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Environmental and spatial factors drive diatom species distribution in Alpine streams: Implications for biomonitoring

机译:环境和空间因素驱动高山溪流中的硅藻物种分布:对生物监测的启示

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Given their documented capacity to track changes in environmental conditions and human alterations, benthic diatom communities are at present widely used in biomonitoring programs to evaluate stream water quality. However, it is becoming more and more evident that species ecological preferences are not the only drivers of diatom community composition, since dispersal-related processes also play a role. This is particularly compelling in Alpine streams, where orographic conformation and human-related impacts limit dispersal of organisms. In addition, several environmental variables may influence diatom community in pristine or impacted sites. We here investigate the differential role of environmental and spatial factors in driving the community assemblages of diatoms in streams of the Eastern Italian Alps, focusing on both taxonomic and functional composition. We analysed data from 110 samples collected on two different geological substrates, i.e. calcareous and siliceous, during the last eight years of biomonitoring programs, among which 64 collected in reference sites and 46 in impacted sites. We first evaluated whether diatom communities in reference and impacted sites are differentially shaped by environmental and spatial factors, highlighting the major role of spatial constraints in both of them. In particular, anthropogenic disruption of longitudinal connectivity in streams likely shaped impacted communities, as demonstrated by the increasing abundance of motile taxa, which are associated with physical disturbance. Conversely, reference communities were mostly affected by spatially structured environmental variables, especially those related to streambed lithology. We then compared the taxonomic and functional composition of diatom communities between the two geological substrates in both reference and impacted sites to better highlight the differential role of this factor. Our results demonstrate that lithology strongly drives diatom community composition in reference but not in impacted sites, confirming our previous observations. The analysis of functional traits, however, highlighted how differences were due not only to the geological substrates, but also to other environmental variables, like flow velocity. Overall, the effect of the spatial component on the structure of diatom assemblages can represent a background noise in the framework of the river quality assessment, and this should be taken into account especially in those countries, like Italy, covering a broad range of mountain areas.
机译:底栖硅藻群落具有记录的跟踪环境条件变化和人类变化的能力,因此目前已广泛用于生物监测计划中以评估溪流水质。然而,越来越明显的是,物种生态偏好并不是硅藻群落组成的唯一驱动因素,因为与分散有关的过程也起着作用。在高山流中,这尤其引人注目,那里的地形构造和与人类相关的影响限制了生物体的扩散。此外,一些环境变量可能会影响原始或受影响地点的硅藻群落。我们在这里研究环境和空间因素在驱动意大利东部阿尔卑斯山溪流中的硅藻群落聚集方面的不同作用,重点放在分类学和功能组成上。我们分析了在过去八年的生物监测计划中,从两种不同的地质基质(即钙质和硅质)收集的110个样品的数据,其中64个在参考点收集,46个在受影响的点收集。我们首先评估了参考地点和受灾地点的硅藻群落是否受环境和空间因素的影响而形成差异,从而突出了空间约束在这两个方面的主要作用。特别是,人为干扰的河流纵向连通性可能会影响受影响的社区,这一点可以通过与自然扰动相关的活动类群数量的增加来证明。相反,参考群落主要受空间结构化环境变量的影响,尤其是与流化岩性有关的变量。然后,我们比较了参考地点和受影响地点的两种地质基质之间的硅藻群落的分类学和功能组成,以更好地突出这一因素的不同作用。我们的结果表明,岩性在参考中强烈驱动硅藻群落组成,但在受影响的部位却没有,这证实了我们先前的观察结果。但是,对功能性状的分析强调了差异的原因不仅是地质基质,还有其他环境变量,例如流速。总体而言,空间成分对硅藻集合体结构的影响可能代表河流质量评估框架中的背景噪声,尤其在像意大利这样覆盖大范围山区的国家中,应予以考虑。

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