任继凯, 陈清朗, 陈灵芝, 等. 土壤中镉、铅、锌及其相互作用对作物的影响[J]. 植物生态学与地植物学丛刊, 1982, 6(4):320-329
Ren J K, Chen Q L, Chen L Z, et al. The effect of cadmium, lead, zinc in soil and their interaction on crop plants[J]. Chinese Journal of Plant Ecology, 1982, 6(4):320-329(in Chinese)
|
陈怀满. 土壤-植物系统中的重金属污染[M]. 北京:科学出版社, 1996:74-83
|
简敏菲, 汪斯琛, 余厚平, 等. Cd2+、Cu2+胁迫对黑藻(Hydrilla verticillata)的生长及光合荧光特性的影响[J]. 生态学报, 2016, 36(6):1719-1727
Jian M F, Wang S C, Yu H P, et al. Influence of Cd2+ or Cu2+ stress on the growth and photosynthetic fluorescence characteristics of Hydrilla verticillata[J]. Acta Ecologica Sinica, 2016, 36(6):1719-1727(in Chinese)
|
Bunluesin S, Kruatrachue M, Pokethitiyook P, et al. Batch and continuous packed column studies of cadmium biosorption by Hydrilla verticillata biomass[J]. Journal of Bioscience and Bioengineering, 2007, 103(6):509-513
|
陈国梁, 林清. 不同沉水植物对Cu, Pb, Cd, Zn元素吸收积累差异及规律研究[J]. 环境科技, 2009, 22(1):9-12
, 16 Chen G L, Lin Q. Research on accumulation of Cu, Pb, Cd, Zn in different submerged plants[J]. Environmental Science and Technology, 2009, 22(1):9-12, 16(in Chinese)
|
张连凯, 覃小群, 黄奇波, 等. 岩溶区矿山污染地下水的水生植物修复初步研究[J]. 中国岩溶, 2017, 36(5):743-750
Zhang L K, Qin X Q, Huang Q B, et al. Aquatic plants bioremediation to groundwater contaminated by mines in Karst areas[J]. Carsologica Sinica, 2017, 36(5):743-750(in Chinese)
|
焦轶男, 朱宏. 黑藻(Hydrilla verticillata)对重金属Cd2+的积累及生理响应[J]. 中国农学通报, 2014, 30(5):249-253
Jiao Y N, Zhu H. Physiological responses of Hydrilla verticillata to cadmium and cadmium bioaccumulation[J]. Chinese Agricultural Science Bulletin, 2014, 30(5):249-253(in Chinese)
|
林海, 陈思, 董颖博, 等. 黑藻、狐尾藻对重金属铅、镉、铬、钒污染水体的修复[J]. 中国有色金属学报, 2017, 27(1):178-186
Lin H, Chen S, Dong Y B, et al. Phytoremediation on heavy metal-polluted water of Pb, Cd, Cr and V by Hydrilla verticillata and Myriophyllum verticillatum[J]. The Chinese Journal of Nonferrous Metals, 2017, 27(1):178-186(in Chinese)
|
高海荣, 陈秀丽, 赵爱娟, 等. 5种沉水植物对重金属富集能力的对比研究[J]. 环境保护科学, 2016, 42(4):101-105
Gao H R, Chen X L, Zhao A J, et al. Comparison of heavy metal accumulation by five submerged macrophytes[J]. Environmental Protection Science, 2016, 42(4):101-105(in Chinese)
|
谢佩君, 李铭红, 晏丽蓉, 等. 三种沉水植物对Cu、Pb复合污染底泥的修复效果[J]. 农业环境科学学报, 2016, 35(4):757-763
Xie P J, Li M H, Yan L R, et al. Remediation of Cu and Pb co-polluted sediments by three submerged plants[J]. Journal of Agro-Environment Science, 2016, 35(4):757-763(in Chinese)
|
Wang C, Zhang S H, Wang P F, et al. Effects of ammonium on the antioxidative response in Hydrilla verticillata (L. f.) Royle plants[J]. Ecotoxicology and Environmental Safety, 2010, 73(2):189-195
|
Yan S, Zhou Q X. Toxic effects of Hydrilla verticillata exposed to toluene, ethylbenzene and xylene and safety assessment for protecting aquatic macrophytes[J]. Chemosphere, 2011, 85(6):1088-1094
|
Nicholson J K, Lindon J C, Holmes E. ‘Metabonomics’:Understanding the metabolic responses of living systems to pathophysiological stimuli via multivariate statistical analysis of biological NMR spectroscopic data[J]. Xenobiotica, 1999, 29(11):1181-1189
|
Nicholson J K, Connelly J, Lindon J C, et al. Metabonomics:A platform for studying drug toxicity and gene function[J]. Nature Reviews Drug Discovery, 2002, 1(2):153-161
|
Zheng P, Gao H C, Li Q, et al. Plasma metabonomics as a novel diagnostic approach for major depressive disorder[J]. Journal of Proteome Research, 2012, 11(3):1741-1748
|
Jiménez B, Montoliu C, MacIntyre D A, et al. Serum metabolic signature of minimal hepatic encephalopathy by 1H-nuclear magnetic resonance[J]. Journal of Proteome Research, 2010, 9(10):5180-5187
