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Environmental heterogeneity promotes spatial resilience of phototrophic biofilms in streambeds

机译:环境异质性促进了河床中光养生物膜的空间弹性

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摘要

The loss of environmental heterogeneity threatens biodiversity and ecosystem functioning. It is therefore important to understand the relationship between environmental heterogeneity and spatial resilience as the capacity of ecological communities embedded in a landscape matrix to reorganize following disturbance. We experimented with phototrophic biofilms colonizing streambed landscapes differing in spatial heterogeneity and exposed to flow-induced disturbance. We show how streambed roughness and related features promote growth-related trait diversity and the recovery of biofilms towards carrying capacity (CC) and spatial resilience. At the scale of streambed landscapes, roughness and exposure to water flow promoted biofilm CC and growth trait diversity. Structural equation modelling identified roughness, post-disturbance biomass and a ‘neighbourhood effect’ to drive biofilm CC. Our findings suggest that the environment selecting for adaptive capacities prior to disturbance (that is, memory effects) and biofilm connectivity into spatial networks (that is, mobile links) contribute to the spatial resilience of biofilms in streambed landscapes. These findings are critical given the key functions biofilms fulfil in streams, now increasingly experiencing shifts in sedimentary and hydrological regimes.
机译:环境异质性的丧失威胁着生物多样性和生态系统的功能。因此,重要的是要了解环境异质性与空间复原力之间的关系,因为景观矩阵中嵌入的生态群落有能力在干扰后重新组织。我们用光养生物膜进行了实验,这些生物膜在空间异质性不同的流化景观上定殖,并受到流动引起的干扰。我们展示了流线型粗糙度和相关特征如何促进与生长相关的性状多样性和生物膜对承载能力(CC)和空间弹性的恢复。在河流景观的规模上,粗糙度和暴露于水流促进了生物膜CC和生长性状的多样性。结构方程模型确定了粗糙度,扰动后的生物量和驱动生物膜CC的“邻里效应”。我们的发现表明,在干扰(即记忆效应)和生物膜进入空间网络(即移动链接)之前选择适应能力的环境有助于流化景观中生物膜的空间复原力。考虑到生物膜在河流中履行的关键功能,这些发现至关重要,现在生物膜在沉积和水文状况中的变化越来越多。

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