Zhu Dong, Ke Xin, Wu Longhua, Li Zhu, Christie Peter, Luo Yongming
Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China; University of the Chinese Academy of Sciences, Beijing 100049, China.
Institute of Plant Physiology and Ecology, Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China.
Environ Pollut. 2016 Dec;219:37-46. doi: 10.1016/j.envpol.2016.09.051. Epub 2016 Sep 20.
Effects of cadmium (Cd) on predator-prey relationships and soil ecological function are poorly understood and there are few methods available to measure soil functional change. Thus, we structured a soil-dwelling food chain containing the predatory mite Hypoaspis aculeifer and its collembolan prey Folsomia candida to study the effects of Cd exposure for eight weeks in a spiked soil aged for five years. The N labeled litter was added as food to analyze the change in nitrogen (N) transfer content. H. aculeifer reproduction and growth and the survival and reproduction of F. candida were all negatively affected by Cd exposure, and H. aculeifer reproduction was the most sensitive parameter. The sensitivity responses of F. candida and H. aculeifer were different from those using the previous single species test. The results suggest that predator-prey interactions might influence the toxicity of Cd by predation and food restriction. Cadmium lethal body concentrations of adults and juveniles of F. candida and H. aculeifer juveniles were 500-600, 180-270 and 8-10 μg g, respectively. The content of N transfer from litter to animals in the food chain decreased significantly with increasing soil Cd concentration between 100 and 400 mg kg. The results suggest that the N labeled litter addition method is potentially useful for quantitative assessment of soil functional change for further risk assessment purposes.
镉(Cd)对捕食者 - 猎物关系及土壤生态功能的影响尚不清楚,且几乎没有可用于测量土壤功能变化的方法。因此,我们构建了一个包含捕食性螨类尖狭下盾螨及其弹尾目猎物白符跳的土壤食物链,以研究在添加镉的五年陈化土壤中暴露八周的影响。添加氮标记的凋落物作为食物,以分析氮(N)转移含量的变化。镉暴露对尖狭下盾螨的繁殖和生长以及白符跳的存活和繁殖均产生负面影响,其中尖狭下盾螨的繁殖是最敏感的参数。白符跳和尖狭下盾螨的敏感性反应与之前的单物种测试不同。结果表明,捕食者 - 猎物相互作用可能通过捕食和食物限制影响镉的毒性。白符跳成虫和若虫以及尖狭下盾螨若虫的镉致死体内浓度分别为500 - 600、180 - 270和8 - 10μg g。在土壤镉浓度为100至400mg kg之间时,食物链中从凋落物到动物的氮转移含量随着土壤镉浓度的增加而显著降低。结果表明,添加氮标记凋落物的方法对于定量评估土壤功能变化以用于进一步的风险评估可能是有用的。