[1]张彦威,张军,徐冉,等.籽粒有毒重金属低富集大豆品种筛选及与环境作用效应分析[J].大豆科学,2019,38(06):839-846.[doi:10.11861/j.issn.1000-9841.2019.06.0839]
 ZHANG Yan-wei,ZHANG Jun,XU Ran,et al.Screening of Low Enriched Soybean Varieties with Toxic Heavy Metals and the Interaction with the Environment[J].Soybean Science,2019,38(06):839-846.[doi:10.11861/j.issn.1000-9841.2019.06.0839]
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籽粒有毒重金属低富集大豆品种筛选及与环境作用效应分析

参考文献/References:

[1]Wei B, Yang L. A review of heavy metal contaminations in urban soils, urban road dusts and agricultural soils from China[J]. Microchemical Journal, 2010, 94(2):99-107.

[2]Li Z Y, Ma Z W, Kuijp T J V D, et al. A review of soil heavy metal pollution from mines in China: Pollution and health risk assessment[J]. Science of the Total Environment, 2014, 468-469:843-853.
[3]陈学永,张爱华. 土壤重金属污染及防治方法研究综述[J]. 污染防治技术, 2013,26(3):41-44. (Chen X Y, Zhang A H. Review of studies on soil heavy metal pollution and its control methods[J]. Pollution Control Technology, 2013,26(3):41-44.)[4]Solgi E, Esmaili-Sari A, Riyahi-Bakhtiari A, et al. Soil contamination of metals in the three industrial estates, Arak, Iran[J]. Bulletin of Environmental Contamination & Toxicology, 2012, 88(88):634-638.
[5]陈卫平, 杨阳, 谢天, 等. 中国农田土壤重金属污染防治挑战与对策[J].土壤学报, 2018, 55(2):261-272. (Chen W P, Yang Y, Xie T, et al. Challenges and countermeasures for heavy metal pollution control in farmlands of China[J]. Acta Pedologica Sinica, 2018, 55(2): 261-272.)
[6]葛方度. 第一个重金属污染综合防治“十二五”规划诞生[J]. 西部资源, 2011, 2: 17. (Ge F D. The birth of first comprehensive prevention and control of heavy metal pollution in the twelfth five-year plan[J]. Western Resources, 2011, 2: 17.)
[7]樊霆,叶文玲,陈海燕,等. 农田土壤重金属污染状况及修复技术研究[J]. 生态环境学报, 2013, 22(10): 1727-1736. (Fan T, Ye W L, Chen H Y, et al. Review oncontamination and remediation technology of heavy metal in agricultural soil[J]. Ecology and Environmental Sciences, 2013, 22(10):1727-1736.)
[8]Wahid A, Arshad M, Farooq M. Cadmium phytotoxicity: Responses, mechanisms and mitigation mtrategies: A review[J].Organic Farming, Pest Control and Remediation of Soil Pollutants, 2009,1:371-403.
[9]Cao F, Wang N, Zhang M, et al. Comparative study of alleviating effects of GSH, Se and Zn under combined contamination of cadmium and chromium in rice(Oryza sativa)[J]. Biology of Metals, 2013, 26(2):297-308.[10]Liu X, Peng K, Wang A, et al. Cadmium accumulation and distribution in populations of Phytolacca americana L. and the role of transpiration[J]. Chemosphere, 2010, 78(9):1136-1141.[11]唐东民,伍钧,唐勇,等. 重金属胁迫对植物的毒害及其抗性机理研究进展[J]. 四川环境, 2008, 27(5): 79-83. (Tang D M, Wu J, Tang Y. The research advancein toxic hazardof heavy metal stresson plantand its resistance mechanism[J]. Sichuan Environment, 2008, 27(5): 79-83.)[12]Hossain M, Hasanuzzaman M, Fujita M. Up-regulation of antioxidant and glyoxalase systems by exogenous glycinebetaine and proline in mung bean confer tolerance to cadmium stress[J]. Physiology and Molecular Biology of Plants, 2010, 16(3):259-272.[13]Rascio N, Navariizzo F. Heavy metal hyperaccumulating plants: How and why do they do it? And what makes them so interesting[J]. Plant Science, 2011, 180(2):169-181.