|
赵丽娟. 代谢组学技术研究氯磺隆和镉对玉米幼苗和菠菜代谢的影响[D]. 太原:山西大学, 2016:8-10 Zhao L J. Changes in metabolites of maize seedlings and Spinacia oleracea L. under chlorsulfuron and cadmium stress, measured by metabonomics technology[D]. Taiyuan:Shanxi University, 2016:8
-10(in Chinese)
|
李英帅. 应用代谢组学技术进行中医药研究探讨[J]. 安徽中医学院学报, 2008, 27(6):1-5
Li Y S. Discussion on the application of metabonomics technology in traditional Chinese medicine research[J]. Journal of Anhui Traditional Chinese Medical College, 2008, 27(6):1-5(in Chinese)
|
耿柠波, 张海军, 王菲迪, 等. 代谢组学技术在环境毒理学研究中的应用[J]. 生态毒理学报, 2016, 11(3):26-35
Geng N B, Zhang H J, Wang F D, et al. A review on the application of metabonomic approaches in environmental toxicology[J]. Asian Journal of Ecotoxicology, 2016, 11(3):26-35(in Chinese)
|
高艳. 重金属Pb2+胁迫对轮叶黑藻毒性效应研究[D]. 重庆:西南大学, 2017:13-14 Gao Y. The toxic effects of heavy metal Pb2+ stress on Hydrilla verticillata[D]. Chongqing:Southwest University, 2017
:13-14(in Chinese)
|
Lankadurai B P, Nagato E G, Simpson M J. Environmental metabolomics:An emerging approach to study organism responses to environmental stressors[J]. Environmental Reviews, 2013, 21(3):180-205
|
Viant M R, Bearden D W, Bundy J G, et al. International NMR-based environmental metabolomics intercomparison exercise[J]. Environmental Science & Technology, 2009, 43(1):219-225
|
Simpson M J, McKelvie J R. Environmental metabolomics:New insights into earthworm ecotoxicity and contaminant bioavailability in soil[J]. Analytical and Bioanalytical Chemistry, 2009, 394(1):137-149
|
Ruiz J M, Bretones G, Baghour M, et al. Relationship between boron and phenolic metabolism in tobacco leaves[J]. Phytochemistry, 1998, 48(2):269-272
|
Usadel B, Bläsing O E, Gibon Y, et al. Multilevel genomic analysis of the response of transcripts, enzyme activities and metabolites in Arabidopsis rosettes to a progressive decrease of temperature in the non-freezing range[J]. Plant, Cell & Environment, 2008, 31(4):518-547
|
Liu D, Islam E, Li T Q, et al. Comparison of synthetic chelators and low molecular weight organic acids in enhancing phytoextraction of heavy metals by two ecotypes of Sedum alfredii Hance[J]. Journal of Hazardous Materials, 2008, 153(1-2):114-122
|
陈玲玲. 敖汉苜蓿小花与种子响应硼胁迫的蛋白质组学与代谢组学分析[D]. 北京:中国农业大学, 2017:4-5 Chen L L. Proteomic and metabolomics analysis of flowers and seeds of Medicago sativa L.Cv. "Aohan" response to boron stress[D]. Beijing:China Agricultural University, 2017:4
-5(in Chinese)
|
罗庆. 镉、铅胁迫下东南景天根系分泌物的代谢组学研究[D]. 沈阳:东北大学, 2016:136-138 Luo Q. Metabolomics study on root exudates of Sedum alfredii under Cd and Pb stress[D]. Shenyang:Northeastern University, 2016:136
-138(in Chinese)
|
徐超. 脯氨酸与重金属耐性和富集的研究进展[J]. 中国资源综合利用, 2018, 36(2):80-83
Xu C. A review of amino acid in heavy metal tolerance and accumulation[J]. China Resources Comprehensive Utilization, 2018, 36(2):80-83(in Chinese)
|
王珊珊. 栅藻对重金属离子的富集及其机理的研究[D]. 福州:福建师范大学, 2013:49-52 Wang S S. Study on the enrichment for heavy metals by Scenedesmus sp. and its adsorption mechanisms[D]. Fuzhou:Fujian Normal University, 2013:49
-52(in Chinese)
|
高慧兵. 铅锌胁迫对蓖麻开花生理的影响[D]. 长沙:中南林业科技大学, 2019:39-41 Gao H B. Affect of Lead&Zinc stress on flowering physiology of Ricinus communis L.[D]. Changsha:Central South University of Forestry & Technology, 2019:39
-41(in Chinese)
|
郭晓音, 严重玲, 叶彬彬. 镉锌复合胁迫对秋茄幼苗渗透调节物质的影响[J]. 应用与环境生物学报, 2009, 15(3):308-312
Guo X Y, Yan C L, Ye B B. Effect of Cd-Zn combined stress on contents of osmotic substances in Kandelia candel (L.) Druce seedlings[J]. Chinese Journal of Applied & Environmental Biology, 2009, 15(3):308-312(in Chinese)
|