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中营养沿海地区(英吉利海峡东部)浮游真核微生物的多样性和潜在活动模式。

Diversity and potential activity patterns of planktonic eukaryotic microbes in a mesoeutrophic coastal area (eastern English Channel).

机构信息

Univ. Littoral Côte d'Opale, CNRS, Univ. Lille, UMR, LOG, Laboratoire d'Océanologie et de Géosciences, Lille, France.

International Hellenic University, School of Economics, Business Administration & Legal Studies, Thessaloniki, Greece.

出版信息

PLoS One. 2018 May 10;13(5):e0196987. doi: 10.1371/journal.pone.0196987. eCollection 2018.

Abstract

The diversity of planktonic eukaryotic microbes was studied at a coastal station of the eastern English Channel (EEC) from March 2011 to July 2015 (77 samples) using high throughput sequencing (454-pyrosequencing and Illumina) of the V2-V3 hypervariable region of the 18S SSU rDNA gene. Similar estimations of OTU relative abundance and taxonomic distribution for the dominant higher taxonomic groups (contributing >1% of the total number of OTUs) were observed with the two methods (Kolmogorov-Smirnov p-value = 0.22). Eight super-groups were identified throughout all samples: Alveolata, Stramenopiles, Opisthokonta, Hacrobia, Archeaplastida, Apusozoa, Rhizaria, and Amoebozoa (ordered by decreasing OTU richness). To gain further insight into microbial activity in the EEC, ribosomal RNA was extracted for samples from 2013-2015 (30 samples). Analysis of 18S rDNA and rRNA sequences led to the detection of 696 and 700 OTUs, respectively. Cluster analysis based on OTUs' abundance indicated three major seasonal groups that were associated to spring, winter/autumn, and summer conditions. The clusters inferred from rRNA data showed a clearer seasonal representation of the community succession than the one based on rDNA. The rRNA/rDNA ratio was used as a proxy for relative cell activity. When all OTUs were considered, the average rRNA:rDNA ratio showed a linear trend around the 1:1 line, suggesting a linear relation between OTU abundance (rDNA) and activity (rRNA). However, this ratio was highly variable over time when considering individual OTUs. Interestingly, the OTU affiliated with P. globosa displayed rRNA:rDNA ratio that allowed to delimit high vs low abundance and high vs low activity periods. It unveiled quite well the Phaeocystis bloom dynamic regarding cell proliferation and activity, and could even be used as early indicator of an upcoming bloom.

摘要

本研究于 2011 年 3 月至 2015 年 7 月期间,在英吉利海峡东部沿海站(EEC)使用高通量测序(454 焦磷酸测序和 Illumina)对 18S SSU rDNA 基因的 V2-V3 高变区,对浮游真核微生物的多样性进行了研究。两种方法(Kolmogorov-Smirnov p 值=0.22)对优势分类群(OTU 相对丰度和分类分布贡献>1%)的估计结果相似。在所有样品中均鉴定出 8 个超级群:纤毛门、藻青菌门、后口动物门、Hacrobia、古生菌门、Apusozoa、根肿菌门和肉足虫门(按 OTU 丰富度递减顺序排列)。为了进一步了解英吉利海峡东部海域的微生物活性,我们从 2013 年至 2015 年(30 个样本)提取了核糖体 RNA。18S rDNA 和 rRNA 序列分析分别检测到 696 和 700 个 OTU。基于 OTU 丰度的聚类分析表明,有三个主要的季节性群体与春季、冬季/秋季和夏季条件有关。基于 rRNA 数据推断的聚类比基于 rDNA 的聚类更清楚地代表了群落演替的季节性。rRNA/rDNA 比值可作为相对细胞活性的替代物。当考虑所有 OTU 时,平均 rRNA:rDNA 比值围绕 1:1 线呈线性趋势,表明 OTU 丰度(rDNA)和活性(rRNA)之间存在线性关系。然而,当考虑单个 OTU 时,该比值随时间变化高度可变。有趣的是,与 P. globosa 相关的 OTU 显示出 rRNA:rDNA 比值,可以区分高丰度和低丰度以及高活性和低活性时期。它很好地揭示了聚球藻的繁殖动态,以及细胞增殖和活性,可以用作即将出现水华的早期指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b35/5944946/74cc0dbbcdba/pone.0196987.g001.jpg

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