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Zonation of bacterioplankton communities along aging upwelled water in the northern Benguela upwelling

机译:本格拉北部上升流中沿老化上升流水的浮游细菌群落的分区

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摘要

Upwelling areas are shaped by enhanced primary production in surface waters, accompanied by a well-investigated planktonic succession. Although bacteria play an important role in biogeochemical cycles of upwelling systems, little is known about bacterial community composition and its development during upwelling events. The aim of this study was to investigate the succession of bacterial assemblages in aging upwelled water of the Benguela upwelling from coastal to offshore sites. Water from the upper mixed layer at 12 stations was sampled along two transects from the origin of the upwelling to a distance of 220 km. 16S rRNA gene amplicon sequencing was then used in a bacterial diversity analysis and major bacterial taxa were quantified by catalyzed reporter deposition-fluorescence in situ hybridization. Additionally, bacterial cell numbers and bacterial production were assessed. Community statistical analysis revealed a reproducible zonation along the two transects, with four clusters of significantly different microbial assemblages. Clustering was mainly driven by phytoplankton composition and abundance. Similar to the temporal succession that occurs during phytoplankton blooms in temperate coastal waters, operational taxonomic units (OTUs) affiliated with Bacteroidetes and Gammaproteobacteria were dominant during algal blooming whereas “Pelagibacterales” were highly abundant in regions with low algal abundance. The most dominant heterotrophic OTU (9% of all reads) was affiliated with “Pelagibacterales” and showed a strong negative correlation with phytoplankton. By contrast, the second most abundant heterotrophic OTU (6% of all reads) was affiliated with the phylum Verrucomicrobia and correlated positively with phytoplankton. Together with the close relation of bacterial production and phytoplankton abundance, our results showed that bacterial community dynamics is strongly driven by the development and composition of the phytoplankton community.
机译:上升流区域的形成是通过增加地表水的初级产量,以及经过充分研究的浮游演替来实现的。尽管细菌在上升流系统的生物地球化学循环中起着重要的作用,但是关于细菌群落组成及其在上升流过程中的发育知之甚少。这项研究的目的是调查从沿海到近海的本格拉上升流道的老化上升流道中细菌组合的演替。沿着两个样带从上升流起点到12公里,对来自12个站的上层混合层的水进行采样。然后将16S rRNA基因扩增子测序用于细菌多样性分析,并通过催化的报告基因沉积-荧光原位杂交对主要细菌类群进行定量。另外,评估细菌细胞数目和细菌产生。社区统计分析显示,沿两个样带可重复的分区,其中四个簇的微生物组成明显不同。聚类主要由浮游植物的组成和丰度驱动。与温带沿海水域浮游植物开花期间发生的时间演替相似,藻类开花期间与拟杆菌属和γ-变形细菌属相关的操作分类单位(OTU)占主导地位,而藻类丰度低的地区“盲肠细菌”非常丰富。最主要的异养OTU(占所有读数的9%)与“古细菌”相关,并显示与浮游植物强烈的负相关。相比之下,第二丰富的异养OTU(占所有读数的6%)与Verrucomicrobia门相关,并且与浮游植物呈正相关。结合细菌生产和浮游植物丰度的密切关系,我们的结果表明,细菌群落动态是由浮游植物群落的发育和组成强烈驱动的。

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