Department of Zoology, Michigan State University, East Lansing, MI 48824, USA.
Oecologia. 2012 Jul;169(3):821-32. doi: 10.1007/s00442-011-2233-4. Epub 2011 Dec 27.
The role of algae in the metabolism of northern peatlands is largely unknown, as is how algae will respond to the rapid climate change being experienced in this region. In this study, we examined patterns in algal productivity, nutrients, and dissolved organic carbon (DOC) during an uncharacteristically wet summer in an Alaskan rich fen. Our sampling was conducted in three large-scale experimental plots where water table position had been manipulated (including both drying and wetting plots and a control) for the previous 4 years. This study allowed us to explore how much ecosystem memory of the antecedent water table manipulations governed algal responses to natural flooding. Despite no differences in water table position between the manipulated plots at the time of sampling, algal primary productivity was consistently higher in the lowered water table plot compared to the control or raised water table plots. In all plots, algal productivity peaked immediately following seasonal maxima in nutrient concentrations. We found a positive relationship between algal productivity and water-column DOC concentrations (r (2) = 0.85, P < 0.001). Using these data, we estimate that algae released approximately 19% of fixed carbon into the water column. Algal exudates were extremely labile in biodegradability assays, decreasing by more than 55% within the first 24 h of incubation. We suggest that algae can be an important component of the photosynthetic community in boreal peatlands and may become increasingly important for energy flow in a more variable climate with more intense droughts and flooding.
藻类在北方泥炭地代谢中的作用在很大程度上是未知的,藻类将如何应对该地区正在经历的快速气候变化也是未知的。在这项研究中,我们研究了在阿拉斯加富营养沼泽一个异常潮湿的夏季中藻类生产力、养分和溶解有机碳(DOC)的变化模式。我们的采样是在三个大型实验样地中进行的,这些样地在过去 4 年中已经进行了水位位置的处理(包括干燥和湿润样地以及对照样地)。本研究使我们能够探索生态系统对先前水位处理的记忆在多大程度上控制了藻类对自然洪水的响应。尽管在采样时处理样地之间的水位位置没有差异,但与对照样地或抬高水位样地相比,降低水位样地的藻类初级生产力始终更高。在所有样地中,藻类生产力在养分浓度的季节性最大值之后立即达到峰值。我们发现藻类生产力与水柱 DOC 浓度之间存在正相关关系(r (2) = 0.85,P < 0.001)。利用这些数据,我们估计藻类将大约 19%的固定碳释放到水柱中。在生物降解性测定中,藻类分泌物具有极高的生物可降解性,在孵育的头 24 小时内减少了 55%以上。我们认为,藻类可以成为北方泥炭地光合作用群落的重要组成部分,并且在气候更加多变、干旱和洪水更加频繁的情况下,藻类可能会对能量流动变得越来越重要。