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比利时城市化梯度下的淡水浮游细菌群落结构

Freshwater Bacterioplankton Metacommunity Structure Along Urbanization Gradients in Belgium.

作者信息

Hanashiro Fabio Toshiro T, Mukherjee Shinjini, Souffreau Caroline, Engelen Jessie, Brans Kristien I, Busschaert Pieter, De Meester Luc

机构信息

Laboratory of Aquatic Ecology, Evolution and Conservation, Department of Biology, KU Leuven, Leuven, Belgium.

Department of Gynaecology and Obstetrics, UZ Leuven, Leuven, Belgium.

出版信息

Front Microbiol. 2019 Apr 12;10:743. doi: 10.3389/fmicb.2019.00743. eCollection 2019.

Abstract

Urbanization is transforming and fragmenting natural environments worldwide, driving changes in biological communities through alterations in local environmental conditions as well as by changing the capacity of species to reach specific habitats. While the majority of earlier studies have been performed on higher plants and animals, it is crucial to increase our insight on microbial responses to urbanization across different spatial scales. Here, using a metacommunity approach, we evaluated the effects of urbanization on bacterioplankton communities in 50 shallow ponds in Belgium (Flanders region), one of the most urbanized areas in Northwest Europe. We estimated the relative importance of local environmental factors (35 abiotic and biotic variables), regional spatial factors and urbanization (built-up area) quantified at two spatial scales (200 m × 200 m and 3 km × 3 km). We show that urbanization at local or regional scales did not lead to strong changes in community composition and taxon diversity of bacterioplankton. Urbanization at regional scale (3 km × 3 km) explained only 2% of community composition variation while at local scale (200 m × 200 m), no effect was detected. Local environmental factors explained 13% (OTUs with relative abundance ≥ 0.1%) to 24% (12 dominant OTUs -≥ 1%) of community variation. Six local environmental variables significantly explained variation in bacterioplankton community composition: pH, alkalinity, conductivity, total phosphorus, abundance of and concentration of copper (Cu), of which pH was partly mediated by urbanization. Our results indicate that environmental rather than spatial factors accounted for the variation in bacterioplankton community structure, suggesting that species sorting is the main process explaining bacterioplankton community assembly. Apparently, urbanization does not have a direct and strong effect on bacterioplankton metacommunity structure, probably due to the capacity of these organisms to adapt toward and colonize habitats with different environmental conditions and due to their fast adaptation and metabolic versatility. Thus, bacterioplankton communities inhabiting shallow ponds may be less affected by environmental conditions resulting from urbanization as compared to the impacts previously described for other taxa.

摘要

城市化正在改变并分割全球的自然环境,通过改变当地环境条件以及物种到达特定栖息地的能力,推动生物群落的变化。虽然大多数早期研究是针对高等植物和动物进行的,但加强我们对微生物在不同空间尺度上对城市化反应的认识至关重要。在此,我们采用元群落方法,评估了城市化对比利时(弗拉芒地区)50个浅水池塘中浮游细菌群落的影响,该地区是西北欧城市化程度最高的地区之一。我们估计了在两个空间尺度(200米×200米和3千米×3千米)上量化的当地环境因素(35个非生物和生物变量)、区域空间因素和城市化(建成区)的相对重要性。我们发现,局部或区域尺度的城市化并未导致浮游细菌群落组成和分类多样性的强烈变化。区域尺度(3千米×3千米)的城市化仅解释了群落组成变异的2%,而在局部尺度(200米×200米)未检测到影响。当地环境因素解释了群落变异的13%(相对丰度≥0.1%的操作分类单元)至24%(12个优势操作分类单元 -≥1%)。六个当地环境变量显著解释了浮游细菌群落组成的变异:pH值、碱度、电导率、总磷、的丰度和铜(Cu)的浓度,其中pH值部分受城市化影响。我们的结果表明,环境因素而非空间因素导致了浮游细菌群落结构的变异,这表明物种分选是解释浮游细菌群落组装的主要过程。显然,城市化对浮游细菌元群落结构没有直接和强烈的影响,这可能是由于这些生物能够适应并在具有不同环境条件的栖息地定殖,以及它们快速适应和代谢多样性的能力。因此,与之前描述的其他分类群所受影响相比,栖息在浅水池塘中的浮游细菌群落可能受城市化导致的环境条件影响较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0798/6473040/db17d36e894b/fmicb-10-00743-g001.jpg

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