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Stormwater influences phytoplankton assemblages within the diverse, but impacted Sydney Harbour estuary

机译:雨水会影响多样化的浮游植物组合,但受影响的悉尼港口河口

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摘要

Sydney Harbour is subjected to persistent stress associated with anthropogenic activity and global climate change, but is particularly subjected to pulse stress events associated with stormwater input during episodic periods of high rainfall. Photosynthetic microbes underpin metazoan diversity within estuarine systems and are therefore important bioindicators of ecosystem health; yet how stormwater input affects their occurrence and distribution in Sydney Harbour remains poorly understood. We utilised molecular tools (16S/18S rRNA and petB genes) to examine how the phytoplankton community structure (both prokaryotes and eukaryotes) within Sydney Harbour varies between high and low rainfall periods. The relative proportion of phytoplankton sequences was more abundant during the high rainfall period, comprising mainly of diatoms, an important functional group supporting increased productivity within estuarine systems, together with cyanobacteria. Increased spatial variability in the phytoplankton community composition was observed, potentially driven by the steepened physico-chemical gradients associated with stormwater inflow. Conversely, during a low rainfall period, the proportion of planktonic photosynthetic microbes was significantly lower and the persistent phytoplankton were predominantly represented by chlorophyte and dinoflagellate sequences, with lower overall diversity. Differences in phytoplankton composition between the high and low rainfall periods were correlated with temperature, salinity, total nitrogen and silicate. These results suggest that increased frequency of high-rainfall events may change the composition, productivity and health of the estuary. Our study begins to populate the knowledge gap in the phytoplankton community structure and substantial changes associated with transient environmental perturbations, an essential step towards unravelling the dynamics of primary production in a highly urbanised estuarine ecosystem in response to climate change and other anthropogenic stressors.
机译:悉尼港与与人为活性和全球气候变化相关的持续压力,但特别是在高降雨量的情节期间与雨水投入相关的脉冲应力事件。光合微生物在河口系统中支撑美化的多样性,因此是生态系统健康的重要生物indicer;然而,雨水的投入如何影响他们在悉尼港的出现和分销仍然很清楚。我们利用分子工具(16s / 18s rRNA和petb基因)来检查悉尼港内的浮游植物群落结构(原核生物和真核生物)如何在高低降雨期之间变化。在高降雨期间,浮游植物序列的相对比例越大,主要是硅藻,这是一种重要的官能团,其支持河口系统内的生产力增加,以及蓝菌。观察到浮游植物群落组合物中的空间变异性增加,可能由与雨水流入相关的陡峭的物理化学梯度驱动。相反,在降雨期的低降雨期间,浮游光合微生物的比例显着降低,持续的浮游植物主要由叶绿素和丁蛋白序列表示,整体多样性较低。高降水期与低降雨周期之间的植物植物组成的差异与温度,盐度,总氮和硅酸盐相关。这些结果表明,高降雨事件的频率增加可能会改变河口的构成,生产力和健康。我们的研究开始填充浮游植物群落结构中的知识差距和与瞬态环境扰动相关的大量变化,旨在朝着气候变化和其他人为压力源的高度城市化的河口生态系统中初步生产动态的重要一步。

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