length scale of the chemical-mediated interaction. Otherwise, biodiversity was insensitive to cellular motility. Our results suggested a simple criterion for predicting the modulation of biodiversity by habitat partitioning and cellular motility in chemical-mediated ecosystems.

摘要

生物多样性,即物种的相对丰度,衡量着生态系统的持久性。为了更好地理解其调节机制,我们分析了一个由两个工程化大肠杆菌群体组成的合成化学介导生态系统的时空动态。根据所实施的具体实验条件,两个群体之间的主要相互作用可能是对营养物质的竞争,或者是由于工程化通讯导致的捕食关系。虽然这两种相互作用类型导致了不同的空间模式,但它们在生物多样性调节方面表现出共同趋势。具体而言,如果两个群体之间的隔离距离与化学介导相互作用的长度尺度相当,生物多样性会随着细胞运动性的增加而降低。否则,生物多样性对细胞运动性不敏感。我们的结果提出了一个简单的标准,用于预测化学介导生态系统中栖息地划分和细胞运动性对生物多样性的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f58c/2782429/68724f03690d/nihms144484f1.jpg

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