nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg searchdiv qikanlogo popupnotification paper
2025 01 v.32 52-61
纳米硒缓解纳米塑料对生菜的毒理效应
基金项目(Foundation):
邮箱(Email): Linxi.Yuan@xjtlu.edu.cn;
DOI: 10.13578/j.cnki.issn.1671-1556.20240977
中文作者单位:

西交利物浦大学理学院;

摘要(Abstract):

纳米塑料(NPs)作为一种新型环境污染物,在农业环境中对农作物的潜在影响值得关注。通过生菜的水培实验探讨了NPs对生菜的毒理效应及纳米硒(SeNPs)在缓解此类毒理效应中的潜在作用。结果表明:低浓度的NPs显著抑制了生菜的地上生长,减少了根表面积和连接数,并提高了生菜组织中的脂质过氧化水平,导致氧化应激反应;SeNPs的添加显著提高了生菜组织的叶绿素含量及抗氧化酶活性,显著降低了脂质过氧化产物丙二醛的积累,同时SeNPs通过参与调控生菜组织的抗氧化酶系统,缓解了NPs对生菜细胞造成的氧化应激,从而维持生菜的正常生长。因此,SeNPs可以作为一种潜在的缓解NPs植物毒害的调节剂,为应对纳米塑料污染提供新的思路和策略。

关键词(KeyWords): 纳米塑料;纳米硒;生菜;抗氧化酶;毒理效应
参考文献

[1] JIANG X, WANG T, JIANG M, et al. Assessment of plastic stocks and flows in China:1978-2017[J]. Resources,Conservation and Recycling, 2020, 161:104969.

[2] PADERVAND M, LICHTFOUSE E, ROBERT D, et al.Removal of microplastics from the environment. A review[J].Environmental Chemistry Letters, 2020, 18(3):807-828.

[3] WANG F, FENG X, LIU Y, et al. Micro(nano)plastics and terrestrial plants:Up-to-date knowledge on uptake,translocation, and phytotoxicity[J]. Resources, Conservation and Recycling, 2022, 185:106503.

[4] HUANG W, XIA X. Element cycling with micro(nano)plastics[J]. Science, 2024, 385(6712):933-935.

[5] ZHOU P, WANG L, GAO J, et al. Nanoplastic-plant interaction and implications for soil health[J]. Soil Use and Management, 2023, 39(1):13-42.

[6] JIANG M, WANG B, YE R, et al. Evidence and impacts of nanoplastic accumulation on crop grains[J]. Advanced Science,2022, 9(33):e2202336.

[7] JIANG M, LI S, LI H, et al. Reprogramming of microbial community in barley root endosphere and rhizosphere soil by polystyrene plastics with different particle sizes[J]. Science of the Total Environment, 2023, 866:161420.

[8]李鹏浩,李哲,王琼,等.不同粒径聚苯乙烯微塑料对黄粉虫的生物毒性研究[J].安全与环境工程,2023, 30(6):184-191.LI P H, LI Z, WANG Q, et al. Biotoxicity study of polystyrene microplastics of different particle sizes to the Tenebrio molitor[J]. Safety and Environmental Engineering,2023, 30(6):184-191.

[9] KUMAR R, MANNA C, PADHA S, et al. Micro(nano)plastics pollution and human health:How plastics can induce carcinogenesis to humans?[J]. Chemosphere, 2022, 298:134267.

[10]YE R, HUANG J, WANG Z, et al. Trace element selenium effectively alleviates intestinal diseases[J]. International Journal of Molecular Sciences, 2021, 22(21):11708.

[11]YIN H, QI Z, LI M, et al. Selenium forms and methods of application differentially modulate plant growth,photosynthesis, stress tolerance, selenium content and speciation in Oryza sativa L[J]. Ecotoxicology and Environmental Safety, 2019, 169:911-917.

[12]REYNOLDS R J B, PILON-SMITS E A H. Plant selenium hyperaccumulation-Ecological effects and potential implications for selenium cycling and community structure[J]. Biochimica et Biophysica Acta General Subjects, 2018, 1862(11):2372-2382.

[13]ELKELISH A A, SOLIMAN M H, ALHAITHLOUL H A,et al. Selenium protects wheat seedlings against salt stressmediated oxidative damage by up-regulating antioxidants and osmolytes metabolism[J]. Plant Physiology and Biochemistry,2019, 137:144-153.

[14]ULHASSAN Z, KHAN A R, SHETEIWY M S, et al.Selenium-mediated regulation of antioxidant defense system and improved heavy metals tolerance in plants[M]//AFTAB T,HAKEEM K R, eds. Antioxidant Defense in Plants.Singapore:Springer Nature, 2022:369-382.

[15]WU Z, YUAN L, SUN C, et al. Effects of selenite on the responses of lettuce(Lactuca sativa L.)to polystyrene nanoplastic stress[J]. Ecotoxicology and Environmental Safety,2023, 262:115138.

