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Prokaryotic community composition and distribution in coastal sediments following a Po river flood event (northern Adriatic Sea, Italy)

机译:蒲河洪水事件(意大利北亚得里亚海)后沿海沉积物中原核生物的组成和分布

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The influence of the freshwater runoff on marine prokaryotes has been largelly studied in the pelagic environment, little is known about the effects on the prokaryotes in coastal sediments. We investigated the distribution of benthic prokaryotes in the northern Adriatic Sea, when an extreme Po River flood event determined high heterogeneity along the estuarine salinity gradient (from mainly freshwater to marine). The microbial diversity was assessed by 16S rRNA gene Illumina sequencing, the quantification of the dominant taxa of Bacteria and Archaea by microscopy techniques (CARD-FISH). Our results showed dominance of Bacteria (eight-fold higher) over Archaea, and highlighted Proteobacteria as the most represented phylum, followed by Bacteroidetes. Prokaryotic abundance, quantified by DAPI staining, was mainly affected by sediment characteristics (Total Organic C and Total N contents, and silt fraction). Abundance reached the highest values in sites directly affected by the plume (range 7.3 x 10(8) - 2.8 x 10(9) cell g(-1)). A considerable difference in prokaryotes composition was observed along the salinity gradient, with an increasing presence of freshwater taxa at stations more influenced by the river discharge. CARD-FISH analyses corroborated these findings, showing higher abundance of beta-Proteobacteria and Planctomycetes at stations closest to the river mouths. Nevertheless, a core microbiome (about 10% of the total OTUs) was present across all the study areas, indicating the ability of this assemblage to survive in rather diverse environmental conditions, differently impacted by the river plume. Our results show that the river plume can affect the diversity and distribution patterns of benthic prokaryotes far into the pro-delta, although further investigations are needed in order to understand how the mixing of bacterial communities of different origin might reflect on ecosystem functioning.
机译:在远洋环境中已经对淡水径流对海洋原核生物的影响进行了广泛研究,而对沿海沉积物中对原核生物的影响知之甚少。我们调查了亚得里亚海北部底栖原核生物的分布,当时的一次极端Po河洪水事件确定了沿河口盐度梯度(主要是淡水到海洋)的高度非均质性。通过16S rRNA基因Illumina测序,通过显微镜技术(CARD-FISH)对细菌和古细菌的优势类群进行定量,评估了微生物多样性。我们的结果表明细菌比古细菌占优势(高8倍),并突出了变形杆菌是最有代表性的门,其次是拟杆菌。通过DAPI染色量化的原核生物丰度主要受沉积物特征(总有机碳和总氮含量以及淤泥分数)的影响。在直接受到羽流影响的位置,丰度达到最高值(范围7.3 x 10(8)-2.8 x 10(9)单元g(-1))。沿盐度梯度观察到原核生物组成有相当大的差异,在受河流流量影响更大的站点,淡水生物群的存在增加。 CARD-FISH分析证实了这些发现,表明在最靠近河口的站点中,β-变形杆菌和浮游菌的含量较高。但是,在所有研究区域中都存在一个核心微生物组(约占总OTU的10%),这表明该组合在不同的环境条件下生存的能力受到河流羽流的影响不同。我们的结果表明,河羽可以影响远三角洲底栖原核生物的多样性和分布模式,尽管还需要进一步的研究以了解不同来源的细菌群落的混合可能如何影响生态系统功能。

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    《Estuarine Coastal and Shelf Science》 |2020年第5期|106547.1-106547.12|共12页
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    CNR IRSA Via Salaria Km 29 300 I-00015 Rome Italy;

    CNR Ist Sci Marine ISMAR Castello 2737-F I-30122 Venice Italy;

    CNR Ist Risorse Biol & Biotecnol Marine IRBIM I-60125 Ancona Italy;

    Ist Nazl Oceanog & Geofis Sperimentale OGS Via A Piccard 54 I-34151 Trieste Italy;

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