[1]Lian Beibei,Zhao Shanshan,Wang Baiqun.Effect of Melatonin and Bacillus thuringiensis on Growth and Uranium Uptake of Brassica chinensis L Under Uranium Stress[J].Research of Soil and Water Conservation,2024,31(06):230-236.[doi:10.13869/j.cnki.rswc.2024.06.041]
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Effect of Melatonin and Bacillus thuringiensis on Growth and Uranium Uptake of Brassica chinensis L Under Uranium Stress

References:
[1]Gao N, Huang Z H, Liu H Q, et al. Advances on the toxicity of uranium to different organisms[J]. Chemosphere, 2019,237:124548.
[2]Lai J L, Liu Z W, Luo X G. A metabolomic, transcriptomic profiling, and mineral nutrient metabolism study of the phytotoxicity mechanism of uranium[J]. Journal of Hazardous Materials, 2020,386:121437.
[3]Zhang Y, Lai J L, Ji X H, et al. Unraveling response mechanism of photosynthetic metabolism and respiratory metabolism to uranium-exposure in Vicia faba[J]. Journal of Hazardous Materials, 2020,398:122997.
[4]Huang F Y, Dong F Q, Chen L, et al. Biochar-mediated remediation of uranium-contaminated soils: Evidence, mechanisms, and perspectives[J]. Biochar, 2024,6(1):16.
[5]Vanhoudt N, Vandenhove H, Horemans N, et al. Uranium induced effects on development and mineral nutrition of Arabidopsis thaliana[J]. Journal of Plant Nutrition, 2011,34(13):1940-1956.
[6]Xie L, Tang W L, Xie S B, et al. Effects of uranium(VI)stress on physiological feature and its accumulation of Chinese cabbage[J]. Advanced Materials Research, 2014,988:385-389.
[7]Lerner A B, Case J D, Takahashi Y, et al. Isolation of melatonin, the pineal gland factor that lightens melanocytes1[J]. Journal of the American Chemical Society, 1958,80(10):2587.
[8]Dubbels R, Reiter R J, Klenke E, et al. Melatonin in edible plants identified by radioimmunoassay and by high performance liquid chromatography-mass spectrometry[J]. Journal of Pineal Research, 1995,18(1):28-31.
[9]Hattori A, Migitaka H, Iigo M, et al. Identification of melatonin in plants and its effects on plasma melatonin levels and binding to melatonin receptors in vertebrates[J]. Biochemistry and Molecular Biology International, 1995,35(3):627-634.
[10]Luis Castañares J, Alberto Bouzo C. Effect of exogenous melatonin on seed germination and seedling growth in melon(Cucumis melo L.)under salt stress[J]. Horticultural Plant Journal, 2019,5(2):79-87.
[11]Altaf M A, Sharma N, Srivastava D, et al. Deciphering the melatonin-mediated response and signalling in the regulation of heavy metal stress in plants[J]. Planta, 2023,257(6):115.
[12]Mathivanan K, Chandirika J U, Mathimani T, et al. Production and functionality of exopolysaccharides in bacteria exposed to a toxic metal environment[J]. Ecotoxicology and Environmental Safety, 2021,208:111567.
[13]王焯,罗学刚,丁翰林,等.一种耐铀植物促生菌的筛选及促生特性研究[J].生物技术通报,2019,35(1):42-50.
Wang Z, Luo X G, Ding H L, et al. Isolation and identification of a uranium-resistant strain and effect of its characteristics on growth promoting[J]. Biotechnology Bulletin, 2019,35(1):42-50.
[14]鲍士旦.土壤农化分析[M]. 北京中国农业出版社,2005.
Bao S D. Soil and Agricultural Chemistry Analysis[M]. Beijing: China agriculture Press, 2005.
[15]苏正淑,张宪政.几种测定植物叶绿素含量的方法比较[J].植物生理学通讯,1989,25(5):77-78.
Su Z S, Zhang X Z. Comparison of several methods for determining chlorophyll content in plants[J]. Plant Physiology Communications, 1989,25(5):77-78.
[16]Andrade F R, da Silva G N, Guimarães K C, et al. Selenium protects rice plants from water deficit stress[J]. Ecotoxicology and Environmental Safety, 2018,164:562-570.
[17]Meng Y, Zhang L, Wang L Q, et al. Antioxidative enzymes activity and thiol metabolism in three leafy vegetables under Cd stress[J]. Ecotoxicology and Environmental Safety, 2019,173:214-224.
[18]吕怡颖,郑元仙,王继明,等.外源褪黑素对镉胁迫烟草幼苗的缓解效应[J].中国烟草科学,2023,44(4):25-32.
Lü Y Y, Zheng Y X, Wang J M, et al. Alleviative effect of exogenous melatonin on cadmium stress in tobacco seedlings[J]. Chinese Tobacco Science, 2023,44(4):25-32.
[19]Iqbal N, Tanzeem-Ul-Haq H S, Gull-E-Faran, et al. Soil amendments and foliar melatonin reduced Pb uptake, and oxidative stress, and improved spinach quality in Pb-contaminated soil[J]. Plants, 2023,12(9):1829.
[20]Sultana R, Islam S M N, Sultana T. Arsenic and other heavy metals resistant bacteria in rice ecosystem: Potential role in promoting plant growth and tolerance to heavy metal stress[J]. Environmental Technology & Innovation, 2023,31:103160.
[21]Hu Z W, Zhao C Y, Li Q, et al. Heavy metals can affect plant morphology and limit plant growth and photosynthesis processes[J]. Agronomy, 2023,13(10):2601.
[22]Al-Huqail A A, Khan M N, Ali H M, et al. Exogenous melatonin mitigates boron toxicity in wheat[J]. Ecotoxicology and Environmental Safety, 2020,201:110822.
[23]Desoky E S M, Merwad A R M, Semida W M, et al. Heavy metals-resistant bacteria(HM-RB): Potential bioremediators of heavy metals-stressed Spinacia oleracea plant[J]. Ecotoxicology and Environmental Safety, 2020,198:110685.
[24]Wu G, Chen X, Zheng T, et al. Effects of U on the growth, reactive oxygen metabolism and osmotic regulation in radish(Raphanus sativus L.)[J]. Environmental Science and Pollution Research, 2022,29(36):55081-55091.
[25]Ali S, Gill R A, Ulhassan Z, et al. Exogenously applied melatonin enhanced the tolerance of Brassica napus against cobalt toxicity by modulating antioxidant defense, osmotic adjustment, and expression of stress response genes[J]. Ecotoxicology and Environmental Safety, 2023,252:114624.
[26]Seleiman M F, Ali S, Refay Y, et al. Chromium resistant microbes and melatonin reduced Cr uptake and toxicity, improved physio-biochemical traits and yield of wheat in contaminated soil[J]. Chemosphere, 2020,250:126239.
[27]Hasan M K, Ahammed G J, Yin L L, et al. Melatonin mitigates cadmium phytotoxicity through modulation of phytochelatins biosynthesis, vacuolar sequestration, and antioxidant potential in Solanum lycopersicum L[J]. Frontiers in Plant Science, 2015,6:601.
[28]Tan W F, Guo F, Deng Q W, et al. The effects of Leifsonia sp. on bioavailability and immobilization mechanism of uranium in soil[J]. Journal of Soils and Sediments, 2020,20(3):1599-1608.
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