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Dynamics and interactions of highly resolved marine plankton via automated high-frequency sampling

机译:通过自动高频采样高度解析的海洋浮游生物的动力学和相互作用

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摘要

Short timescale observations are valuable for understanding microbial ecological processes. We assessed dynamics in relative abundance and potential activities by sequencing the small sub-unit ribosomal RNA gene (rRNA gene) and rRNA molecules (rRNA) of Bacteria, Archaea, and Eukaryota once to twice daily between March 2014 and May 2014 from the surface ocean off Catalina Island, California. Typically Ostreococcus, Braarudosphaera, Teleaulax, and Synechococcus dominated phytoplankton sequences (including chloroplasts) while SAR11, Sulfitobacter, and Fluviicola dominated non-phytoplankton Bacteria and Archaea. We observed short-lived increases of diatoms, mostly Pseudo-nitzschia and Chaetoceros, with quickly responding Bacteria and Archaea including Flavobacteriaceae (Polaribacter & Formosa), Roseovarius, and Euryarchaeota (MGII), notably the exact amplicon sequence variants we observed responding similarly to another diatom bloom nearby, 3 years prior. We observed correlations representing known interactions among abundant phytoplankton rRNA sequences, demonstrating the biogeochemical and ecological relevance of such interactions: (1) The kleptochloroplastidic ciliate Mesodinium 18S rRNA gene sequences and a single Teleaulax taxon (via 16S rRNA gene sequences) were correlated (Spearman r = 0.83) yet uncorrelated to a Teleaulax 18S rRNA gene OTU, or any other taxon (consistent with a kleptochloroplastidic or karyokleptic relationship) and (2) the photosynthetic prymnesiophyte Braarudosphaera bigelowii and two strains of diazotrophic cyanobacterium UCYN-A were correlated and each taxon was also correlated to other taxa, including B. bigelowii to a verrucomicrobium and a dictyochophyte phytoplankter (all r > 0.8). We also report strong correlations (r > 0.7) between various ciliates, bacteria, and phytoplankton, suggesting interactions via currently unknown mechanisms. These data reiterate the utility of high-frequency time series to show rapid microbial reactions to stimuli, and provide new information about in situ dynamics of previously recognized and hypothesized interactions.
机译:较短的时间尺度观测值对于了解微生物的生态过程非常有价值。我们通过对细菌,古细菌和真核生物的小亚基核糖体RNA基因(rRNA基因)和rRNA分子(rRNA)进行测序来评估相对丰度和潜在活动的动态,时间为2014年3月至2014年5月,每天两次加利福尼亚卡塔利娜岛(Catarina Island)附近。通常,以浮球菌,腕球菌,Teleaulax和Synechococcus为主的浮游植物序列(包括叶绿体),而SAR11,磺基细菌和Fluviicola则以非浮游细菌和古细菌为主。我们观察到硅藻的短暂增长,主要是假性尼兹菌和Chaetoceros,细菌和古细菌的反应迅速,包括黄杆菌科( Polaribacter Formosa ), Roseovarius Euryarchaeota (MGII),尤其是3年前,我们观察到的精确扩增子序列变异体对附近的另一个硅藻绽放有相似的反应。我们观察到了代表丰富浮游植物rRNA序列之间已知相互作用的相关性,从而证明了这种相互作用的生物地球化学和生态相关性:(1)鳞状叶绿体纤毛纤毛 Mesodinium 18S rRNA基因序列和单个 Teleaulax 分类单元(通过16S rRNA基因序列)相关(Spearman r = 0.83),但与 Teleaulax 18S rRNA基因OTU或任何其他分类单元(与kleptochloroplastidic一致)无关(2)将光合作用的植物性细菌 Braarudosphaera bigelowii 与两株重氮营养性蓝细菌UCYN-A相关联,并且每个生物分类群也与其他生物分类群相关,包括 B bigelowii 变成疣状软腐细菌和双歧植物浮游植物(所有 r r

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