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水生微生物群落动态中的同步性。

Synchrony in aquatic microbial community dynamics.

作者信息

Kent Angela D, Yannarell Anthony C, Rusak James A, Triplett Eric W, McMahon Katherine D

机构信息

Center for Limnology, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

ISME J. 2007 May;1(1):38-47. doi: 10.1038/ismej.2007.6.

Abstract

Population dynamics are influenced by drivers acting from outside and from within an ecosystem. Extrinsic forces operating over broad spatial scales can impart synchronous behavior to separate populations, while internal, system-specific drivers often lead to idiosyncratic behavior. Here, we demonstrate synchrony in community-level dynamics among phytoplankton and bacteria in six north temperate humic lakes. The influence of regional meteorological factors explained much of the temporal variability in the phytoplankton community, and resulted in synchronous patterns of community change among lakes. Bacterial dynamics, in contrast, were driven by system-specific interactions with phytoplankton. Despite the importance of intrinsic factors for determining bacterial community composition and dynamics, we demonstrated that biological interactions transmitted the signal of the regional extrinsic drivers to the bacterial communities, ultimately resulting in synchronous community phenologies for bacterioplankton communities as well. This demonstrates how linkages between the components of a complex biological system can work to simplify the dynamics of the system and implies that it may be possible to predict the behavior of microbial communities responsible for important biogeochemical services in the landscape.

摘要

种群动态受到生态系统外部和内部驱动因素的影响。在广泛空间尺度上起作用的外部力量可使不同种群呈现同步行为,而内部的、特定系统的驱动因素往往导致独特行为。在此,我们证明了六个北温带腐殖质湖泊中浮游植物和细菌在群落水平动态上的同步性。区域气象因素的影响解释了浮游植物群落时间变异性的大部分原因,并导致湖泊间群落变化的同步模式。相比之下,细菌动态受到与浮游植物的特定系统相互作用的驱动。尽管内在因素对于确定细菌群落组成和动态很重要,但我们证明生物相互作用将区域外部驱动因素的信号传递给了细菌群落,最终也导致了浮游细菌群落的同步群落物候。这表明复杂生物系统各组成部分之间的联系如何能够简化系统动态,并意味着有可能预测负责景观中重要生物地球化学服务的微生物群落的行为。

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