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Decadal phytoplankton dynamics in response to episodic climatic disturbances in a subtropical deep freshwater ecosystem

机译:亚热带深层淡水生态系统中的十年性浮游植物动力学对突发性气候干扰的响应

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Information of the decadal timescale effects of episodic climatic disturbances (i.e., typhoons) on phytoplankton in freshwater ecosystems have received less attention and fewer seasonal evaluations partly due to the lack of long-term time-series monitoring data in typhoon prevailing areas. Through field observations of a total 36 typhoon cases in a subtropical deep freshwater ecosystem in the period of 2005-2014, we quantified phytoplankton biomass, production and growth rate in response to meteorological and hydrological changes in the weeks before, during and after typhoons between summer and autumn, and also investigated the effects of typhoon characteristics on the aforementioned phytoplankton responses. The results showed that phytoplankton exposed to typhoon disturbances generally exhibited an increasing trend over the weeks before, during and after typhoons in summer but varied in autumn. The correlations and multivariate regressions showed different contributions of meteorological and hydrological variables to individual phytoplankton responses before, during and after typhoons between seasons. The post-typhoon weeks (i.e., within two weeks after a typhoon had passed) were especially important for the timeline of phytoplankton increases and with a detectable seasonal variation that the chlorophyll a concentration significantly increased in autumn whereas both primary production and growth rate were associated with significant changes in summer. Additionally, phytoplankton responses during the post-typhoon weeks were significantly different between discrete or continuous types of typhoon events. Our work illustrated the fact that typhoons did influence phytoplankton responses in the subtropical deep freshwater ecosystem and typhoon passages in summer and autumn affected the phytoplankton dynamics differently. Nevertheless, sustained and systematic monitoring in order to advance our understanding of the role of typhoons between seasons in the modulation of phytoplankton productivity and functioning is required because such episodic climatic disturbances are projected to have intense magnitude and inconsistent frequency under 21st century climate change. (C) 2016 Elsevier Ltd. All rights reserved.
机译:台风气候干扰(即台风)对淡水生态系统中浮游植物的年代际尺度影响的信息受到了较少的关注和较少的季节性评估,部分原因是台风盛行地区缺乏长期的时间序列监测数据。通过对2005-2014年间亚热带深水生态系统中总共36例台风的实地观察,我们量化了夏季至夏季之间台风发生期间,期间和之后的几周中,浮游植物的生物量,产量和增长率对气象和水文变化的响应和秋季,还研究了台风特征对上述浮游植物反应的影响。结果表明,遭受台风干扰的浮游植物通常在夏季台风之前,期间和之后的几周内呈上升趋势,而在秋季则有所变化。相关性和多元回归分析表明,季节之间,台风前后,期间和之后,气象和水文变量对个体浮游植物反应的贡献不同。台风后几周(即台风过后两周内)对于浮游植物增加的时间线尤为重要,并且具有可检测到的季节性变化,秋季的叶绿素a浓度显着增加,而初级生产力和生长速度都相关在夏季发生重大变化。此外,台风后离散或连续类型的台风后数周期间浮游植物的反应显着不同。我们的工作表明,台风确实影响了亚热带深层淡水生态系统中的浮游植物反应,而夏季和秋季的台风通道对浮游植物动力学的影响不同。尽管如此,仍需要进行持续而系统的监测,以增进我们对季节之间台风在浮游植物生产力和功能调节中的作用的了解,因为在21世纪的气候变化下,这种偶发性气候扰动预计将具有强烈的强度和频率的不一致。 (C)2016 Elsevier Ltd.保留所有权利。

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