冯新斌, 史建波, 李平, 等. 我国汞污染研究与履约进展[J]. 中国科学院院刊, 2020, 35(11): 1344-1350 Feng X B, Shi J B, Li P, et al. Progress of mercury pollution research and implementation of Minamata convention in China[J]. China Academic Journal Publishing House, 2020, 35(11): 1344-1350(in Chinese)
李强, 郭飞, 莫测辉, 等. 贵州省环境中汞污染现状与分布特征[J]. 生态科学, 2013, 32(2): 235-240 Li Q, Guo F, Mo C H, et al. A study of distribution of environmental mercury in Guizhou Province[J]. Ecological Science, 2013, 32(2): 235-240(in Chinese)
Xu Z D, Lu Q H, Xu X H, et al. Multi-pathway mercury health risk assessment, categorization and prioritization in an abandoned mercury mining area: A pilot study for implementation of the Minamata convention[J]. Chemosphere, 2020, 260: 127582
赵金璇, 李玉锋, 梁佳, 等. 贵阳和万山地区部分蔬菜中的重金属含量及其健康风险[J]. 生态毒理学报, 2009, 4(3): 392-398 Zhao J X, Li Y F, Liang J, et al. Contents of heavy metals in some vegetables and their potential risks to human health in Guiyang and Wanshan areas[J]. Asian Journal of Ecotoxicology, 2009, 4(3): 392-398(in Chinese)
Wang Q F, Li Z G, Feng X B, et al. Mercury accumulation in vegetable Houttuynia cordata Thunb. from two different geological areas in Southwest China and implications for human consumption[J]. Scientific Reports, 2021, 11(1): 52
Ranieri E, Moustakas K, Barbafieri M, et al. Phytoextraction technologies for mercury- and chromium-contaminated soil: A review[J]. Journal of Chemical Technology & Biotechnology, 2020, 95(2): 317-327
洪纬. 食物、药物和景物: 鱼腥草在传统中国的利用[J]. 中国农史, 2016, 35(6): 111-120 Hong W. Food, drug and landscape: Shaping the history of Houttuynia cordata Thunb in traditional China[J]. Agricultural History of China, 2016, 35(6): 111-120(in Chinese)
赵徐立. 鱼腥草GAP高产栽培技术[J]. 云南农业, 2012(1): 50 Zhao X L. GAP high-yield cultivation techniques of Houttuynia cordata Thunb[J]. Yunnan Agriculture, 2012(1 ): 50(in Chinese)
李铮铮, 伍钧, 唐亚, 等. 铅、锌及其交互作用对鱼腥草(Houttuynia cordata)叶绿素含量及抗氧化酶系统的影响[J]. 生态学报, 2007, 27(12): 5441-5446 Li Z Z, Wu J, Tang Y, et al. Effect of Pb, Zn and their interactions on the chlorophyll content and antioxidant enzyme systems of Houttuynia cordata Thunb[J]. Acta Ecologica Sinica, 2007, 27(12): 5441-5446(in Chinese)
吴正卓, 刘桂华, 范成五, 等. 镉胁迫下不同生态型鱼腥草生长及生理特性的响应[J]. 西南农业学报, 2022, 35(2): 359-365 Wu Z Z, Liu G H, Fan C W, et al. Effects of cadmium stress on growth and physiological characteristics of different ecotype Houttuynia casdata Thunbs[J]. Southwest China Journal of Agricultural Sciences, 2022, 35(2): 359-365(in Chinese)
Wang Q F, Li Z G, Feng X B, et al. Vegetable Houttuynia cordata Thunb as an important human mercury exposure route in Kaiyang County, Guizhou Province, SW China[J]. Ecotoxicology and Environmental Safety, 2020, 197: 110575
中华人民共和国国家卫生健康委员会, 中华人民共和国国家市场监督管理总局. 食品安全国家标准食品中污染物限量: GB 2762—2022[S]. 北京: 中国标准出版社, 2022
Chen J, Yang Z M. Mercury toxicity, molecular response and tolerance in higher plants[J]. Biometals, 2012, 25(5): 847-857
秦永田, 陈黎霞, 汤继华, 等. 玉米苗期根汞胁迫响应中miRNA的鉴定及初步验证[J]. 作物学报, 2022, 48(12): 3018-3028 Qin Y T, Chen L X, Tang J H, et al. Identification and validation of miRNA involved in mercury stress response in maize seedling roots[J]. Acta Agronomica Sinica, 2022, 48(12): 3018-3028(in Chinese)
杜建雄, 任尉香, 袁涓文, 等. 汞胁迫对4个草坪草、牧草品种幼苗生长和生理的影响[J]. 草地学报, 2021, 29(8): 1712-1718 Du J X, Ren W X, Yuan J W, et al. Effects of mercury stress on seedling growth and physiology of four turfgrass and forage varieties[J]. Acta Agrestia Sinica, 2021, 29(8): 1712-1718(in Chinese)
中华人民共和国生态环境部, 中华人民共和国国家市场监督管理总局. 土壤环境质量农用地土壤污染风险管控标准: GB 15618—2018[S]. 北京: 中国标准出版社, 2018
孙睿婕. 贵州某汞矿区下游土壤: 农作物系统汞污染现状及风险评估[D]. 呼和浩特: 内蒙古大学, 2018: 1-52 Sun R J. Present situation and risk assessment of mercury pollution in soil-crop system downstream of a mercury mining area in Guizhou[D]. Hohhot: Inner Mongolia University, 2018: 1 -52(in Chinese)
中华人民共和国农业部. 水果、蔬菜及其制品中叶绿素含量的测定分光光度法: NY/T 3082—2017[S]. 北京: 中国农业出版社, 2017
中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会. 蜂胶中总黄酮含量的测定方法分光光度比色法: GB/T 20574—2006[S]. 北京: 中国标准出版社, 2007
Cobbett C S. Phytochelatins and their roles in heavy metal detoxification[J]. Plant Physiology, 2000, 123(3): 825-832
Cargnelutti D, Tabaldi L A, Spanevello R M, et al. Mercury toxicity induces oxidative stress in growing cucumber seedlings[J]. Chemosphere, 2006, 65(6): 999-1006
徐小蓉, 张习敏, 杨立昌, 等. 汞胁迫对蜈蚣草生理特性的影响[J]. 安徽农业科学, 2011, 39(24): 14772-14774 Xu X R, Zhang X M, Yang L C, et al. Effect of Hg2+ stress on physiological characteristics of Pteris vittata L.[J]. Journal of Anhui Agricultural Sciences, 2011, 39(24): 14772-14774(in Chinese)
Chen Y A, Chi W C, Huang T L, et al. Mercury-induced biochemical and proteomic changes in rice roots[J]. Plant Physiology and Biochemistry, 2012, 55: 23-32
Huang Y M, Li F B, Yi J C, et al. Transcriptomic and physio-biochemical features in rice (Oryza sativa L.) in response to mercury stress[J]. Chemosphere, 2022, 309(Pt 1): 136612
Guedes F R C M, Maia C F, Silva B R S D, et al. Exogenous 24-epibrassinolide stimulates root protection, and leaf antioxidant enzymes in lead stressed rice plants: Central roles to minimize Pb content and oxidative stress[J]. Environmental Pollution, 2021, 280: 116992
刘泽静, 薛生玲, 夏雪, 等. 鱼腥草不同部位生物活性物质和抗氧化能力分析[J]. 浙江农业学报, 2016, 28(6): 992-998 Liu Z J, Xue S L, Xia X, et al. Analysis of bioactive compounds and antioxidant capacities in Houttuynia cordata [J]. Acta Agriculturae Zhejiangensis, 2016, 28(6): 992-998(in Chinese)
Jia Y D, Li X Y, Liu Q, et al. Physiological and transcriptomic analyses reveal the roles of secondary metabolism in the adaptive responses of Stylosanthes to manganese toxicity[J]. BMC Genomics, 2020, 21(1): 861