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Hundred Years of Environmental Change and Phytoplankton Ecophysiological Variability Archived in Coastal Sediments

机译:沿海沉积物中记录的一百年环境变化和浮游植物生态生理变异性

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摘要

Marine protist species have been used for several decades as environmental indicators under the assumption that their ecological requirements have remained more or less stable through time. However, a growing body of evidence suggests that marine protists, including several phytoplankton species, are in fact highly diverse and may quickly respond to changes in the environment. Predicting how future climate will impact phytoplankton populations is important, but this task has been challenged by a lack of time-series of ecophysiological parameters at time-scales relevant for climate studies (i.e. at least decadal). Here, we report on ecophysiological variability in a marine dinoflagellate over a 100-year period of well-documented environmental change, by using the sedimentary archive of living cysts from a Scandinavian fjord (Koljö Fjord, Sweden). During the past century, Koljö Fjord has experienced important changes in salinity linked to the North Atlantic Oscillation (NAO). We revived resting cysts of Pentapharsodinium dalei preserved in the fjord sediments and determined growth rates for 18 strains obtained from 3 sediment core layers at salinity 15 and 30, which represent extreme sea-surface conditions during periods of predominantly negative and positive NAO phases, respectively. Upper pH tolerance limits for growth were also tested. In general, P. dalei grew at a higher rate in salinity 30 than 15 for all layers, but there were significant differences among strains. When accounting for inter-strain variability, cyst age had no effect on growth performance or upper pH tolerance limits for this species, indicating a stable growth response over the 100-year period in spite of environmental fluctuations. Our findings give some support for the use of morphospecies in environmental studies, particularly at decadal to century scales. Furthermore, the high intra-specific variability found down to sediment layers dated as ca. 50 years-old indicates that cyst-beds of P. dalei are repositories of ecophysiological diversity.
机译:假设海洋生态物种的生态需求随着时间的推移一直保持稳定,几十年来,海洋原生生物物种已被用作环境指标。然而,越来越多的证据表明,海洋生物(包括几种浮游植物)实际上高度多样化,并可能对环境变化做出快速反应。预测未来的气候将如何影响浮游植物种群很重要,但是由于缺乏与气候研究相关的时间尺度(即至少十年)的生态生理参数的时间序列,这一任务受到了挑战。在这里,我们通过使用来自斯堪的纳维亚峡湾(瑞典科尔霍峡湾)的活囊肿的沉积档案,报告了海洋鞭毛藻在100年有据可查的环境变化期间的生态生理变异性。在过去的一个世纪中,科尔约峡湾经历了与北大西洋涛动(NAO)有关的盐度变化。我们恢复了保存在峡湾沉积物中的五角鲨的静息囊肿,并确定了盐度分别为15和30时从3个沉积物核心层获得的18个菌株的生长速率,这分别代表了NAO主要为负和正相期间的极端海面条件。还测试了生长的pH耐受上限。一般而言,P。dalei在所有层中的盐度30均高于15,但菌株之间存在显着差异。考虑到菌株间的变异性,囊肿的年龄对该物种的生长性能或pH耐受上限没有影响,尽管环境波动,但表明在100年内稳定的生长响应。我们的发现为在环境研究中使用形态学提供了一定的支持,特别是在十年到世纪的尺度上。此外,直到沉积物层发现的高种内变异性都可以追溯到ca。 50岁表明P. dalei的囊床是生态生理多样性的仓库。

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