[1] DING M, ZHANG L, ZHANG Z, et al. Heavy metal pollution characteristics and potential ecological risk assessment of surface soil in Dawen river basin[C]. IOP Conference Series: Earth and Environmental Science. IOP Publishing, 2019, 242(5): 052022.
[2] 顾继光, 林秋奇, 胡韧, 等. 土壤-植物系统中重金属污染的治理途径及其研究展望 [J]. 土壤通报, 2005, 36(1): 128-133. doi: 10.3321/j.issn:0564-3945.2005.01.036 GU J G, LIN Q Q, HU R, et al. Treatment approaches and research prospects of heavy metal pollution in soil-plant systems [J]. Soil Bulletin, 2005, 36(1): 128-133(in Chinese). doi: 10.3321/j.issn:0564-3945.2005.01.036
[3] 徐良将, 张明礼, 杨浩. 土壤重金属镉污染的生物修复技术研究进展 [J]. 南京师范大学学报(自然科学版), 2011, 34(1): 102-106. XU L J, ZHANG M L, YANG H. progress in bioremediation of soil heavy metal cadmium pollution [J]. Journal of Nanjing Normal University: Natural Science, 2011, 34(1): 102-106(in Chinese).
[4] 黄益宗, 郝晓伟, 雷鸣, 等. 重金属污染土壤修复技术及其修复实践 [J]. 农业环境科学学报, 2013, 3(3): 409-417. HUANG Y Z, HAO X W, LEI M, et al. Remediation technology and remediation practice of heavy metal contaminated soil [J]. Journal of Agro-Environmental Science, 2013, 3(3): 409-417(in Chinese).
[5] 刘仕翔, 黄益宗, 罗泽娇, 等. 外源褪黑素处理对镉胁迫下水稻种子萌发的影响 [J]. 农业环境科学学报, 2016, 35(6): 1034-1041. doi: 10.11654/jaes.2016.06.003 LIU S S, HUANG Y Z, LUO Z J, et al. Effects of exogenous melatonin treatment on rice seed germination under cadmium stress [J]. Journal of Agro-Environmental Sciences, 2016, 35(6): 1034-1041(in Chinese). doi: 10.11654/jaes.2016.06.003
[6] 胡雪芳, 田志清, 梁亮, 等. 不同改良剂对铅镉污染农田水稻重金属积累和产量影响的比较分析 [J]. 环境科学, 2008, 39(7): 3409-3417. HU X F, TIAN Z Q, LIANG L, et al. Comparative analysis of the effects of different modifiers on heavy metal accumulation and yield of rice in fields polluted by lead and cadmium [J]. Environmental Science, 2008, 39(7): 3409-3417(in Chinese).
[7] YU H, WANG J, FANG W, et al. Cadmium accumulation in different rice cultivars and screening for pollution-safe cultivars of rice [J]. Science of the Total Environment, 2006, 370(2/3): 302-309. doi: 10.1016/j.scitotenv.2006.06.013
[8] 王丙烁, 黄益宗, 李娟, 等. 镉胁迫下不同改良剂对水稻种子萌发和镉吸收积累的影响 [J]. 农业环境科学学报, 2019, 38(4): 746-755. WANG P S, HUANG Y Z, LI J, et al. Effects of different modifiers on rice seed germination and cadmium uptake and accumulation under cadmium stress [J]. Journal of Agro-Environmental Sciences, 2019, 38(4): 746-755(in Chinese).
[9] TAJTI J, JANDA T, MAJLÁTH I, et al. Comparative study on the effects of putrescine and spermidine pre-treatment on cadmium stress in wheat [J]. Ecotoxicology and Environmental Safety, 2018, 148: 546-554. doi: 10.1016/j.ecoenv.2017.10.068
[10] 蒋航, 黄益宗, 杨秀文, 等. 外源褪黑素对As3+胁迫下水稻种子萌发的影响 [J]. 生态毒理学报, 2018, 13(1): 229-240. doi: 10.7524/AJE.1673-5897.20170112008 JIANG H, HUANG Y Z, YANG X W, et al. Effects of exogenous melatonin on rice seed germination under As3+ stress [J]. Journal of Ecological Toxicology, 2018, 13(1): 229-240(in Chinese). doi: 10.7524/AJE.1673-5897.20170112008
[11] 韩廿, 黄益宗, 魏祥东, 等. 螯合剂对油葵修复镉砷复合污染土壤的影响 [J]. 农业环境科学学报, 2019, 38(8): 1891-1900. doi: 10.11654/jaes.2019-0568 HAN N, HUANG Y Z, WEI X D, et al. Effects of chelating agents on remediation of cadmium and arsenic contaminated soil [J]. Journal of Agro-Environmental Science, 2019, 38(8): 1891-1900(in Chinese). doi: 10.11654/jaes.2019-0568
[12] RIDER J E, HACKER A, MACKINTOSH C A, et al. Spermine and spermidine mediate protection against oxidative damage caused by hydrogen peroxide [J]. Amino Acids, 2007, 33(2): 231-240. doi: 10.1007/s00726-007-0513-4
[13] PEGG A E. The function of spermine [J]. IUBMB Life, 2014, 66(1): 8-18. doi: 10.1002/iub.1237
[14] 杨安中, 许俊芝. 亚精胺浸种对水稻种子萌发及秧苗生长的影响 [J]. 安徽技术师范学院学报, 2002(1): 39-42. YANG A Z, XU J Z. Effects of spermidine impregnation on rice seed germination and seedling growth [J]. Journal of Anhui Technical Normal University, 2002(1): 39-42(in Chinese).
