Salminen Janne, Korkama Tiina, Strömmer Rauni
Environ Toxicol Chem. 2002 Nov;21(11):2301-9.
Environmental pollution by toxicants is generally believed to lead both to direct toxic effects and indirect effects via altered species interactions in a stressed community. We examined how contamination of a coniferous forest soil floor by lead (from an abandoned shooting range area) may alter trophic interactions and decomposition processes. We constructed laboratory microcosms containing microbial-based food webs with various trophic structures: microbes alone; microbes with microbivorous-detritivorous enchytraeid worms (Cognettia sphagnetorum, a potential keystone species of boreal forest soil); and microbes, worms, and predatory mites (Lysigamasus spp.) together. The direct toxic effect of lead and the effectiveness of the predators in preying upon the worms were studied in separate experiments. Polluted humic soil (acid-extractable lead concentration was 2,720 +/- 349 mg/kg of dry soil [mean +/- standard error]) was toxic to enchytraeids, and predators effectively reduced worm populations. Positive density-dependent effects of worms on microbes and a trophic cascade from predatory mites to microbes, observed in the unpolluted humus, were not observed in the polluted humus, indicating pollution-induced interaction modification among organisms. Concomitantly, lead pollution altered the process of nutrient mineralization in the humic soil. However, causality and relative importance of direct toxicity and indirect effects of lead on the dynamics of the decomposer food web could not be pointed out. Examination of our results indicates that traditional food web models are incapable of predicting mechanisms that alter dynamics of pollution-stressed belowground food webs.
人们普遍认为,有毒物质造成的环境污染不仅会导致直接的毒性效应,还会通过改变受胁迫群落中的物种相互作用产生间接影响。我们研究了铅(来自一个废弃靶场区域)对针叶林土壤表层的污染如何改变营养相互作用和分解过程。我们构建了含有基于微生物的食物网的实验室微观生态系统,这些食物网具有不同的营养结构:仅含有微生物;含有以微生物为食的食碎屑蚯蚓(泥炭藓线蚓,北方森林土壤中一种潜在的关键物种)的微生物;以及同时含有微生物、蚯蚓和捕食性螨类(镰螯螨属)的微生物。在单独的实验中研究了铅的直接毒性效应以及捕食者捕食蚯蚓的有效性。受污染的腐殖土(酸可提取铅浓度为2720±349毫克/千克干土[平均值±标准误差])对蚯蚓有毒,捕食者有效地减少了蚯蚓数量。在未受污染的腐殖土中观察到的蚯蚓对微生物的正密度依赖效应以及从捕食性螨类到微生物的营养级联效应,在受污染的腐殖土中未观察到,这表明污染导致了生物之间相互作用的改变。同时,铅污染改变了腐殖土中的养分矿化过程。然而,无法指出铅对分解者食物网动态的直接毒性和间接效应的因果关系及相对重要性。对我们结果的检验表明,传统的食物网模型无法预测改变受污染胁迫的地下食物网动态的机制。