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首页> 外文期刊>Journal of phycology >HIGH-THROUGHPUT SEQUENCING REVEALS NEUSTONIC AND PLANKTONIC MICROBIAL EUKARYOTE DIVERSITY IN COASTAL WATERS
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HIGH-THROUGHPUT SEQUENCING REVEALS NEUSTONIC AND PLANKTONIC MICROBIAL EUKARYOTE DIVERSITY IN COASTAL WATERS

机译:沿海地区高通量序列揭示神经和浮游微生物真核生物的多样性

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摘要

Neustonic organisms inhabit the sea surface microlayer (SML) and have important roles in marine ecosystem functioning. Here, we use high-throughput 18S rRNA gene sequencing to characterize protist and fungal diversity in the SML at a coastal time-series station and compare with underlying plankton assemblages. Protist diversity was higher in February (pre-bloom) compared to April (spring bloom), and was lower in the neuston than in the plankton. Major protist groups, including Stramenopiles and Alveolata, dominated both neuston and plankton assemblages. Chrysophytes and diatoms were enriched in the neuston in April, with diatoms showing distinct changes in community composition between the sampling periods. Pezizomycetes dominated planktonic fungi assemblages, whereas fungal diversity in the neuston was more varied. This is the first study to utilize a molecular-based approach to characterize neustonic protist and fungal assemblages, and provides the most comprehensive diversity assessment to date of this ecosystem. Variability in the SML microeukaryote assemblage structure has potential implications for biogeochemical and food web processes at the air-sea interface.
机译:神经元生物栖息在海面微层(SML)中,并在海洋生态系统功能中发挥重要作用。在这里,我们使用高通量18S rRNA基因测序来表征沿海时间序列站SML中的原生生物和真菌多样性,并与基础浮游生物组合进行比较。与4月(春季开花)相比,2月(开花前)的原生生物多样性较高,并且在神经元中的生物多样性低于浮游生物。主要的生物主义者群体,包括超大型变体和小叶藻类,均主导着神经元和浮游生物。金藻类和硅藻在4月份的神经元中富集,硅藻在采样期之间显示出群落组成的明显变化。破囊菌占主导地位的浮游真菌组合,而神经元中的真菌多样性则更多。这是第一项利用基于分子的方法表征新生物质子和真菌组合的研究,并提供了迄今为止对该生态系统最全面的多样性评估。 SML微型真核生物组装结构的可变性对海-气界面处的生物地球化学和食物网过程具有潜在的影响。

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