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Community Compositions of Phytoplankton and Eukaryotes during the Mixing Periods of a Drinking Water Reservoir: Dynamics and Interactions

机译:饮用水水库混合期浮游植物和真核生物的群落组成:动力学和相互作用

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摘要

In deep drinking water reservoir ecosystems, the dynamics and interactions of community compositions of phytoplankton and eukaryotes during the mixing periods are still unclear. Here, morphological characteristics combined with high-throughput DNA sequencing (HTS) were used to investigate the variations of phytoplankton and the eukaryotic community in a large canyon-shaped, stratified reservoir located at the Heihe River in Shaanxi Province for three months. The results showed that Bacillariophyta and Chlorophyta were the dominant taxa of the phytoplankton community, accounting for more than 97% of total phytoplankton abundance, which mainly consisted of sp., sp., and sp., respectively. Illumina Miseq sequencing suggested that the biodiversity of eukaryotes increased over time and that species distribution was more even. Arthropoda (6.63% to 79.19%), Ochrophyta (5.60% to 35.16%), Ciliophora (1.81% to 10.93%) and Cryptomonadales (0.25% to 11.48%) were the keystone taxa in common, contributing over 50% of the total eukaryotic community. Cryptomycota as a unique fungus was observed to possess significant synchronization with algal density, reaching a maximum of 10.70% in December (when the algal density distinctly decreased) and suggesting that it might affect the growth of algae through parasitism. Co-occurrence network patterns revealed the complicated and diverse interactions between eukaryotes and phytoplankton, suggesting that eukaryotes respond to variations in dynamic structure of the phytoplankton community, although there might be antagonistic or mutualistic interactions between them. Redundancy analysis (RDA) results showed that environmental variables collectively explained a 96.7% variance of phytoplankton and 96.3% variance of eukaryotic microorganisms, indicating that the temporal variations of phytoplankton and eukaryotic microorganisms were significantly affected by environmental conditions. This study shows that potential interactions exist between phytoplankton and eukaryotic microorganism communities, andcould improve our understanding of the ecological roles of phytoplankton and eukaryotic microorganisms in changing aquatic ecosystems. However, long-term investigations are necessary in order to obtain comprehensive understandings of their complicated associations.
机译:在深层饮用水水库生态系统中,在混合期浮游植物和真核生物的群落组成的动力学和相互作用仍然不清楚。在这里,形态特征与高通量DNA测序(HTS)相结合,用于调查位于陕西黑河的一个大峡谷状分层水库中三个月的浮游植物和真核生物群落的变化。结果表明,杆菌浮游植物和绿藻是浮游植物群落的主要分类单位,占浮游植物总丰度的97%以上,主要由sp。,sp。和sp。组成。 Illumina Miseq测序表明,真核生物的生物多样性随时间增加,并且物种分布更加均匀。节肢动物(6.63%至79.19%),O骨科(5.60%至35.16%),纤毛虫(1.81%至10.93%)和隐猴类(0.25%至11.48%)是共同的重点分类单元,占真核生物总数的50%以上社区。隐藻菌作为一种独特的真菌与藻类密度具有显着的同步性,在12月(藻类密度明显下降时)达到最大值10.70%,这表明它可能通过寄生作用影响藻类的生长。共现网络模式揭​​示了真核生物与浮游植物之间复杂而多样的相互作用,这表明真核生物对浮游植物群落动态结构的变化做出了反应,尽管它们之间可能存在拮抗或互惠的相互作用。冗余分析(RDA)结果显示,环境变量共同解释了浮游植物和真核微生物的96.7%变异和96.3%的变异,表明浮游植物和真核微生物的时间变化受到环境条件的显着影响。这项研究表明,浮游植物与真核微生物群落之间存在潜在的相互作用,可以增进我们对浮游植物和真核微生物在改变水生生态系统中的生态作用的理解。但是,需要进行长期调查才能全面了解其复杂的关联。

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