Department of Biology, Terrestrial Ecology Section, University of Copenhagen, Universitetsparken 15, DK-2100, Copenhagen, Denmark.
Center for Permafrost (CENPERM), University of Copenhagen, Øster Voldgade 10, DK-1350, Copenhagen, Denmark.
Ecotoxicology. 2019 Dec;28(10):1169-1176. doi: 10.1007/s10646-019-02127-w. Epub 2019 Nov 6.
Nitrogen (N) fixation by moss-associated cyanobacteria is one of the main sources of new N input in pristine ecosystems such as boreal forests and arctic tundra. Given the non-vascular physiology of mosses, they are especially sensitive to e.g. increased N input and heavy metal deposition. While the effects of increased N input on moss-associated N fixation has been comprehensively assessed, hardly any reports exist on the effects of increased heavy metal load on this key ecosystem function. To address this knowledge gap, we made use of an extreme metal pollution gradient in boreal forests of Northern Sweden originating from a metal mine and its associated smelters. We collected the common moss Pleurozium schreberi, known to host cyanobacteria, along a distance gradient away from the metal source of pollution and measured moss-metal content (Fe, Cu, Zn, Pb) as well as N fixation. We found a strong distance gradient in moss-metal content for all investigated metals: a sharp decline in metal content with distance away from the metal pollution source. However, we found a similarly steep gradient in moss-associated N fixation, with highest activity closest to the metal source of pollution. Hence, while mosses may be sensitive to increased heavy metal inputs, the activity of colonising cyanobacteria seem to be unaffected by heavy metals, and consequently, ecosystem function may not be compromised by elevated metal input.
苔藓相关蓝藻的固氮作用是北方森林和北极冻原等原始生态系统中氮素输入的主要来源之一。由于苔藓是非维管束植物,它们对例如增加的氮素输入和重金属沉积等特别敏感。虽然已经全面评估了增加氮素输入对苔藓相关固氮作用的影响,但几乎没有任何关于增加重金属负荷对这一关键生态系统功能影响的报告。为了弥补这一知识空白,我们利用了瑞典北部北方森林中源自金属矿及其相关冶炼厂的极端金属污染梯度。我们沿着远离污染金属源的距离梯度收集了常见的苔藓 Pleurozium schreberi,已知这种苔藓中存在蓝藻,并测量了苔藓中的金属含量(铁、铜、锌、铅)和固氮作用。我们发现所有研究金属的苔藓金属含量都呈现出很强的距离梯度:随着与金属污染源距离的增加,金属含量急剧下降。然而,我们发现苔藓相关固氮作用也呈现出类似陡峭的梯度,在离污染金属源最近的地方,固氮作用活性最高。因此,尽管苔藓可能对增加的重金属输入敏感,但定殖蓝藻的活性似乎不受重金属影响,因此,生态系统功能可能不会因金属输入增加而受到损害。