Effects of co-exposure of antibiotic and microplastic on the rhizosphere microenvironment of lettuce seedlings

被引:0
|
作者
Guo, Aiyun [1 ,2 ]
Pan, Chengrong [1 ,3 ]
Zhou, Xu [4 ]
Bao, Yanyu [1 ,4 ]
机构
[1] Nankai Univ, Coll Environm Sci & Engn, Key Lab Pollut Proc Environm Criteria, Tianjin Key Lab Environm Remediat & Pollut Control, Tianjin 300350, Peoples R China
[2] Shandong Univ Sci & Technol, Coll Safety & Environm Engn, Qingdao 266590, Peoples R China
[3] Lanzhou Adm Inst, Lanzhou Party Comm, Party Sch CPC, Lanzhou 790030, Peoples R China
[4] Tianjin Univ, Coll Environm Sci & Engn, Tianjin 300350, Peoples R China
关键词
Oxytetracycline; Polyethylene microplastic; Rhizosphere; Bacterial community; Metabolite; ELECTRICAL-CONDUCTIVITY; RIVER DELTA; SOIL; OXYTETRACYCLINE; TETRACYCLINE; CULTIVATION; CADMIUM; ACCUMULATION; DEGRADATION; COMMUNITIES;
D O I
10.1016/j.scitotenv.2024.175983
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Antibiotics and microplastics (MPs) often coexist in facility agriculture soils due to the prevalent use of animal manure and plastic films. However, their combined impacts on the rhizosphere environment of lettuce remain unclear. This study assessed the effects of individual and combined exposure to polyethylene (PE) MPs (2 g<middle dot>kg(-1)) and oxytetracycline (OTC) (0, 5, 50, and 150 mg<middle dot>kg(-1)) on the growth of lettuce seedlings and enzyme activities, physicochemical properties, metabolite profiles and bacterial communities of rhizosphere soil of lettuce. Exposure to 150 mg<middle dot>kg(-1) OTC, either individually or combined, significantly increased lettuce seedling shoot biomass. All treatments decreased chlorophyll and carotenoid contents. Combined exposure notably increased the Simpson's index of rhizosphere bacterial communities and altered community composition. The number of differential genera of rhizosphere was less than that of non-rhizosphere. Combined exposure significantly changed both rhizosphere and non-rhizosphere metabolite profiles. Soil organic matter emerged as the key environmental factor influencing bacterial community variation. Mantel tests revealed strong positive associations between total potassium and rhizosphere bacterial communities under combined exposure. The correlation network identified stearic acid and palmitic acid as the core metabolites in the rhizosphere. These findings offer valuable insights into the impact of OTC combined with PE MPs on lettuce rhizosphere environment.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Effects of Radiofrequency Exposure and Co-Exposure on Human Lymphocytes: The Influence of Signal Modulation and Bandwidth
    Romeo, Stefania
    Sannino, Anna
    Zeni, Olga
    Angrisani, Leopoldo
    Massa, Rita
    Scarfi, Maria Rosaria
    IEEE JOURNAL OF ELECTROMAGNETICS RF AND MICROWAVES IN MEDICINE AND BIOLOGY, 2020, 4 (01): : 17 - 23
  • [32] Effects of Co-exposure to Noise and Mixture of Organic Solvents on Blood Pressure
    Chang, Ta-Yuan
    Wang, Ven-Shing
    Hwang, Bing-Fang
    Yen, Hsin-Yu
    Lai, Jim-Shoung
    Liu, Chiu-Shong
    Lin, Shou-Yu
    JOURNAL OF OCCUPATIONAL HEALTH, 2009, 51 (04) : 332 - 339
  • [33] Physiological Effects of Co-exposure to Ionizing Radiation and Noise within Occupational Exposure Limits
    Liu, Wenyi
    Liu, Huaqing
    Gao, Weimin
    Xie, Liangbin
    Cao, Yanmei
    HEALTH PHYSICS, 2023, 125 (05): : 332 - 337
  • [34] Effects of ecotoxicity of penoxsulam single and co-exposure with AgNPs on Eisenia fetida
    Li, Dengtan
    Zhang, Jingwen
    Cheng, Chao
    Hou, Kaixuan
    Wang, Xiaole
    Zhu, Lusheng
    Li, Bing
    Du, Zhongkun
    Wang, Jinhua
    Wang, Jun
    CHEMOSPHERE, 2022, 307
  • [35] Correlation between the development of phage resistance and the original antibiotic resistance of host bacteria under the co-exposure of antibiotic and bacteriophage
    Li, Lingli
    Zhou, Mengya
    Yu, Ming
    Ren, Xu
    Li, Linzhi
    Shen, Chunjun
    Deng, Chunping
    Liu, Yucheng
    Yang, Bing
    ENVIRONMENTAL RESEARCH, 2024, 252
  • [36] Effects of temperature on caffeine and carbon nanotubes co-exposure in Ruditapes philippinarum
    Piscopo, Raffaele
    Coppola, Francesca
    Almeida, Angela
    De Marchi, Lucia
    Russo, Tania
    Esteves, Valdemar, I
    Soares, Amadeu M. V. M.
    Pretti, Carlo
    Chiellini, Federica
    Polese, Gianluca
    Freitas, Rosa
    CHEMOSPHERE, 2021, 271
  • [37] Biological monitoring of occupational exposure to N,N -dimethylformamide – the effects of co-exposure to toluene or dermal exposure
    J.-S. Yang
    E. A. Kim
    M. Y. Lee
    I. J. Park
    S.-K. Kang
    International Archives of Occupational and Environmental Health, 2000, 73 : 463 - 470
  • [38] Micro-nanoscale polystyrene co-exposure impacts the uptake and translocation of arsenic and boscalid by lettuce (Lactuca sativa)
    Bui, Trung Huu
    Zuverza-Mena, Nubia
    Kendrick, Emilie
    Tamez, Carlos
    Yadav, Manavi
    Alotaibi, Sarah
    Dimkpa, Christian
    Deloid, Glen
    Sadik, Omowunmi
    Demokritou, Philip
    White, Jason C.
    NANOIMPACT, 2025, 37
  • [39] Microplastic ingestion and co-exposure to Nosema ceranae and flupyradifurone reduce the survival of honey bees (Apis mellifera L.)
    Tiritelli, Rossella
    Zavatta, Laura
    Tadei, Rafaela
    da Silva, Elaine Cristina Mathias
    Sgolastra, Fabio
    Cilia, Giovanni
    ENVIRONMENTAL TOXICOLOGY AND PHARMACOLOGY, 2024, 111
  • [40] Neurodevelopmental effects of manganese and lead co-exposure: A case study of teeth as a novel exposure biomarker
    Henn, Birgit Claus
    Coull, Brent A.
    NEUROTOXICOLOGY AND TERATOLOGY, 2015, 49 : 120 - 121