Elevated ambient carbon dioxide and Trichoderma inoculum could enhance cadmium uptake of Lolium perenne explained by changes of soil pH, cadmium availability and microbial biomass
文献类型: 外文期刊
第一作者: Song, Ningning
作者: Song, Ningning;Ma, Yibing;Song, Ningning;Zhao, Yujie;Tang, Shirong;Song, Ningning
作者机构:
关键词: Trichoderma inoculum;Elevated ambient CO2;Rhizosphere;Phytoextraction
期刊名称:APPLIED SOIL ECOLOGY ( 影响因子:4.046; 五年影响因子:4.884 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: Trichoderma inoculum may mediate plant growth and uptake of heavy metals, but the combined effects and the mechanisms of Trichoderma sp. and elevated ambient carbon dioxide (CO2) on the cadmium (Cd) availability and plant uptake are far less investigated. A pot experiment was conducted to investigate plant growth, Cd uptake, and chemical and microbial biomass characteristics of the rhizosphere of Lolium perenne grown on three Cd-contaminated soils under combined effects of elevated ambient CO2 and Trichoderma virens strain F7 inoculum. Rhizosphere soil samples were analyzed for pH, concentrations of available Cd measured by diffusive gradients in thin-films (DGT-Cd) and microbial biomass carbon and nitrogen. It was found that the elevated ambient CO2 and Trichoderma inoculation, in combination or alone, significantly promoted plant biomass and total Cd uptake by plants with decreased soil pH (by 0.08-0.32 units) and increased microbial biomass carbon (by 21.54-121.21%) and nitrogen (by 21.88-112.95%) in the rhizosphere. Also, the concentration of DGT-Cd in the rhizosphere under elevated ambient CO2 and Trichoderma inoculum treatments was increased by 15.45-152.48%, indicating that there was more available Cd for plant uptake under effects of elevated ambient CO2 and Trichoderma inoculum. Results suggested that the acidulated rhizosphere, enhanced microbial activities and increased Cd availability may have contributed to the efficiency of plants in Cd accumulation under effects of elevated ambient CO2 and Trichoderma inoculum. (C) 2014 Elsevier B.V. All rights reserved.
分类号: S154.1
- 相关文献
作者其他论文 更多>>
-
Diffusive gradient in thin films combined with machine learning to discern the accumulation characteristics and driving factors of Cd and Cu in soil-rice systems
作者:Wang, Zhen;Zhang, Qiang;Yin, Ping;Chen, Qiusheng;Zhang, Chuangchuang;Lv, Danlei;Zhao, Yujie;Zhang, Chuangchuang;Lv, Danlei;Cai, Yanming;Zhao, Yujie;Guo, Runze
关键词:Heavy metal contamination; Random forest; Extreme random tree; Paddy soil
-
Modeling praseodymium toxicity in solution to wheat root elongation using the biotic ligand model theory
作者:Guo, Xiaohong;Li, Mengjia;Zong, Haiying;Wang, Fangli;Liu, Shuaiqi;Song, Ningning;Bin, Wang;Huang, Xiaoli;Meng, Li
关键词:Praseodymium; Wheat root elongation; Toxicity; Biotic ligand model (BLM)
-
Interfacial adsorption and lubrication dynamics of β-lactoglobulin and MCT on the mucin layer
作者:Zhang, Yanhui;Zhao, Yujie;Zhang, Ruoning;Gao, Yanxiang;Mao, Like;Zhang, Yanhui;Liu, Guangmin;Mao, Like
关键词:Mucin; beta-Lactoglobulin; MCT; Lubrication; QCM-D; Molecular docking
-
Five-year controlled-release/stable nitrogen fertilization reduces field nitrogen loss without increasing carbon dioxide emissions in a vegetable rotation system
作者:Wang, Fangli;Li, Zhi;Yu, Zihan;Liu, Jun;Zong, Haiying;Song, Ningning;Zheng, Dan;Liao, Shangqiang;Wang, Xuexia;Zhang, Xi
关键词:controlled-release N fertilizer; greenhouse gas emissions; nitrification inhibitor; stable N fertilizer; vegetable yield
-
1-MCP and MAP treatments reduce the finger drop of banana during the shelf-life after high temperatures storage by regulating cell-wall metabolism
作者:Li, Xiaoyan;Rahman, Faiz Ur;Zhao, Yujie;Lei, Qiumei;Chen, Weixin;Li, Xueping;Zhu, Xiaoyang;Hu, Huigang
关键词:High temperature stress; Shelf life; 1-MCP +MAP; Finger drop; Cell wall; RNA-seq; Banana
-
Description of Tobriloides sinensis sp. n. (Nematoda: Triplonchida: Tobrilidae) from Shanxi province, north China
作者:Yang, Gurong;Liu, Meina;Ma, Yibing;Wang, Jianming;Xu, Yumei;Zhao, Zengqi;Xu, Yumei
关键词:-D2-D3 segments of large subunit (LSU) rRNA gene; morphology; new species; small subunit (SSU) rRNA gene; taxonomy; Tobriloides; Triplonchida
-
Fe-CGS Effectively Inhibits the Dynamic Migration and Transformation of Cadmium and Arsenic in Soil
作者:Yin, Hongliang;Song, Ningning;Song, Xin;Zong, Quanli;Yin, Hongliang;Zhou, Changzhi;Wang, Junhuan;Yin, Mengxue;Wu, Zhihao;Hou, Hong;Shangguan, Yuxian;Sun, Zaijin
关键词:iron modification; coal gasification slag; cadmium; arsenic; leaching; stabilization