University of Zagreb, Faculty of Science, Department of Biology, Rooseveltov trg 6, 10000 Zagreb, Croatia.
University of Ulm, Institute of Evolutionary Ecology and Conservation Genomics, Helmholtzstr. 10/1, 89081 Ulm, Germany.
Ecotoxicol Environ Saf. 2019 Apr 30;171:843-853. doi: 10.1016/j.ecoenv.2018.12.102. Epub 2019 Jan 17.
Preservation of the soil resources stability is of high importance for ecosystems, particularly in the current era of environmental change, which presents a severe pollution burden (e.g. by heavy metals) to soil fauna. Gut microbiomes are becoming recognized as important players in organism health, with comprehension of their perturbations in the polluted environment offering new insights into the nature and extent of heavy metal effects on the health of soil biota. Our aim was to investigate the effect of environmentally relevant heavy metal concentrations of cadmium (Cd) on the earthworm (Lumbricus terrestris) gut microbiota. Our results revealed that Cd exposure led to perturbations of earthworm gut microbiota with an increase in bacteria previously described as heavy metal resistant or able to bind heavy metals, revealing the potential of the earthworm-gut microbiota system in overcoming human-caused heavy metal pollution. Furthermore, an 'indicator species analysis' linked the bacterial genera Paenibacillus, Flavobacterium and Pseudomonas, with Cd treatment, suggesting these bacterial taxa as biomarkers of exposure in earthworms inhabiting Cd-stressed soils. The results of this study help to understand the impact of anthropogenic disturbance on soil fauna health and will have implications for environmental monitoring and protection of soil resources.
保护土壤资源的稳定性对生态系统至关重要,特别是在当前环境变化的时代,这给土壤动物带来了严重的污染负担(例如重金属污染)。肠道微生物组正被认为是生物体健康的重要参与者,了解它们在污染环境中的失调情况,为理解重金属对土壤生物群健康的性质和程度提供了新的视角。我们的目的是研究环境相关浓度的重金属镉(Cd)对蚯蚓(Lumbricus terrestris)肠道微生物群的影响。我们的结果表明,Cd 暴露导致蚯蚓肠道微生物群发生紊乱,先前描述的耐重金属或能够结合重金属的细菌数量增加,这揭示了蚯蚓-肠道微生物群系统在克服人为重金属污染方面的潜力。此外,“指示物种分析”将细菌属 Paenibacillus、Flavobacterium 和 Pseudomonas 与 Cd 处理联系起来,表明这些细菌类群是栖息在 Cd 胁迫土壤中的蚯蚓暴露的生物标志物。这项研究的结果有助于了解人为干扰对土壤动物健康的影响,并将对环境监测和土壤资源保护产生影响。