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原生动物相互作用与初秋时期的克格伦群岛海域(南大洋)的群落结构。

Protist Interactions and Community Structure During Early Autumn in the Kerguelen Region (Southern Ocean).

机构信息

Laboratoire d'Océanologie et Géosciences, UMR CNRS 8187, Université du Littoral Côte d'Opale, 32 Avenue du Maréchal Foch, 62930 Wimereux, France.

Laboratoire d'Océanologie et Géosciences, UMR CNRS 8187, Université du Littoral Côte d'Opale, 32 Avenue du Maréchal Foch, 62930 Wimereux, France.

出版信息

Protist. 2020 Feb;171(1):125709. doi: 10.1016/j.protis.2019.125709. Epub 2019 Dec 18.

DOI:10.1016/j.protis.2019.125709
PMID:32004979
Abstract

This study investigated protist community composition and biotic interactions focusing on microplankton at four distinct sites around the Kerguelen Islands (Southern Ocean) after the summer phytoplankton bloom. Protist diversity in different size fractions, sampled with Niskin bottles and plankton nets, was assessed by sequencing of the V4 18S rDNA region. Combining different approaches, i.e. sequencing of different plankton size fractions, and isolation and sequencing of single cells, provided new insights into microbial interactions in protist communities. The communities displayed high variability, including short-term fluctuations in relative abundance of large protists (>35μm) highlighted by the plankton net samples. Size fractionation of protist communities showed high concentrations of free Syndiniales spores but relatively few Syndiniales associated with microplankton, suggesting low parasitic infection in early autumn. Co-variance network analyses and sequencing of individually isolated single cells highlighted the important role of Rhizaria as consumers of a wide range of different diatom taxa. The data also raised the hypothesis that different Syndiniales clades might be directly or indirectly associated with some diatom genera, thus suggesting a potentially wider host range of these parasites than has been previously reported. These associations and the potential impact on carbon fluxes are discussed.

摘要

本研究调查了在凯格尔兰群岛(南大洋)四个不同地点夏季浮游植物繁殖后的浮游生物群落组成和生物相互作用,重点是微型浮游生物。使用 Niskin 瓶和浮游网采集的不同大小分数的原生生物多样性通过 V4 18S rDNA 区域的测序进行评估。结合不同的方法,即不同浮游生物大小分数的测序,以及单细胞的分离和测序,为原生生物群落中的微生物相互作用提供了新的见解。这些群落显示出高度的可变性,包括浮游网样本中突出显示的大型原生生物(>35μm)相对丰度的短期波动。原生生物群落的分级分离显示出大量游离 Syndiniales 孢子,但与微浮游生物相关的 Syndiniales 相对较少,表明初秋寄生感染率较低。共变网络分析和单独分离的单细胞测序突出了 Rhizaria 作为广泛不同硅藻类群消费者的重要作用。这些数据还提出了一个假设,即不同的 Syndiniales 进化枝可能直接或间接地与一些硅藻属有关,因此表明这些寄生虫的潜在宿主范围比以前报道的要广泛。讨论了这些关联及其对碳通量的潜在影响。

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