Mitigating microplastic stress on peanuts: The role of biochar-based synthetic community in the preservation of soil physicochemical properties and microbial diversity
文献类型: 外文期刊
作者: Yu, Hong 1 ; Pu, Zitian 1 ; Wang, Shuaibing 1 ; Chen, Yinglong 2 ; Wang, Chao 1 ; Wan, Yongshan 3 ; Dong, Yuanjie 1 ; Wang, Jianguo 4 ; Wan, Shubo 4 ; Wang, Dandan 1 ; Xie, Zhihong 1 ;
作者机构: 1.Shandong Agr Univ, Coll Resources & Environm, Natl Engn Res Ctr Efficient Utilizat Soil & Fertil, Tai An 271018, Peoples R China
2.Univ Western Australia, UWA Inst Agr, Sch Agr & Environm, Perth, WA 6009, Australia
3.Shandong Agr Univ, Coll Agron, Tai An 271018, Peoples R China
4.Shandong Acad Agr Sci, Inst Crop Germplasm Resources, Jinan 250100, Peoples R China
关键词: Rubber crumbs; Peanut; Plant growth -promoting rhizobacteria; Biochar-based syncom
期刊名称:SCIENCE OF THE TOTAL ENVIRONMENT ( 影响因子:8.2; 五年影响因子:8.6 )
ISSN: 0048-9697
年卷期: 2024 年 932 卷
页码:
收录情况: SCI
摘要: Tire-derived rubber crumbs (RC), as a new type of microplastics (MPs), harms both the environment and human health. Excessive use of plastic, the decomposition of which generates microplastic particles, in current agricultural practices poses a significant threat to the sustainability of agricultural ecosystems, worldwide food security and human health. In this study, the application of biochar, a carbon-rich material, to soil was explored, especially in the evaluation of synthetic biochar-based community (SynCom) to alleviate RC-MP-induced stress on plant growth and soil physicochemical properties and soil microbial communities in peanuts. The results revealed that RC-MPs significantly reduced peanut shoot dry weight, root vigor, nodule quantity, plant enzyme activity, soil urease and dehydrogenase activity, as well as soil available potassium, and bacterial abundance. Moreover, the study led to the identification highly effective plant growth-promoting rhizobacteria (PGPR) from the peanut rhizosphere, which were then integrated into a SynCom and immobilized within biochar. Application of biochar-based SynCom in RC-MPs contaminated soil significantly increased peanut biomass, root vigor, nodule number, and antioxidant enzyme activity, alongside enhancing soil enzyme activity and rhizosphere bacterial abundance. Interestingly, under high-dose RC-MPs treatment, the relative abundance of rhizosphere bacteria decreased significantly, but their diversity increased significantly and exhibited distinct clustering phenomenon. In summary, the investigated biochar-based SynCom proved to be a potential soil amendment to mitigate the deleterious effects of RC-MPs on peanuts and preserve soil microbial functionality. This presents a promising solution to the challenges posed by contaminated soil, offering new avenues for remediation.
- 相关文献
作者其他论文 更多>>
-
Non-Destructive Monitoring of Peanut Leaf Area Index by Combing UAV Spectral and Textural Characteristics
作者:Qiao, Dan;Yang, Juntao;Li, Zhenhai;Liu, Jiayin;Bai, Bo;Li, Guowei;Wang, Jianguo;Liu, Jincheng
关键词:leaf area index; vegetation indices; texture characteristics; peanut; UAV remote sensing
-
Magnesium fertilizer application increases peanut growth and pod yield under reduced nitrogen application in southern China
作者:Gao, Yu;Zeng, Ruier;Yao, Suzhe;Wang, Ying;Chen, Tingting;Zhang, Lei;Wang, Jianguo;Wan, Shubo;Hu, Wei
关键词:Peanut; Magnesium; Yield; Reduced nitrogen application rate
-
General and specialized metabolites in peanut roots regulate arbuscular mycorrhizal symbiosis
作者:Cui, Li;Wang, Jianguo;Tang, Zhaohui;Zhang, Zheng;Yang, Sha;Guo, Feng;Li, Xinguo;Meng, Jingjing;Zhang, Jialei;Wan, Shubo;Kuzyakov, Yakov;Kuzyakov, Yakov;Kuzyakov, Yakov
关键词:Arachis hypogaea L.; arbuscular mycorrhizae fungi; metabolites; symbiotic association
-
Peanut-based intercropping systems altered soil bacterial communities, potential functions, and crop yield
作者:Liu, Zhu;Nan, Zhenwu;Lin, Songming;Meng, Weiwei;Zhang, Zheng;Wan, Shubo;Liu, Zhu;Xie, Liyong;Yu, Haiqiu;Lin, Songming
关键词:Sorghum; Millet; Peanut; Intercropping; Yield; Soil bacterial community
-
TaMYB-CC5 gene specifically expressed in root improve tolerance of phosphorus deficiency and drought stress in wheat
作者:Kong, Ya-Nan;Yan, Xue-Chun;Liu, Yuan-Xia;Wang, Xin-Rui;Lan, Jin-Hao;Zheng, Lei;Kong, Ya-Nan;Wang, Xin-Rui;Zhang, Jin-Peng;Wang, Chao;Hou, Ze-Hao;Chen, Jun;Zhou, Yong-Bin;Chen, Ming;Ma, You-Zhi;Xu, Zhao-Shi;Qi, Xue-Li;Cao, Xin-You;Zhang, Shuang-Xi;Liu, Yong-Wei;Zheng, Jia-Cheng;Xu, Zhao-Shi
关键词:MYB-CC transcription factor; Phosphorus deficiency; Drought; Root; ZIFLs genes
-
Peanut LEAFY COTYLEDON1-type genes participate in regulating the embryo development and the accumulation of storage lipids
作者:Tang, Guiying;Xu, Pingli;Li, Guowei;Shan, Lei;Wan, Shubo;Jiang, Chunyu
关键词:LEAFY COTYLEDON-1 type gene; Seed development; Fatty acid (FA) synthesis; Oil accumulation; Yields
-
Transcriptome profiling of aerial and subterranean peanut pod development
作者:Peng, Zhenying;Jia, Kai-Hua;Meng, Jingjing;Wang, Jianguo;Zhang, Jialei;Li, Xinguo;Wan, Shubo
关键词:



