Department of Environmental Engineering, University of Science and Technology Beijing, 10083, China.
Department of Environmental Engineering, University of Science and Technology Beijing, 10083, China; Beijing Key Laboratory on Resource-oriented Treatment of Industrial Pollutants, 10083, China.
Chemosphere. 2020 Feb;240:124891. doi: 10.1016/j.chemosphere.2019.124891. Epub 2019 Sep 17.
We investigated the effects of endophytes inoculation on ecological factors such as root morphology, rhizosphere soil properties, heavy metal speciation, and rhizosphere and endophytic bacterial communities and their role on phytoremediation. Indian mustards were grown for two months in V-contaminated soil with three treatments (control, inoculation with Serratia PRE01 or Arthrobacter PRE05). Inoculation with PRE01 and PRE05 increased organic matter content by 6.94% and 4.6% respectively and significantly increased bioavailability of heavy metals in rhizosphere soils. Despite the endophyte inocula failed to flourish as stable endophytes, they significantly affected the specific composition and diversity of endophytic bacterial communities in roots, with no significant effect on rhizosphere bacterial communities. The test strains could greatly increase plant growth promotion-related biomarkers in the endosphere, especially those associated with Pseudomonas and Microbacterium genera. PICRUSt analysis predicted high relative abundances of functional genes related to environmental information processing especially in the endophytic microbiota. More biomass production (12.0%-17.4%) and total metals uptake (24.2%-32.0%) were acquired in inoculated treatments. We conclude that endophyte PRE01 or PRE05 inoculation could effectively enhance phytoremediation of V-contaminated soil by improving the rhizosphere and endosphere microecology without causing any ecological damage.
我们研究了内生菌接种对根形态、根际土壤特性、重金属形态、根际和内生细菌群落及其在植物修复中的作用等生态因子的影响。在 V 污染土壤中种植印度芥菜两个月,采用三种处理(对照、接种 Serratia PRE01 或 Arthrobacter PRE05)。接种 PRE01 和 PRE05 分别使有机物质含量增加了 6.94%和 4.6%,并显著增加了根际土壤中重金属的生物有效性。尽管内生菌接种剂未能作为稳定的内生菌繁殖,但它们显著影响了根内生细菌群落的特定组成和多样性,对根际细菌群落没有显著影响。测试菌株可大大增加内球中与植物生长促进相关的生物标志物,特别是与假单胞菌和微杆菌属相关的生物标志物。PICRUSt 分析预测与环境信息处理相关的功能基因相对丰度较高,尤其是在内生微生物群中。接种处理的生物量产量(12.0%-17.4%)和总金属吸收量(24.2%-32.0%)均有所增加。我们得出结论,内生菌 PRE01 或 PRE05 的接种可以通过改善根际和根内微生态来有效增强 V 污染土壤的植物修复,而不会造成任何生态破坏。