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Resource Availability and Spatial Heterogeneity Control Bacterial Community Response to Nutrient Enrichment in Lakes

机译:湖泊养分富集的资源有效性和空间异质性控制细菌群落响应

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摘要

The diversity and composition of ecological communities often co-vary with ecosystem productivity. However, the relative importance of productivity, or resource abundance, versus the spatial distribution of resources in shaping those ecological patterns is not well understood, particularly for the bacterial communities that underlie most important ecosystem functions. Increasing ecosystem productivity in lakes has been shown to influence the composition and ecology of bacterial communities, but existing work has only evaluated the effect of increasing resource supply and not heterogeneity in how those resources are distributed. We quantified how bacterial communities varied with the trophic status of lakes and whether community responses differed in surface and deep habitats in response to heterogeneity in nutrient resources. Using ARISA fingerprinting, we found that bacterial communities were more abundant, richer, and more distinct among habitats as lake trophic state and vertical heterogeneity in nutrients increased, and that spatial resource variation produced habitat specific responses of bacteria in response to increased productivity. Furthermore, changes in communities in high nutrient lakes were not produced by turnover in community composition but from additional taxa augmenting core bacterial communities found in lower productivity lakes. These data suggests that bacterial community responses to nutrient enrichment in lakes vary spatially and are likely influenced disproportionately by rare taxa.
机译:生态社区的多样性和组成常常与生态系统生产力互不相同。但是,对于形成这些生态模式的生产力或资源丰富度与资源空间分布的相对重要性,人们尚未广为人知,特别是对于构成最重要的生态系统功能的细菌群落而言。事实表明,湖泊生态系统生产力的提高会影响细菌群落的组成和生态,但是现有工作仅评估了资源供应增加的影响,而没有评估这些资源的分配方式的异质性。我们量化了细菌群落如何随湖泊的营养状态而变化,以及群落对营养资源异质性的响应在地表和深部生境中是否有所不同。使用ARISA指纹图谱,我们发现随着湖泊的营养状态和养分的垂直异质性增加,生境中的细菌群落变得更丰富,更丰富和更独特,并且空间资源变化产生了对生境的特定响应,以响应生产力的提高。此外,高养分湖泊中群落的变化不是由群落组成的变化引起的,而是由生产力较低的湖泊中发现的增加生物分类的核心细菌群落而引起的。这些数据表明,细菌群落对湖泊养分富集的反应在空间上是不同的,并且很可能受到稀有分类群的不成比例的影响。

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