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地中海西南部突尼斯北部沿海不同环境下微微型浮游植物的季节性变化。

Seasonal variability of picophytoplankton under contrasting environments in northern Tunisian coasts, southwestern Mediterranean Sea.

机构信息

Institut National Agronomique de Tunisie, IRESA - Université de Carthage, 43 avenue Charles Nicolle, 1082 Tunis, Tunisia; Laboratoire de Biodiversité et Fonctionnement des Systèmes Aquatiques, Faculté des Sciences de Bizerte, Université de Carthage, 7021 Zarzouna, Tunisia; Laboratory of Water, Membrane and Biotechnologies of Environnement, Centre of Research and Water Technologies (CERTE), Technopark of Borj-Cedria, Tunisia.

Institut National Agronomique de Tunisie, IRESA - Université de Carthage, 43 avenue Charles Nicolle, 1082 Tunis, Tunisia.

出版信息

Mar Pollut Bull. 2018 Apr;129(2):866-874. doi: 10.1016/j.marpolbul.2017.10.029. Epub 2017 Oct 15.

Abstract

We investigated at the single cell level during 16months (June 2012 to September 2013) the temporal distribution of picophytoplankton (picoeukaryotes, Synechococcus and Prochlorococcus) communities in two contrasted ecosystems: the Bay of Bizerte characterised by an oligotrophic regime typical of the Mediterranean Sea and the Bizerte Lagoon that exhibits a mesotrophic/eutrophic state. We aimed at depicting seasonal variations and quantifying the relationships between the environmental factors and the structure and abundance of picophytoplankton communities. Results showed that picophytoplankton groups were able to grow under a wide range of environmental conditions varying seasonally, although their abundances and contributions to the total chlorophyll biomass significantly varied and showed importance in the Bay of Bizerte. Synechococcus was the most abundant group reaching 225∗10cells·cm in the Bay and 278∗10cells·cm in the lagoon. This group was present all over the year in both ecosystems. Structural equation model results pointed out a different configuration regarding the picophytoplankton environmental drivers. The complexity of the configuration, i.e. number of significant links within the system, decreased under enhanced eutrophication conditions. The less exposure to anthropogenic stress, i.e. in the Bay of Bizerte, highlight a larger role of nutrient and hydrological conditions on the seasonal variations of picophytoplankton, whereas a negative effect of eutrophication on picophytoplankton communities was unveiled in the Bizerte Lagoon. We stress that such influence may be exacerbated under expected scenarios of Mediterranean warming conditions and nutrient release in coastal ecosystems.

摘要

我们在 16 个月(2012 年 6 月至 2013 年 9 月)内,对两个具有代表性的生态系统中单细胞水平的微微型浮游植物(微微型真核生物、聚球藻和聚磷菌)群落的时间分布进行了研究:一个是具有地中海典型贫营养化特征的比塞大港,另一个是处于中营养/富营养化状态的比塞大泻湖。我们旨在描绘季节性变化,并量化环境因素与微微型浮游植物群落结构和丰度之间的关系。结果表明,微微型浮游植物群落在季节性变化的广泛环境条件下能够生长,尽管它们的丰度和对总叶绿素生物量的贡献显著变化,并在比塞大港中具有重要意义。聚球藻是最丰富的群体,在比塞大港中达到 225∗10cells·cm,在泻湖中达到 278∗10cells·cm。该群体在两个生态系统中全年都存在。结构方程模型的结果指出了微微型浮游植物环境驱动因素的不同配置。在富营养化条件增强的情况下,配置的复杂性(系统内显著联系的数量)降低。在比塞大港中,人类压力的暴露程度较低,即营养和水文学条件对微微型浮游植物季节性变化的作用更大,而在比塞大泻湖中,富营养化对微微型浮游植物群落的负面影响则凸显出来。我们强调,在预期的地中海变暖条件和沿海生态系统中营养物质释放的情景下,这种影响可能会加剧。

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