[15] ALCÁZAR R, MARCO F, CUEVAS J C, et al. Involvement of polyamines in plant response to abiotic stress [J]. Biotechnology letters, 2006, 28(23): 1867-1876. doi: 10.1007/s10529-006-9179-3
[16] PARVIN S, LEE O R, SATHIYARAJ G, et al. Spermidine alleviates the growth of saline-stressed ginseng seedlings through antioxidative defense system [J]. Gene, 2014, 537(1): 70-78. doi: 10.1016/j.gene.2013.12.021
[17] GHOSH N, DAS S P, MANDAL C, et al. Variations of antioxidative responses in two rice cultivars with polyamine treatment under salinity stress [J]. Physiology and Molecular Biology of Plants, 2012, 18(4): 301-313. doi: 10.1007/s12298-012-0124-8
[18] ZHAO H, YANG H. Exogenous polyamines alleviate the lipid peroxidation induced by cadmium chloride stress in Malus hupehensis Rehd [J]. Scientia Horticulturae, 2008, 116(4): 440-447.
[19] YANG H Y, SHI G X, QIAO X Q, et al. Exogenous spermidine and spermine enhance cadmium tolerance of Potamogeton malaianus [J]. Russian Journal of Plant Physiology, 2011, 58(4): 622-628. doi: 10.1134/S1021443711040261
[20] 许昊, 苏锋, 高孝美. 砷和草甘膦复合污染对水稻种子萌发的影响 [J]. 湖北农业科学, 2015, 54(22): 5540-5543. XU H, SU F, GAO X M. effects of combined arsenic and glyphosate contamination on rice seed germination [J]. Hubei Agricultural Science, 2015, 54(22): 5540-5543(in Chinese).
[21] YANG X, BALIGAR V C, MARTENS D C, et al. Cadmium effects on influx and transport of mineral nutrients in plant species [J]. Journal of Plant Nutrition, 1996, 19(3/4): 643-656. doi: 10.1080/01904169609365148
[22] ALDESUQUY H, HAROUN S, ABO-HAMED S, et al. Involvement of spermine and spermidine in the control of productivity and biochemical aspects of yielded grains of wheat plants irrigated with waste water [J]. Egyptian Journal of Basic and Applied Sciences, 2014, 1(1): 16-28. doi: 10.1016/j.ejbas.2013.12.001
[23] 陈镔, 谭淑端, 董方旭, 等. 重金属对植物的毒害及植物对其毒害的解毒机制 [J]. 江苏农业科学, 2019, 47(4): 42-46. CHEN B, TAN S D, DONG F X, et al. Heavy metal poisoning plants and plant the poisoning mechanism of detoxification [J]. Journal of Jiangsu Agricultural Science, 2019, 47(4): 42-46(in Chinese).
[24] LIN Y F, AARTS M G M. The molecular mechanism of zinc and cadmium stress response in plants [J]. Cellular and Molecular Life Sciences, 2012, 69(19): 3187-3206. doi: 10.1007/s00018-012-1089-z
[25] ESTERBAUER H, SCHAUR R J, ZOLLNER H. Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde, and related aldehydes [J]. Free Radic Biol Med, 1991, 11: 81-128. doi: 10.1016/0891-5849(91)90192-6
[26] ESTERBAUER H, CHEESEMAN K H. Determination of aldehydic lipid peroxidation products: malonaldehyde and 4-hydroxynonenal [J]. Methods Enzymol, 1990, 186: 407-421. doi: 10.1016/0076-6879(90)86134-H
[27] HASSAN M J, ZHANG G, WU F, et al. Zinc alleviates growth inhibition and oxidative stress caused by cadmium in rice [J]. Journal of Plant Nutrition and Soil Science, 2005, 168(2): 255-261. doi: 10.1002/jpln.200420403
[28] GUO B, LIANG Y C, ZHU Y G, et al. Role of salicylic acid in alleviating oxidative damage in rice roots (Oryza sativa) subjected to cadmium stress [J]. Environmental Pollution, 2007, 147(3): 743-749. doi: 10.1016/j.envpol.2006.09.007
[29] XU X, SHI G, DING C, et al. Regulation of exogenous spermidine on the reactive oxygen species level and polyamine metabolism in Alternanthera philoxeroides (Mart.) Griseb under copper stress [J]. Plant Growth Regulation, 2011, 63(3): 251-258. doi: 10.1007/s10725-010-9522-5
[30] TALUKDAR D. Exogenous calcium alleviates the impact of cadmium-induced oxidative stress in Lens culinaris Medic. seedlings through modulation of antioxidant enzyme activities [J]. Journal of Crop Science and Biotechnology, 2012, 15(4): 325-334. doi: 10.1007/s12892-012-0065-3
[31] HASSAN M J, SHAO G, ZHANG G. Influence of cadmium toxicity on growth and antioxidant enzyme activity in rice cultivars with different grain cadmium accumulation [J]. Journal of Plant Nutrition, 2005, 28(7): 1259-1270. doi: 10.1081/PLN-200063298
[32] KIRKMAN H N, GAETANI G F. Catalase: A tetrameric enzyme with four tightly bound molecules of NADPH [J]. Proceedings of the National Academy of Sciences, 1984, 81(14): 4343-4347. doi: 10.1073/pnas.81.14.4343
[33] RANIERI A, PETACCO F, CASTAGNA A, et al. Redox state and peroxidase system in sunflower plants exposed to ozone [J]. Plant Science, 2000, 159(1): 159-167. doi: 10.1016/S0168-9452(00)00352-6
[34] BOWLER C, MONTAGU M, INZE D. Superoxide dismutase and stress tolerance [J]. Annual Review of Plant Biology, 1992, 43(1): 83-116. doi: 10.1146/annurev.pp.43.060192.000503
[35] BHATLA S C, LAL M A. Plant physiology, development and metabolism[M]. Berlin:Springer, 2018.