[16]TONG M, ZHAI K, DUAN Y, et al. Selenium alleviates the adverse effects of microplastics on kale by regulating photosynthesis, redox homeostasis, secondary metabolism and hormones[J]. Food Chemistry, 2024, 450:139349.

[17]KUMAR A, PRASAD K S. Role of nano-selenium in health and environment[J]. Journal of Biotechnology, 2021, 325:152-163.

[18]KHAN Z, THOUNAOJAM T C, CHOWDHURY D, et al.The role of selenium and nano selenium on physiological responses in plant:A review[J]. Plant Growth Regulation,2023, 100(2):409-433.

[19]RADY M M, DESOKY E S M, AHMED S M, et al. Foliar nourishment with nano-selenium dioxide promotes physiology,biochemistry, antioxidant defenses, and salt tolerance in phaseolus vulgaris[J]. Plants, 2021, 10(6):1189.

[20]ARULNATHAN N, KARUNAKARAN R, BALAKRISHNAN V, et al. Synthesis and characterization of nano selenium as feed supplement[J]. International Journal of Science, Environment and Technology, 2016, 5(4):2296-2300.

[21]LIN Z H, CHRIS WANG C R. Evidence on the sizedependent absorption spectral evolution of selenium nanoparticles[J]. Materials Chemistry and Physics, 2005, 92(2/3):591-594.

[22]BOUAICHA O, MIMMO T, TIZIANI R, et al.Microplastics make their way into the soil and rhizosphere:A review of the ecological consequences[J]. Rhizosphere, 2022,22:100542.

[23]吴佳妮,杨天志,连加攀,等.聚苯乙烯纳米塑料(PSNPs)对大豆(Glycine max)种子发芽和幼苗生长的影响[J].环境科学学报,2020, 40(12):4581-4589.WU J N, YANG T Z, LIAN J P, et al. Effects of polystyrene nanoplastics(PSNPs)on seed germination and seedling growth of soybean(Glycine max)[J]. Acta Scientiae Circumstantiae,2020, 40(12):4581-4589.

[24]ALIMI O S, FARNER BUDARZ J, HERNANDEZ L M, et al. Microplastics and nanoplastics in aquatic environments:Aggregation, deposition, and enhanced contaminant transport[J]. Environmental Science&Technology, 2018, 52(4):1704-1724.

[25]LIAN Y, SHI R, LIU J, et al. Effects of polystyrene,polyethylene, and polypropylene microplastics on the soilrhizosphere-plant system:Phytotoxicity, enzyme activity, and microbial community[J]. Journal of Hazardous Materials,2024, 465:133417.

[26]DECROS G, DUSSARRAT T, BALDET P, et al. Enzymebased kinetic modelling of ASC-GSH cycle during tomato fruit development reveals the importance of reducing power and ROS availability[J]. New Phytologist, 2023, 240(1):242-257.

[27]LI Y, ZHANG S, JIANG W, et al. Cadmium accumulation,activities of antioxidant enzymes, and malondialdehyde(MDA)content in Pistia stratiotes L[J]. Environmental Science and Pollution Research, 2013, 20(2):1117-1123.

[28]LIU Y, BEN Y, CHE R, et al. Uptake, transport and accumulation of micro-and nano-plastics in terrestrial plants and health risk associated with their transfer to food chain—A mini review[J]. Science of the Total Environment, 2023, 902:166045.

[29]LI J, ZHENG X, LIU X, et al. Effect and mechanism of microplastics exposure against microalgae:Photosynthesis and oxidative stress[J]. Science of the Total Environment, 2023,905:167017.

[30]LIU H, XIAO C, QIU T, et al. Selenium regulates antioxidant, photosynthesis, and cell permeability in plants under various abiotic stresses:A review[J]. Plants, 2022, 12(1):44.

[31]SALI A, ZEKA D, FETAHU S, et al. Selenium supply affects chlorophyll concentration and biomass production of maize(Zea mays L.)[J]. Die Bodenkultur:Journal of Land Management, Food and Environment, 2018, 69(4):249-255.

[32]HASANUZZAMAN M, BHUYAN M H M B, PARVIN K,et al. Regulation of ROS metabolism in plants under environmental stress:A review of recent experimental evidence[J]. International Journal of Molecular Sciences, 2020, 21(22):8695.

[33]BOBROVSKIKH A, ZUBAIROVA U, KOLODKIN A, et al. Subcellular compartmentalization of the plant antioxidant system:An integrated overview[J]. PeerJ, 2020, 8:e9451.

基本信息:

DOI:10.13578/j.cnki.issn.1671-1556.20240977

中图分类号:X171.5;X505

引用信息:

[1]马英雪,高已雯,段玉桦等.纳米硒缓解纳米塑料对生菜的毒理效应[J].安全与环境工程,2025,32(01):52-61.DOI:10.13578/j.cnki.issn.1671-1556.20240977.

基金信息:

检 索 高级检索

引用

GB/T 7714-2015 格式引文
MLA格式引文
APA格式引文