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Whole-stream metabolism in nutrient-poor calcareous streams on OEland, Sweden

机译:瑞典OEland贫钙钙质流中的全流代谢

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We studied whole-stream metabolism in three headwater non-forested stream reaches on the island of Oland, Sweden in order to characterize the metabolism of this unusual ecosystem and to compare it with other stream ecosystems in NW Europe. Gross primary production (GPP) was generally low (<4 g O_2 m~(-2) d~(-1)) with the lowest GPP recorded in the most upstream, shallow reach draining the thin soils of the limestone Alvar plains. Here, completely flooded terrestrial plants could account for the whole primary production at baseflow. Ecosystem respiration (ER) increased several fold with agricultural impact, resulting in heterotrophic stream conditions downstream and higher light requirements for photosynthesis to outweigh respiration. A strong relationship between daily GPP and ER was found at the two most nutrient-poor sites. Temperature corrected instantaneous ER rate was highest in the beginning of the night, but decreased at the end of the night at the same reaches, indicating that dark respiration depleted photosynthetic products and became limited by organic substrates. The broad-scale comparison of open NW European streams showed a 1:1 relationship, indicating a tight link between daily GPP and ER during summer (April-August) but not during winter. This study has extended the range of GPP and ER measurements to include nutrient-poor NW European streams, thereby increasing the knowledge on stream metabolism in this, otherwise, highly agricultural impacted region. It also documented a strong relationship between GPP and ER in streams, ranging from extremely nutrient poor to moderately nutrient rich conditions during spring and summer.
机译:我们研究了瑞典Oland岛上三个非森林上游流域的全流代谢,以表征这个不寻常的生态系统的代谢,并将其与欧洲西北部的其他流生态系统进行比较。初级生产总值(GPP)通常较低(<4 g O_2 m〜(-2)d〜(-1),而GPP最低的是上游最上游的浅水区,排水的是石灰岩阿尔瓦平原的薄土壤。在这里,完全淹没的陆地植物可能占基流的全部主要生产。由于农业的影响,生态系统呼吸(ER)增长了几倍,导致下游的异养流条件和光合作用所需的更高光需求超过了呼吸作用。在两个营养最贫乏的地区发现了每日GPP和ER之间的密切关系。经温度校正的瞬时ER率在夜晚开始时最高,但在同一时间的夜晚结束时下降,这表明暗呼吸耗尽了光合产物,并受到有机底物的限制。西北欧洲水流的大规模比较显示为1:1的关系,表明夏季(4月至8月)的每日GPP与ER之间存在紧密联系,而冬季则没有。这项研究扩大了GPP和ER的测量范围,将营养不良的西北西欧河流纳入其中,从而增加了该受农业严重影响地区的河流新陈代谢知识。它还记录了在春季和夏季,从极度营养不足到中等营养状况,河流中的GPP和ER之间存在很强的关系。

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