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Distinct patterns and processes of abundant and rare eukaryotic plankton communities following a reservoir cyanobacterial bloom

机译:水库蓝藻水华后丰富和稀有真核生物浮游生物群落的不同模式和过程。

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摘要

Plankton communities normally consist of few abundant and many rare species, yet little is known about the ecological role of rare planktonic eukaryotes. Here we used a 18S ribosomal DNA sequencing approach to investigate the dynamics of rare planktonic eukaryotes, and to explore the co-occurrence patterns of abundant and rare eukaryotic plankton in a subtropical reservoir following a cyanobacterial bloom event. Our results showed that the bloom event significantly altered the eukaryotic plankton community composition and rare plankton diversity without affecting the diversity of abundant plankton. The similarities of both abundant and rare eukaryotic plankton subcommunities significantly declined with the increase in time-lag, but stronger temporal turnover was observed in rare taxa. Further, species turnover of both subcommunities explained a higher percentage of the community variation than species richness. Both deterministic and stochastic processes significantly influenced eukaryotic plankton community assembly, and the stochastic pattern (e.g., ecological drift) was particularly pronounced for rare taxa. Co-occurrence network analysis revealed that keystone taxa mainly belonged to rare species, which may play fundamental roles in network persistence. Importantly, covariations between rare and non-rare taxa were predominantly positive, implying multispecies cooperation might contribute to the stability and resilience of the microbial community. Overall, these findings expand current understanding of the ecological mechanisms and microbial interactions underlying plankton dynamics in changing aquatic ecosystems.
机译:浮游生物群落通常由很少的丰富物种和许多稀有物种组成,但对稀有浮游性真核生物的生态作用知之甚少。在这里,我们使用了18S核糖体DNA测序方法来研究稀有浮游性真核生物的动力学,并探讨了在蓝藻水华事件发生后亚热带水库中丰富和稀有真核生物浮游生物的共现模式。我们的结果表明,开花事件显着改变了真核浮游生物的群落组成和稀有的浮游生物多样性,而没有影响丰富的浮游生物的多样性。丰富和稀有的真核生物浮游生物亚群的相似性随时间的增加而显着下降,但是在稀有的类群中观察到更强的时间转换。此外,两个亚社区的物种周转率比物种丰富度解释了更高的社区变异百分比。确定性过程和随机过程都对真核浮游生物群落的组装产生重大影响,而随机模式(例如生态漂移)对于稀有生物群尤为明显。共现网络分析表明,梯形分类群主要属于稀有物种,这可能在网络持久性中起基本作用。重要的是,稀有和非稀有类群之间的协变主要是正的,这意味着多物种合作可能有助于微生物群落的稳定性和复原力。总体而言,这些发现扩大了当前对变化的水生生态系统中浮游生物动力学基础的生态机制和微生物相互作用的理解。

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