[14]Villiers F, Ducruix C, Hugouvieux V, et al. Investigating the plant response to cadmium exposure by proteomic and metabolomic approaches[J]. Proteomics, 2011, 11(9):1650-1663.[15]Nogawa K , Sakurai M , Ishizaki M , et al. Threshold limit values of the cadmium concentration in rice in the development of itai-itai disease using benchmark dose analysis[J]. Journal of Applied Toxicology, 2017, 37(8):962-966.[16]袁一傲. 镉对人体健康影响及中毒诊断[J]. 环境保护科学, 1992, 18(1): 8-15. (Yuan Y A. The influence of Cd on human health and the diagnosis of poisoning[J]. Environmental Protection Science, 1992, 18(1): 8-15.)[17]王盛吉. 日本熊本县水俣病公害问题研究(1956年-1959年)[D]. 上海: 华东师范大学, 2017. (Wang S J. A study for Kumamoto Minamata disease environmental hazards event in Japan (1956-1959)[D]. Shanghai: East China Normal University, 2017.)[18]栾云霞, 陆安祥, 王纪华. 镉米问题形成原因及对策思考[J]. 农产品质量与安全, 2013, 6: 49-51. (Luan Y X, Lu A X, Wang J H. Causes and countermeasures of cadmium rice problem[J]. Quality and Safety of Agro-Products, 2013, 6: 49-51.)[19]于德娥,刘云儒,刘玉梅,等. 2007-2011年中国儿童血铅水平及铅中毒率的分析[J]. 现代预防医学, 2015, 42(1): 66-68, 97. (Yu D E, Liu Y R, Liu Y M, et al. Blood lead levels and lead poisoning rates of children in China, 2007-2011[J]. Modern Preventive Medicine, 2015, 42(1): 66-68, 97.)[20]Wu F, Zhang G. Genotypic variation in kernel heavy metal concentrations in barley and as affected by soil factors[J]. Journal of Plant Nutrition, 2002, 25(6):1163-1173.[21]陈小华,沈根祥,白玉杰,等. 不同作物对土壤中Cd的富集特征及低累积品种筛选[J]. 环境科学, 2019(10):1-10. (Chen X H, Shen G X, Bai Y J, et al. Accumulation characteristics of Cd in different crops and screening of low-Cd accumulation cultivars[J]. Environmental Science, 2019(10):1-10.)[22]陆美斌,陈志军,李为喜,等. 中国两大优势产区小麦重金属镉含量调查与膳食暴露评估[J]. 中国农业科学, 2015, 48(19): 3866-3876. (Lu M B, Chen Z J, Li W X, et al. Survey and dietary exposure assessment of cadmium in wheat from two main wheat-producing regions in China[J]. Scientia Agricultura Sinica, 2015, 48(19): 3866-3876.)[23]褚卓栋,刘文菊,肖亚兵,等. 中草药种植区土壤及草药中重金属含量状况及评价[J]. 环境科学, 2010, 31(6): 1600-1607. (Chu Z D, Liu W J,Xiao Y B, et al. Survey and assessment of heavy metals in soils and herbal medicines from Chinese herbal medicine cultivated regions[J]. Environmental Science, 2010, 31(6): 1600-1607.)[24]程旺大,张国平,姚海根,等. 晚粳稻籽粒中As、Cd、Cr、Ni、Pb等重金属含量的基因型与环境效应及其稳定性[J]. 作物学报, 2006, 32(4): 573-579. (Cheng W D, Zhang G P, Yao H G, et al. Genotypic and environmental variation and their stability of As , Cr , Cd , Ni and Pb concentrations in the grains of Japonica Rice[J]. Acta Agronomica Sinica, 2006, 32(4): 573-579.)[25]Cao F B, Ahmed I, Zheng W, et al. Genotypic and environmental variation of heavy metal concentrations in rice grains[J]. Journal of Food Agriculture & Environment, 2013, 11(1):718-724.[26]曹方彬. 水稻重金属积累的品种与环境效应及调控技术研究[D]. 杭州: 浙江大学, 2014. (Cao F B. Cultivar and environmental effects and regulation of heavy metal accumulation in rice[D]. Hangzhou: Zhejiang University, 2014.)[27]赵云云,钟彩霞,方小龙,等.华南地区夏播大豆品种镉耐性及籽粒镉积累的差异[J].大豆科学, 2013,32(3):336-340. (Zhao Y Y, Zhong C X, Fang X L, et al. Genotypic differences in tolerance and accumulation to Cd among summer-sowing soybean varieties in south China[J]. Soybean Science, 2013,32(3):336-340.)