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Spatio-Temporal Interdependence of Bacteria and Phytoplankton during a Baltic Sea Spring Bloom

机译:波罗的海春天盛开期间细菌和浮游植物的时空相互依存关系

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摘要

In temperate systems, phytoplankton spring blooms deplete inorganic nutrients and are major sources of organic matter for the microbial loop. In response to phytoplankton exudates and environmental factors, heterotrophic microbial communities are highly dynamic and change their abundance and composition both on spatial and temporal scales. Yet, most of our understanding about these processes comes from laboratory model organism studies, mesocosm experiments or single temporal transects. Spatial-temporal studies examining interactions of phytoplankton blooms and bacterioplankton community composition and function, though being highly informative, are scarce. In this study, pelagic microbial community dynamics (bacteria and phytoplankton) and environmental variables were monitored during a spring bloom across the Baltic Proper (two cruises between North Germany to Gulf of Finland). To test to what extent bacterioplankton community composition relates to the spring bloom, we used next generation amplicon sequencing of the 16S rRNA gene, phytoplankton diversity analysis based on microscopy counts and population genotyping of the dominating diatom Skeletonema marinoi. Several phytoplankton bloom related and environmental variables were identified to influence bacterial community composition. Members of Bacteroidetes and Alphaproteobacteria dominated the bacterial community composition but the bacterial groups showed no apparent correlation with direct bloom related variables. The less abundant bacterial phyla Actinobacteria, Planctomycetes, and Verrucomicrobia, on the other hand, were strongly associated with phytoplankton biomass, diatom:dinoflagellate ratio, and colored dissolved organic matter (cDOM). Many bacterial operational taxonomic units (OTUs) showed high niche specificities. For example, particular Bacteroidetes OTUs were associated with two distinct genetic clusters of S. marinoi. Our study revealed the complexity of interactions of bacterial taxa with inter- and intraspecific genetic variation in phytoplankton. Overall, our findings imply that biotic and abiotic factors during spring bloom influence bacterial community dynamics in a hierarchical manner.
机译:在温带系统中,浮游植物的春季开花耗尽了无机养分,并且是微生物回路中有机物的主要来源。为了应对浮游植物的渗出物和环境因素,异养微生物群落高度动态,并在时空尺度上改变其丰度和组成。但是,我们对这些过程的大多数理解来自实验室模型生物研究,中观实验或单个颞样。缺乏研究时空研究浮游植物水华与浮游细菌群落组成和功能的相互作用的研究。在这项研究中,在波罗的海波罗的海春季盛开期间(北德至芬兰湾之间的两次航行),监测了中上层微生物群落动态(细菌和浮游植物)和环境变量。为了测试细菌浮游生物群落组成与春季开花的相关程度,我们使用了下一代扩增子对16S rRNA基因的测序,基于显微镜计数的浮游植物多样性分析和主要硅藻骨骼藻的种群基因分型。几个浮游植物绽放相关和环境变量被确定为影响细菌群落组成。拟杆菌属和丙酸杆菌属的成员主导细菌群落组成,但细菌组与直接开花相关变量没有明显的相关性。另一方面,数量较少的细菌放线菌,浮游菌和疣状微生物则与浮游植物生物量,硅藻:鞭毛藻比率和有色溶解有机物(cDOM)密切相关。许多细菌操作分类单位(OTU)显示出很高的生态位特异性。例如,特定的拟杆菌属OTU与马氏链球菌的两个不同的遗传簇相关。我们的研究揭示了浮游植物中细菌类群与种间和种内遗传变异相互作用的复杂性。总体而言,我们的发现暗示春季开花期间的生物和非生物因素以分级方式影响细菌群落动态。

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