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沿大湖河川-湖泊连续体与蓝藻水华相关的水生微生物群落的时空连通性。

Spatio-temporal connectivity of the aquatic microbiome associated with cyanobacterial blooms along a Great Lake riverine-lacustrine continuum.

作者信息

Crevecoeur Sophie, Edge Thomas A, Watson Linet Cynthia, Watson Susan B, Greer Charles W, Ciborowski Jan J H, Diep Ngan, Dove Alice, Drouillard Kenneth G, Frenken Thijs, McKay Robert Michael, Zastepa Arthur, Comte Jérôme

机构信息

Watershed Hydrology and Ecology Research Division, Environment and Climate Change Canada, Burlington, ON, Canada.

Department of Biology, McMaster University, Hamilton, ON, Canada.

出版信息

Front Microbiol. 2023 Feb 9;14:1073753. doi: 10.3389/fmicb.2023.1073753. eCollection 2023.

Abstract

Lake Erie is subject to recurring events of cyanobacterial harmful algal blooms (cHABs), but measures of nutrients and total phytoplankton biomass seem to be poor predictors of cHABs when taken individually. A more integrated approach at the watershed scale may improve our understanding of the conditions that lead to bloom formation, such as assessing the physico-chemical and biological factors that influence the lake microbial community, as well as identifying the linkages between Lake Erie and the surrounding watershed. Within the scope of the Government of Canada's Genomics Research and Development Initiative (GRDI) Ecobiomics project, we used high-throughput sequencing of the 16S rRNA gene to characterize the spatio-temporal variability of the aquatic microbiome in the Thames River-Lake St. Clair-Detroit River-Lake Erie aquatic corridor. We found that the aquatic microbiome was structured along the flow path and influenced mainly by higher nutrient concentrations in the Thames River, and higher temperature and pH downstream in Lake St. Clair and Lake Erie. The same dominant bacterial phyla were detected along the water continuum, changing only in relative abundance. At finer taxonomical level, however, there was a clear shift in the cyanobacterial community, with dominating in the Thames River and and in Lake St. Clair and Lake Erie. Mantel correlations highlighted the importance of geographic distance in shaping the microbial community structure. The fact that a high proportion of microbial sequences found in the Western Basin of Lake Erie were also identified in the Thames River, indicated a high degree of connectivity and dispersal within the system, where mass effect induced by passive transport play an important role in microbial community assembly. Nevertheless, some cyanobacterial amplicon sequence variants (ASVs) related to , representing less than 0.1% of relative abundance in the upstream Thames River, became dominant in Lake St. Clair and Erie, suggesting selection of those ASVs based on the lake conditions. Their extremely low relative abundances in the Thames suggest additional sources are likely to contribute to the rapid development of summer and fall blooms in the Western Basin of Lake Erie. Collectively, these results, which can be applied to other watersheds, improve our understanding of the factors influencing aquatic microbial community assembly and provide new perspectives on how to better understand the occurrence of cHABs in Lake Erie and elsewhere.

摘要

伊利湖经常发生蓝藻有害藻华(cHABs)事件,但单独来看,营养物质和浮游植物总生物量的指标似乎并不能很好地预测cHABs。在流域尺度上采用更综合的方法,可能会增进我们对导致藻华形成条件的理解,比如评估影响湖泊微生物群落的物理化学和生物因素,以及确定伊利湖与周边流域之间的联系。在加拿大政府基因组学研究与发展倡议(GRDI)生态经济学项目的范围内,我们利用16S rRNA基因的高通量测序来描述泰晤士河-圣克莱尔湖-底特律河-伊利湖水生走廊中水生微生物组的时空变异性。我们发现,水生微生物组沿水流路径形成结构,主要受泰晤士河较高的营养浓度以及圣克莱尔湖和伊利湖下游较高的温度和pH值影响。在整个水体连续区域检测到相同的优势细菌门,只是相对丰度有所变化。然而,在更精细的分类水平上,蓝藻群落有明显变化,在泰晤士河占主导地位,而在圣克莱尔湖和伊利湖 占主导地位。Mantel相关性突出了地理距离在塑造微生物群落结构中的重要性。在伊利湖西部流域发现的高比例微生物序列也在泰晤士河中被鉴定出来,这表明该系统内具有高度的连通性和扩散性,被动运输引起的质量效应在微生物群落组装中起重要作用。尽管如此,一些与 相关的蓝藻扩增子序列变体(ASV),在上游泰晤士河的相对丰度不到0.1%,却在圣克莱尔湖和伊利湖成为优势种,这表明这些ASV是根据湖泊条件被选择出来的。它们在泰晤士河中的相对丰度极低,这表明可能还有其他来源促成了伊利湖西部流域夏季和秋季藻华的迅速发展。总体而言,这些结果可应用于其他流域,增进我们对影响水生微生物群落组装因素的理解,并为更好地理解伊利湖及其他地方cHABs的发生提供新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b32a/9947797/b9b2573fb222/fmicb-14-1073753-g001.jpg

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