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首页> 外文期刊>Ecological indicators >Defining past ecological status and in situ reference conditions using benthic foraminifera: A case study from the Oslofjord, Norway
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Defining past ecological status and in situ reference conditions using benthic foraminifera: A case study from the Oslofjord, Norway

机译:使用底栖有孔虫来定义过去的生态状况和原位参考条件:以挪威奥斯陆峡湾为例

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摘要

Characterizing marine water bodies and defining ecological status, both present and past (pre-impacted), has become an important task for EU's Member States and their associates during the last decade due to the implementation of the Water Framework Directive (WFD). However, none of the methods used to define Ecological Quality Status (EcoQS) are able to accurately define the status for both the present-day and reference conditions at a given site (i.e., in situ). Recent studies have revealed a significant correlation between the diversity of living (stained) fossilizable benthic foraminifera (protists) and associated environmental parameters (e.g., dissolved oxygen concentration). The present study takes this relationship a step further by applying methods used to define present-day EcoQS on fossil benthic foraminiferal assemblages and, thereby, defining past EcoQS (PaleoEcoQS). This is particularly useful for defining reference condition in areas where biological- and instrumental time-series are limited or lacking. Our case study from the Oslofjord, Norway, shows that (1) the "Foraminiferal method" can define temporal developments in in situ EcoQS from reference to present-day conditions, (2) results of the "Foraminiferal method" reflect available historical biological records and hydrographic time series, (3) data (1993 and 2009) on macrofauna (traditional bio-monitoring tool) and benthic foraminifera from the same sites define the same EcoQS, and (4) the changes in foraminiferal diversity through time are due to human activity (pollution), rather than climate change. Using in situ data to define ecological reference conditions is preferable compared to modeling or comparisons with present-day supposedly similar reference conditions.
机译:由于实施了《水框架指令》(WFD),在过去十年中,表征海洋水体并定义当前和过去(预先影响)的生态状况已成为欧盟成员国及其同事的一项重要任务。但是,用于定义生态质量状态(EcoQS)的方法均无法准确定义给定地点(即原地)的当前状态和参考状态的状态。最近的研究表明,活的(染色的)可化石底栖有孔虫(原生生物)的多样性与相关的环境参数(例如溶解氧浓度)之间存在显着相关性。本研究通过应用用于在化石底栖有孔虫组合上定义当今的EcoQS,从而定义过去的EcoQS(PaleoEcoQS),使这种关系更进一步。这对于在生物学和仪器时间序列有限或缺乏的区域定义参考条件特别有用。我们从挪威奥斯陆峡湾(Oslofjord)进行的案例研究表明,(1)“有孔虫方法”可以根据当前条件定义原位EcoQS的时间变化;(2)“有孔虫方法”的结果反映了可用的历史生物学记录和水文时间序列,(3)来自同一地点的大型动物(传统生物监测工具)和底栖有孔虫的数据(1993年和2009年)定义了相同的EcoQS,并且(4)随时间的有孔虫多样性变化是由于人类造成的活动(污染),而不是气候变化。与建模或与目前假定的相似参考条件进行比较相比,使用原位数据定义生态参考条件更为可取。

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