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Planktonic ecosystems: phytoplank-ton, seston, detritus

机译:浮游生态系统:Phytoplankton,Seaton,Detritus

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Abiotic variables subject to global change are known to affect plankton biomasses, and these effects can be species-specific. Here, we investigate the environmental drivers of annual bio-mass using plankton data from the Gulf of Finland in the northern Baltic Sea, spanning years 1993-2016. We estimated annual biomass time-series of 31 nanoplankton and microplankton species and genera from day-level data, accounting for the average phenology and wind. We found wind effects on day-level biomass in 16 taxa. We subsequently used state-space models to connect the annual biomass changes with potential environmental drivers (temperature, salinity, stratification, ice cover and inorganic nutrients), simultaneously accounting for temporal trends. We found clear environmental effects influencing the annual biomasses of Dinobryon faculiferum, Eutreptiella spp., Protoperidinium bipes, Pseudopedinella spp., Snowella spp. and Thalassiosira baltica and indicative effects in 10 additional taxa. These effects mostly concerned temperature, salinity or stratification. Together, these 16 taxa represent two-thirds of the summer biomass in the sampled community. The inter-annual variability observed in salinity and temperature is relatively low compared to scenarios of predicted change in these variables. Therefore, the potential impacts of the presented effects on plankton biomasses are considerable.
机译:已知受全球变化的非生物变量影响浮游生物生物量,这些效果可以是特异性的。在这里,我们研究了使用来自波罗的海北部芬兰湾的浮游生物数据的年生物群体的环境驱动因素,跨越1993 - 2016年。我们估计每年31个纳米克洛克顿和微生物的物种和白天级别数据,占平均候选和风的植物。我们在16个分类群中发现了对日级生物量的风效应。我们随后使用状态空间模型与潜在的环境司机(温度,盐度,分层,冰盖和无机营养素)连接年度生物量变化,同时占时间趋势。我们发现清楚的环境影响影响Dinobryon Faculiferum,Eutreptiella SPP的年生物量,Protoperidinium Bipes,Pseudopedinella SPP。,雪雪耳SPP。和Thalassiosira Baltica和10个额外的分类群中的指示性效果。这些影响主要是有关温度,盐度或分层。这些16个分类群在一起代表了抽样社区中夏季生物量的三分之二。与这些变量的预测变化的情况相比,在盐度和温度中观察到的年间变异性相对较低。因此,所提出的效果对浮游生体的潜在影响是相当大的。

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    《Oceanographic Literature Review》 |2020年第4期|1021-1025|共5页
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