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Novel Widespread Marine Oomycetes Parasitising Diatoms Including the Toxic Genus Pseudo-nitzschia: Genetic Morphological and Ecological Characterisation

机译:新型广泛寄生于硅藻的海洋卵菌纲寄生物包括有毒属假性尼兹菌:遗传形态和生态特征

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摘要

Parasites are key drivers of phytoplankton bloom dynamics and related aquatic ecosystem processes. Yet, the dearth of morphological and molecular information hinders the assessment of their diversity and ecological role. Using single-cell techniques, we characterise morphologically and molecularly, intracellular parasitoids infecting four potentially toxin-producing Pseudo-nitzschia and one Melosira species on the North Atlantic coast. These sequences define two, morphologically indistinguishable clades within the phylum Oomycota, related to the genera of algal parasites Anisolpidium and Olpidiopsis and the diatom parasitoid species Miracula helgolandica. Our morphological data are insufficient to attribute either clade to the still unsequenced genus Ectrogella; hence it is proposed to name the clades OOM_1 and OOM_2. A screening of global databases of the barcode regions V4 and V9 of the 18S rDNA demonstrate the presence of these parasitoids beyond the North Atlantic coastal region. During a biweekly metabarcoding survey (Concarneau Bay, France), reads associated with one sequenced parasitoid coincided with the decline of Cerataulina pelagica bloom, whilst the other parasitoids co-occurred at low abundance with Pseudo-nitzschia. Our data highlight a complex and unexplored diversity of the oomycete parasitoids of diatoms and calls for the investigation of their phenology, evolution, and potential contribution in controlling their host spatial-temporal dynamics.
机译:寄生虫是浮游植物开花动态和相关水生生态系统过程的主要驱动力。然而,缺乏形态和分子信息阻碍了对其多样性和生态作用的评估。使用单细胞技术,我们在形态和分子上表征了细胞内的类寄生虫,它们感染了北大西洋沿岸的四种可能产生毒素的拟南芥和一种Melosira菌种。这些序列在卵菌门内定义了两个形态学上无法区分的进化枝,它们与藻类寄生虫Anisolpidium和Olpidiopsis的属以及硅藻类拟寄生虫Miracula helgolandica的属有关。我们的形态学数据不足以将进化枝归因于仍未排序的小球藻属。因此建议将进化枝命名为OOM_1和OOM_2。对18S rDNA条形码区域V4和V9的全局数据库进行的筛选证明,这些寄生虫的存在超出了北大西洋沿岸地区。在每两周一次的元条形码调查中(法国孔卡尔诺湾),与一种测序的拟寄生虫相关的读数与小孢子藻繁殖能力的下降同时发生,而其他拟寄生虫与伪质感同时出现。我们的数据突显了硅藻的卵菌类寄生虫的复杂且尚未探索的多样性,并呼吁研究它们的物候,演变以及在控制其宿主时空动态方面的潜在作用。

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