Department of Civil, Environmental and Mechanical Engineering, DICAM, University of Trento, Via Mesiano 77, 38123 Trento, Italy; Faculty of Biological and Environmental Sciences, Ecosystems and Environment Research Programme, University of Helsinki, Niemenkatu 73, Lahti FI-15140, Finland.
Department of Agronomy, Food, Natural Resources, Animals and Environment, DAFNAE, University of Padova, Viale dell'Università 16, Legnaro 35020, Italy.
Microbiol Res. 2023 May;270:127343. doi: 10.1016/j.micres.2023.127343. Epub 2023 Feb 22.
Soil quality and microbial diversity are essential to the health of ecosystems. However, it is unclear how the use of eco-friendly natural additives can improve the quality and microbial diversity of contaminated soils. Herein, we used high-throughput 16 S rDNA amplicon Illumina sequencing to evaluate the stimulation and development of microbial diversity and concomitant bioremediation in hydrocarbon (HC) and heavy metal (HM)-rich waste disposal site soil when treated with meat and bone meal (MBM), cyclodextrin (Cdx), and MBM and cyclodextrin mixture (Cdx MBM) over a period of 3 months. Results showed that natural additive treatments significantly increased the soil bacterial diversity (higher Shannon index, Simpson index and evenness) in a time-dependent manner, with Cdx eliciting the greatest enhancement. The two additives influenced the bacterial community succession patterns differently. MBM, while it enhanced the enrichment of specific genera Chitinophaga and Terrimonas, did not significantly alter the total bacterial community. In contrast, Cdx or Cdx MBM promoted a profound change of the bacteria community over time, with the enrichment of the genera Parvibaculum, Arenimonas and unclassified Actinobacteria. These results provide evidence on the involvement of the two natural additives in coupling HC and HM bioremediation and bacterial community perturbations, and thus illustrates their potential application in ecologically sound bioremediation technologies for contaminated soils.
土壤质量和微生物多样性对生态系统的健康至关重要。然而,目前尚不清楚如何使用环保型天然添加剂来提高受污染土壤的质量和微生物多样性。本研究采用高通量 16S rDNA 扩增子 Illumina 测序技术,在 3 个月的时间内,评估了肉骨粉(MBM)、环糊精(Cdx)和 MBM 与环糊精混合物(Cdx MBM)处理富含碳氢化合物(HC)和重金属(HM)的废物处置场土壤时,对微生物多样性的刺激和发展以及伴随的生物修复作用。结果表明,天然添加剂处理显著地增加了土壤细菌多样性(更高的 Shannon 指数、Simpson 指数和均匀度),且具有时间依赖性,其中 Cdx 的增强作用最大。两种添加剂对细菌群落演替模式的影响不同。MBM 虽然增强了特定属节杆菌属和 Terrimonas 的富集,但对总细菌群落没有显著影响。相比之下,Cdx 或 Cdx MBM 随着时间的推移促进了细菌群落的深刻变化,富集了 Parvibaculum、Arenimonas 和未分类放线菌属等属。这些结果为两种天然添加剂在耦合 HC 和 HM 生物修复和细菌群落扰动方面的参与提供了证据,并说明了它们在受污染土壤生态友好型生物修复技术中的潜在应用。