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Spatiotemporal Distribution and Assemblages of Planktonic Fungi in the Coastal Waters of the Bohai Sea

机译:渤海沿海地区浮游真菌的时空分布和组成

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摘要

Fungi play a critical role in the nutrient cycling and ecological function in terrestrial and freshwater ecosystems. Yet, many ecological aspects of their counterparts in coastal ecosystems remain largely elusive. Using high-throughput sequencing, quantitative PCR, and environmental data analyses, we studied the spatiotemporal changes in the abundance and diversity of planktonic fungi and their abiotic and biotic interactions in the coastal waters of three transects along the Bohai Sea. A total of 4362 ITS OTUs were identified and more than 60% of which were unclassified Fungi. Of the classified OTUs three major fungal phyla, Ascomycota, Basidiomycota, and Chytridiomycota were predominant with episodic low dominance phyla Cryptomycota and Mucoromycota (Mortierellales). The estimated average Fungi-specific 18S rRNA gene qPCR abundances varied within 4.28 × 106 and 1.13 × 107copies/L with significantly (P < 0.05) different abundances among the transects suggesting potential influence of the different riverine inputs. The spatiotemporal changes in the OTU abundance of Ascomycota and Basidiomycota phyla coincided significantly (P < 0.05) with nutrients traced to riverine inputs and phytoplankton detritus. Among the eight major fungal orders, the abundance of Hypocreales varied significantly (P < 0.01) across months while Capnodiales, Pleosporales, Eurotiales, and Sporidiobolales varied significantly (P < 0.05) across transects. In addition, our results likely suggest a tripartite interaction model for the association within members of Cryptomycota (hyperparasites), Chytridiomycota (both parasites and saprotrophs), and phytoplankton in the coastal waters. The fungal network featured several hubs and keystone OTUs besides the display of cooperative and competitive relationship within OTUs. These results support the notion that planktonic fungi, hitherto mostly undescribed, play diverse ecological roles in marine habitats and further outline niche processes, tripartite and co-occurrence interaction as the major drivers of their community structure and spatiotemporal distribution in the coastal water column.
机译:真菌在陆地和淡水生态系统中的养分循环和生态功能中起着关键作用。然而,沿海生态系统的许多生态方面仍然难以捉摸。使用高通量测序,定量PCR和环境数据分析,我们研究了渤海沿岸三个样带沿海水域中浮游真菌的丰度和多样性及其非生物和生物相互作用的时空变化。总共鉴定到4362 ITS ITS OTU,其中60%以上是未分类的真菌。在已分类的OTU中,三个主要的真菌门,子囊菌,担子菌和梭菌是主要的偶发性低优势种,隐孢子虫和毛霉菌(Mortierellales)。估计的平均真菌特异性18S rRNA基因qPCR丰度在4.28×10 6 和1.13×10 7 份/ L之间变化,其中显着(P <0.05)横断面表明不同河流输入的潜在影响。子囊菌和门生担子菌的OTU丰度的时空变化与溯源到河流和浮游植物碎屑的养分显着吻合(P <0.05)。在八种主要的真菌纲中,各横断面的菌丝丰度变化显着(P <0.01),而跨线虫的钩藤纲,胸膜纲,钩耳纲和孢子线虫的差异显着(P <0.05)。此外,我们的研究结果可能暗示了在沿海水域隐藻(超寄生虫),斜纹菌(寄生虫和腐生菌)和浮游植物的成员之间建立三方相互作用模型。真菌网络除了显示OTU内部的合作和竞争关系外,还具有几个枢纽和主要的OTU。这些结果支持了迄今为止尚未被描述的浮游真菌在海洋栖息地中发挥多种生态作用的观点,并进一步概述了生态位过程,三方和共生相互作用,这是其在沿海水域中群落结构和时空分布的主要驱动力。

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