根际
赖草
睾丸小孢子虫
鞘脂单胞菌属
酸杆菌
蛋白质细菌
环境化学
植物修复
化学
芦苇
Β-变形菌
微生物种群生物学
植物
细菌
生物
放线菌门
农学
生态学
16S核糖体RNA
湿地
重金属
遗传学
草原
作者
Qiao Wang,Rui Zheng,X C Sun,Ziwei Jiang,Fanghui Yang,Qian Lu,Jizhe Cui
出处
期刊:Chinese Journal of Biotechnology
[Elsevier BV]
日期:2020-12-25
卷期号:36 (12): 2657-2673
被引量:8
标识
DOI:10.13345/j.cjb.200381
摘要
To investigate the degradation of polycyclic aromatic hydrocarbons (PAHs) and the changes of rhizosphere microorganisms in the rhizosphere soil of Leymus chinensis during the remediation of PAHs contaminated soil by Comamonas testosteroni (C.t)-assisted Leymus chinensis, we evaluated the removal of PAHs in the rhizosphere of Leymus chinensis using gas chromatography-mass spectrometry (GC-MS), analyzed the bacterial community and the diversity in Leymus chinensis rhizosphere soil by high-throughput sequencing technology, characterized the correlation among PAHs degradation and bacterial community components performing redundancy analysis (RDA) and network analysis, and predicted PAHs degradation potential via PICRUSt software in this paper. The degradation of PAHs in the rhizosphere of Leymus chinensis was promoted, the abundance and diversity of bacteria and the correlation among bacteria and PAHs were changed, and the degradation potential of PAHs in Leymus chinensis rhizosphere soil was enhanced in the later stage of phytoremediation (60-120 d) due to the incorporation of C.t. The accelerated degradation of three PAHs (Nap, Phe, BaP) was accompanied by the differ abundance and correlation of Proteobacteria (Sphingomonas, MND1, Nordella), Actinomycetes (Rubrobacter, Gaiella), Acidobacteria (RB41) and Bacteroides (Flavobacterium) affected by C.t. The results provide new insight into the microorganism choices for microbial assisted plant remediation of soil PAHs and the mechanisms of enhanced PAHs degradation via the combination of Comamonas testosteroni engineering bacteria and plants.
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