[28]Arao T, Ae N, Sugiyama M, et al. Genotypic differences in cadmium uptake and distribution in soybeans[J]. Plant & Soil, 2003, 251(2):247-253. [29]Arao T, Ishikawa S. Genotypic differences in cadmium concentration and distribution of soybean and rice[J]. Japan Agricultural Research Quarterly, 2006, 40(1):21-30.[30]智杨. 大豆品种间镉铅低积累性与品质差异性的评估与相关性[D].沈阳: 东北大学,2015. (Zhi Y. Cadmium and lead low accumulation among Chinese soybean cultivars and the evaluation of quality difference and correlation[D]. Shenyang: Northeastern University, 2015.)[31]阳小凤,马淑梅,黄山,等.农田镉污染对大豆镉吸收特性及其产量的影响[J].作物研究, 2017,31(6):668-672. (Yang X F, Ma S M, Huang S, et al. Study on the cadmium absorptive character and yield variationof soybean in cadmium contaminated farmland[J]. Crop Research, 2017,31(6):668-672.)[32]焦位雄,杨虎德,冯丹妮,等. Cd Hg Pb 胁迫下不同作物可食部分重金属含量及累积特征研究[J]. 农业环境科学学报, 2017, 36(9): 1726-1733. (Jiao W X, Yang H D, Feng D N, et al. Heavy metal content and accumulation characteristics in the edible parts of different crops under Cd, Hg, and Pb stress[J]. Journal of Agro-Environment Science, 2017, 36(9): 1726-1733.)[33]Grant C A, Clarke J M, Duguid S, et al. Selection and breeding of plant cultivars to minimize cadmium accumulation[J]. Science of the Total Environment, 2008, 390(2-3):301-310.[34]Clarke J M, Mccaig T N, Depauw R M, et al. Strong field durum wheat[J]. Canadian Journal of Plant Science, 2005, 85(3):651-654.[35]Miller J F , Alkhatib K . Registration of two oilseed sunflower genetic stocks, SURES-1 and SURES-2 resistant to tribenuron herbicide[J]. Crop Science, 2006, 46(1):489-490.[36]周涛,苏小四,宋铁军,等. 三江平原典型农作区作物籽粒重金属健康风险评价[J].环境与健康杂志, 2018,35(10):896-899.(Zhou T, Su X S, Song T J, et al. Health risk assessment of heavy metals in seeds of different crops in typical agricultural area of Three River Plain[J]. Journal of Environment and Health, 2018,35(10):896-899.)[37]黄道友,朱奇宏,朱捍华,等.重金属污染耕地农业安全利用研究进展与展望[J].农业现代化研究,2018,39(6):1030-1043.(Huang D Y, Zhu Q H, Zhu H H, et al. Advances and prospects of safety agro-utilization of heavy metal contaminatedfarmland soil[J]. Research of Agricultural Modernization, 2018, 39(6): 1030-1043.)[38]费维新,荣松柏,初明光,等. 油菜种植修复重金属镉等污染土壤研究进展[J]. 安徽农业科学, 2018, 46(35): 19-22,93. (Fei W X, Rong S B, Chu M G, et al. Advances in phytoremediation of soil polluted by heavy metals such as cadmium by oilseed rape planting[J]. Journal of Anhui Agricultural Sciences, 2018, 46(35): 19-22, 93.)[39]金晓丹,罗栋源,马华菊,等. 广西某铅锌矿区土壤镉、铅、砷形态分布对水稻重金属的影响[J].西南农业学报, 2018, 31(6): 1293-1299. (Jin X D, Luo D Y, Ma H J, et al. Effect of soil Cd,Pb,As and their fractions distribution on corresponding heavy metals in rice surrounding lead-zinc mines in Guangxi province[J]. Southwest China Journal of Agricultural Sciences, 2018, 31(6): 1293-1299.)

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备注/Memo

基金项目:山东省农业科学院农业科技创新工程(CXGC2018D02);现代农业产业技术体系建设专项(CARS-04-CES16);山东省农业重大应用技术创新项目;山东省农业良种工程(2019LZGC004)。第一作者简介:张彦威(1987-),男,博士,助理研究员,主要从事大豆遗传育种研究。E-mail: 13854198480@163.com。通讯作者:徐冉(1967-),男,博士,研究员,主要从事大豆遗传育种研究。E-mail:soybeanxu@126.com。

更新日期/Last Update: 1900-01-01