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环境干扰降低了周丛生物中微生物种群的变异性。

Environmental Disturbances Decrease the Variability of Microbial Populations within Periphyton.

作者信息

Herren Cristina M, Webert Kyle C, McMahon Katherine D

机构信息

Freshwater and Marine Sciences Program, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Department of Zoology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

mSystems. 2016 May 17;1(3). doi: 10.1128/mSystems.00013-16. eCollection 2016 May-Jun.

Abstract

A central pursuit of microbial ecology is to accurately model changes in microbial community composition in response to environmental factors. This goal requires a thorough understanding of the drivers of variability in microbial populations. However, most microbial ecology studies focus on the effects of environmental factors on mean population abundances, rather than on population variability. Here, we imposed several experimental disturbances upon periphyton communities and analyzed the variability of populations within disturbed communities compared with those in undisturbed communities. We analyzed both the bacterial and the diatom communities in the periphyton under nine different disturbance regimes, including regimes that contained multiple disturbances. We found several similarities in the responses of the two communities to disturbance; all significant treatment effects showed that populations became less variable as the result of environmental disturbances. Furthermore, multiple disturbances to these communities were often interactive, meaning that the effects of two disturbances could not have been predicted from studying single disturbances in isolation. These results suggest that environmental factors had repeatable effects on populations within microbial communities, thereby creating communities that were more similar as a result of disturbances. These experiments add to the predictive framework of microbial ecology by quantifying variability in microbial populations and by demonstrating that disturbances can place consistent constraints on the abundance of microbial populations. Although models will never be fully predictive due to stochastic forces, these results indicate that environmental stressors may increase the ability of models to capture microbial community dynamics because of their consistent effects on microbial populations. There are many reasons why microbial community composition is difficult to model. For example, the high diversity and high rate of change of these communities make it challenging to identify causes of community turnover. Furthermore, the processes that shape community composition can be either deterministic, which cause communities to converge upon similar compositions, or stochastic, which increase variability in community composition. However, modeling microbial community composition is possible only if microbes show repeatable responses to extrinsic forcing. In this study, we hypothesized that environmental stress acts as a deterministic force that shapes microbial community composition. Other studies have investigated if disturbances can alter microbial community composition, but relatively few studies ask about the repeatability of the effects of disturbances. Mechanistic models implicitly assume that communities show consistent responses to stressors; here, we define and quantify microbial variability to test this assumption. : An author video summary of this article is available.

摘要

微生物生态学的一个核心追求是准确模拟微生物群落组成随环境因素的变化。这一目标需要深入了解微生物种群变异性的驱动因素。然而,大多数微生物生态学研究关注的是环境因素对平均种群丰度的影响,而非种群变异性。在此,我们对周丛生物群落施加了几种实验性干扰,并分析了受干扰群落中种群的变异性,并与未受干扰群落中的种群变异性进行比较。我们在九种不同的干扰模式下分析了周丛生物中的细菌和硅藻群落,这些模式包括包含多种干扰的模式。我们发现这两个群落对干扰的反应有几个相似之处;所有显著的处理效应都表明,由于环境干扰,种群的变异性降低。此外,对这些群落的多种干扰往往具有交互作用,这意味着无法通过单独研究单一干扰来预测两种干扰的效应。这些结果表明,环境因素对微生物群落中的种群具有可重复的影响,从而使群落因干扰而变得更加相似。这些实验通过量化微生物种群的变异性,并证明干扰可以对微生物种群的丰度施加一致的限制,从而为微生物生态学的预测框架增添了内容。尽管由于随机力量,模型永远无法完全具有预测性,但这些结果表明,环境压力源可能会提高模型捕捉微生物群落动态的能力,因为它们对微生物种群具有一致的影响。微生物群落组成难以建模有许多原因。例如,这些群落的高度多样性和快速变化使得识别群落更替的原因具有挑战性。此外,塑造群落组成的过程既可以是确定性的,导致群落趋向于相似的组成,也可以是随机性的,增加群落组成的变异性。然而,只有当微生物对外界强迫表现出可重复的反应时,才有可能对微生物群落组成进行建模。在本研究中,我们假设环境压力是塑造微生物群落组成的一种确定性力量。其他研究调查了干扰是否会改变微生物群落组成,但相对较少的研究探讨干扰效应的可重复性。机理模型隐含地假设群落对应激源表现出一致的反应;在此,我们定义并量化微生物变异性以检验这一假设。本文有作者视频总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf19/5072133/afc9de64187c/sys0031620220001.jpg

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