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采伐木材会改变溪流中汞的生物积累和食物网结构。

Timber harvest alters mercury bioaccumulation and food web structure in headwater streams.

机构信息

U.S. Geological Survey, Forest and Rangeland Ecosystem Science Center, 3200 SW Jefferson Way, Corvallis, OR, 97331, USA.

U.S. Geological Survey, Forest and Rangeland Ecosystem Science Center, 3200 SW Jefferson Way, Corvallis, OR, 97331, USA.

出版信息

Environ Pollut. 2019 Oct;253:636-645. doi: 10.1016/j.envpol.2019.07.025. Epub 2019 Jul 6.

Abstract

Timber harvest has many effects on aquatic ecosystems, including changes in hydrological, biogeochemical, and ecological processes that can influence mercury (Hg) cycling. Although timber harvest's influence on aqueous Hg transformation and transport are well studied, the effects on Hg bioaccumulation are not. We evaluated Hg bioaccumulation, biomagnification, and food web structure in 10 paired catchments that were either clear-cut in their entirety, clear-cut except for an 8-m wide riparian buffer, or left unharvested. Average mercury concentrations in aquatic biota from clear-cut catchments were 50% higher than in reference catchments and 165% higher than in catchments with a riparian buffer. Mercury concentrations in aquatic invertebrates and salamanders were not correlated with aqueous THg or MeHg concentrations, but rather treatment effects appeared to correspond with differences in the utilization of terrestrial and aquatic basal resources in the stream food webs. Carbon and nitrogen isotope data suggest that a diminished shredder niche in the clear-cut catchments contributed to lower basal resource diversity compared with the reference of buffered treatments, and that elevated Hg concentrations in the clear-cut catchments reflect an increased reliance on aquatic resources in clear-cut catchments. In contrast, catchments with riparian buffers had higher basal resource diversity than the reference catchments, indicative of more balanced utilization of terrestrial and aquatic resources. Further, following timber harvest THg concentrations in riparian songbirds were elevated, suggesting an influence of timber harvest on Hg export to riparian food webs. These data, coupled with comparisons of individual feeding guilds, indicate that changes in organic matter sources and associated effects on stream food web structure are important mechanisms by which timber harvest modifies Hg bioaccumulation in headwater streams and riparian consumers.

摘要

采伐对水生生态系统有许多影响,包括水文、生物地球化学和生态过程的变化,这些变化会影响汞(Hg)的循环。虽然木材采伐对水相 Hg 转化和传输的影响已经得到了很好的研究,但对 Hg 生物积累的影响却没有。我们评估了 10 对集水区的 Hg 生物积累、生物放大和食物网结构,这些集水区要么全部进行了采伐,要么除了 8 米宽的河岸缓冲区外全部进行了采伐,要么没有进行采伐。来自采伐集水区的水生生物的平均汞浓度比对照集水区高 50%,比有河岸缓冲区的集水区高 165%。水生无脊椎动物和蝾螈的汞浓度与水相中总汞(THg)或甲基汞(MeHg)浓度没有相关性,而是与溪流食物网中对陆地和水生基础资源的利用差异有关。碳和氮同位素数据表明,在采伐集水区中,减少的碎屑分解者生态位导致基础资源多样性低于缓冲处理的对照,而在采伐集水区中较高的 Hg 浓度反映了对采伐集水区中水生资源的依赖增加。相比之下,河岸缓冲区集水区的基础资源多样性高于对照集水区,表明对陆地和水生资源的利用更加平衡。此外,在进行木材采伐后,河岸鸟类的 THg 浓度升高,这表明木材采伐会影响 Hg 向河岸食物网的输出。这些数据,加上对个别摄食群的比较,表明有机物质来源的变化以及对溪流食物网结构的相关影响是木材采伐改变上游溪流和河岸消费者 Hg 生物积累的重要机制。

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