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Unraveling the environmental and anthropogenic drivers of bacterial community changes in the Estuary of Bilbao and its tributaries

机译:揭示毕尔巴鄂及其支流河口细菌群落变化的环境和人为驱动因素

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摘要

In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic composition and environmental factors significantly influencing bacterial community structure across an annual cycle in the Estuary of Bilbao as well as its tributaries. In spite of this estuary being small and characterized by a short residence time, the environmental factors most highly correlated with the bacterial community mirrored those reported to govern larger estuaries, specifically salinity and temperature. Additionally, bacterial community changes in the estuary appeared to vary with precipitation. For example, an increase in freshwater bacteria (Comamonadaceae and Sphingobacteriaceae) was observed in high precipitation periods compared to the predominately marine-like bacteria (Rhodobacterales and Oceanospirillales) that were found in low precipitation periods. Notably, we observed a significantly higher relative abundance of Comamonadaceae than previously described in other estuaries. Furthermore, anthropic factors could have an impact on this particular estuary’s bacterial community structure. For example, ecosystem changes related to the channelization of the estuary likely induced a low dissolved oxygen (DO) concentration, high temperature, and high chlorophyll concentration period in the inner euhaline water in summer (samples with salinity >30 ppt). Those samples were characterized by a high abundance of facultative anaerobes. For instance, OTUs classified as Cryomorphaceae and Candidatus Aquiluna rubra were negatively associated with DO concentration, while Oleiphilaceae was positively associated with DO concentration. Additionally, microorganisms related to biological treatment of wastewater (e.g Bdellovibrio and Zoogloea) were detected in the samples immediately downstream of the Bilbao Wastewater Treatment Plant (WWTP). There are several human activities planned in the region surrounding the Estuary of Bilbao (e.g. sediment draining, architectural changes, etc.) which will likely affect this ecosystem. Therefore, the addition of bacterial community profiling and diversity analysis into the estuary’s ongoing monitoring program would provide a more comprehensive view of the ecological status of the Estuary of Bilbao.
机译:在这项研究中,使用16S rRNA基因测序来表征在毕尔巴鄂河口及其支流的整个年度周期中,显着影响细菌群落结构的生物分类组成和环境因素的变化。尽管该河口很小,并且停留时间短,但与细菌群落高度相关的环境因素反映了据报道控制较大河口的那些因素,特别是盐度和温度。此外,河口细菌群落的变化似乎随降水而变化。例如,与在低降水期发现的主要是海洋样细菌(Rhodobacterales和Oceanospirillales)相比,在高降水期观察到了淡水细菌(Comamonadaceae和Sphingobacteriaceae)的增加。值得注意的是,我们观察到的科马科的相对丰度比以前在其他河口中描述的要高得多。此外,人为因素可能会影响该特定河口的细菌群落结构。例如,与河口通道化有关的生态系统变化可能在夏季在内部真盐水溶液中引起了较低的溶解氧(DO)浓度,高温和较高的叶绿素浓度期(盐度> 30 ppt的样品)。这些样品的特点是兼性厌氧菌含量很高。例如,归类为低温科和念珠菌的OTU与DO浓度呈负相关,而油橄榄科与DO浓度呈正相关。此外,在毕尔巴鄂废水处理厂(WWTP)下游的样品中检测到了与废水生物处理有关的微生物(例如Bdellovibrio和Zoogloea)。毕尔巴鄂河口周边地区计划进行一些人类活动(例如,泥沙排放,建筑变化等),这很可能会影响该生态系统。因此,在河口的持续监测计划中增加细菌群落分布图和多样性分析,将可以更全面地了解毕尔巴鄂河口的生态状况。

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