Biochar alleviated the toxic effects of microplastics-contaminated geocarposphere soil on peanut (Arachis hypogaea L.) pod development: roles of pod nutrient metabolism and geocarposphere microbial modulation
文献类型: 外文期刊
作者: Yang, Liyu 1 ; Liang, Haiyan 1 ; Wu, Qi 1 ; Shen, Pu 1 ;
作者机构: 1.Shandong Acad Agr Sci, Shandong Peanut Res Inst, Natl Engn Res Ctr Peanut, Qingdao, Peoples R China
关键词: peanut pod development; microplastics contamination; biochar amendment; transcriptome; geocarposphere microbiome
期刊名称:JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE ( 影响因子:4.1; 五年影响因子:4.2 )
ISSN: 0022-5142
年卷期: 2024 年 104 卷 5 期
页码:
收录情况: SCI
摘要: BACKGROUND: The accumulation of microplastics in agricultural soil poses a threat to the sustainability of agriculture, impacting crop growth and soil health. Due to the geocarpy feature of peanut, geocarposphere soil environment is critical to pod development and its nutritional quality. While the effects of microplastics in the rhizosphere have been studied, their impact on peanut pod in the geocarposphere remains unknown. Biochar has emerged as a potential soil agent with the ability to remediate soil contamination. However, the mechanisms of biochar in mitigating the toxic effects of microplastics-contaminated geocarposphere soil on peanut pod development remain largely unexplored. RESULTS: We evaluated the peanut pod performance and microbiome when facing microplastics contamination and biochar amendment in geocarposphere soil. The results showed that microplastics present in geocarposphere soil could directly enter the peanut pod, cause pod developmental disorder and exert adverse effects on nutritional quality. Aberrant expression of key genes associated with amino acid metabolism, lipid synthesis, and auxin and ethylene signaling pathways were the underlying molecular mechanisms of microplastics-induced peanut pod developmental inhibition. However, these expression abnormalities could be reversed by biochar application. In addition, peanut geocarposphere microbiome results showed that biochar application could restore the diversity of microbial communities inhibited by microplastics contamination and promote the relative abundance of bacteria correlated with pathogen resistance and nitrogen cycle of geocarposphere soil, further promoting peanut pod development. CONCLUSION: This study demonstrated that biochar application is an effective strategy to mitigate the toxic effects of microplastics-contaminated geocarposphere soil on pod development and nutritional quality.(c) 2023 Society of Chemical Industry.
- 相关文献
作者其他论文 更多>>
-
Biochar relieves the toxic effects of microplastics on the root-rhizosphere soil system by altering root expression profiles and microbial diversity and functions
作者:Yang, Liyu;Shen, Pu;Liang, Haiyan;Wu, Qi
关键词:Microplastic contamination; Biochar amendment; Transcriptome; Rhizosphere microbiome; Plant-soil system
-
Release and Degradation Mechanism of Modified Polyvinyl Alcohol-Based Double-Layer Coated Controlled-Release Phosphate Fertilizer
作者:Sun, Teng;Zhan, Dekang;Wang, Xiangzhu;Guo, Qingjie;Wu, Man;Wu, Mingzhou;Shen, Pu
关键词:controlled release; phosphate fertilizers; biochar doping; biodegradability; double-layer film; polyvinyl alcohol
-
Rhizosphere Ventilation Effects on Root Development and Bacterial Diversity of Peanut in Compacted Soil
作者:Liang, Haiyan;Yang, Liyu;Wu, Qi;Chen, Dianxu;Liu, Miao;Shen, Pu;He, Xinhua;He, Xinhua
关键词:nitrogen-fixing bacterial communities; peanut; root morphology; root enzyme activity; soil ventilation
-
Multi-year crop rotation and quicklime application promote stable peanut yield and high nutrient-use efficiency by regulating soil nutrient availability and bacterial/fungal community
作者:Yang, Liyu;Wang, Caibin;Liang, Haiyan;Wu, Qi;Sun, Xuewu;Liu, Miao;Shen, Pu;He, Xinhua
关键词:peanut; crop rotation pattern; continuous cropping obstacle; bacterial/fungal community; quicklime
-
Effect of Root-Knot Nematode Disease on Bacterial Community Structure and Diversity in Peanut Fields
作者:Wu, Lijun;Ren, Yan;Chen, Guanghui;Wang, Chuantang;Wu, Qi;Li, Shuangling;Zhan, Fudong;Yuan, Mei;Zhang, Xiangsong;Sheng, Li;Wei, Wenliang
关键词:peanut (Arachis hypogaea L; ); root-knot nematode disease; bulk soil; bacterial community structure
-
Regulation of the C:N Ratio Improves the N-Fixing Bacteria Activity, Root Growth, and Nodule Formation of Peanut
作者:Liang, Haiyan;Yang, Liyu;Wu, Qi;Meng, Cuiping;Zhang, Jiancheng;Shen, Pu;Meng, Cuiping
关键词:Glucose addition; Plant growth; Root morphology; Microbial richness and diversity
-
Arbuscular mycorrhizal fungi inoculation exerts weak effects on species- and community-level growth traits for invading or native plants under nitrogen deposition
作者:Guo, Xiao;Li, Mingyan;Jiang, Siyu;Guo, Shaoxia;Xing, Lijun;Wang, Tong;Yang, Liyu
关键词:global environmental change; arbuscular mycorrhizal fungi; invasibility; woody invader; native plant community; plant-plant interactions



