[1] Zhang A X, Nie Y N, Ji H B, et al . Spatial distribution, fractionation and pollution assessment of heavy metals in Wanzhuang Gold Mining field in upstream part of water conservation area of Beijing, China. Journal of Agro-Environment Science, 2014, 33(12): 2321-2328. 张爱星, 聂义宁, 季宏兵, 等. 北京市水源涵养区上游万庄金矿田土壤重金属空间分布、形态特征及污染评价. 农业环境科学学报, 2014, 33(12): 2321-2328. [2] Bou Kheir R, Shomar B, Greve M B, et al . On the quantitative relationships between environmental parameters and heavy metals pollution in Mediterranean soils using GIS regression-trees: The case study of Lebanon. Journal of Geochemical Exploration, 2014, 147(6): 250-259. [3] Cho Y S, Bolick J A, Butcher D J. Phytoremediation of lead with green onions ( Allium fistulosum ) and uptake of arsenic compounds by moonlight ferns ( Pteris cretica cv Mayii). Microchemical Journal, 2009, 91(1): 6-8. [4] Wang L, Liu R, Li W H, et al . Effects of stresses of different heavy metals on growth and chlorophy Ⅱ fluorescence of Scendesmus obliquus . Journal of Ecology and Rural Environment, 2015, 31(5): 743-747. 王琳, 刘冉, 李文慧, 等. 不同重金属离子胁迫对斜生栅藻生长及叶绿素荧光特性的影响. 生态与农村环境学报, 2015, 31(5): 743-747. [5] Xu Z R, Chen S P, Xu Z T, et al . The characters of bahia grass and its potential application. Prataculture & Animal Husbandry, 2014, 29(3): 25-33. 许泽荣, 陈世平, 徐泽堂, 等. 百喜草的特性与应用前景. 草业与畜牧, 2014, 29(3): 25-33. [6] Xia H P, Su W S. Resistance to and uptake of heavy metals by Vetiveria zizanioides and Paspalum notatum from lead/zinc mine tailings. Acta Ecologica Sinica, 2001, 21(7): 1121-1129. 夏汉平, 束文圣. 香根草和百喜草对铅锌尾矿重金属的抗性与吸收差异研究. 生态学报, 2001, 21(7): 1121-1129. [7] Pang Y J. Cu Tolerance and Accumulation of Festuca arundinacea , Paspalum notatum and Cynodon dactylon under the Stress of Cu and Cu-Zn[D]. Chengdu: Sichuan Normal University, 2009. 庞玉建. 狗牙根、苇状羊茅和百喜草对Cu及Cu-Zn复合污染的耐性和积累性研究[D]. 成都: 四川师范大学, 2009. [8] Hou X L, Liu A Q, Cai L P, et al . Effects of Pb stress on growth and Pb accumulation of Paspalum notatum . Journal of Agro-Environment Science, 2014, 33(12): 2303-2308. 侯晓龙, 刘爱琴, 蔡丽平, 等. Pb 胁迫对百喜草生长和Pb 积累的影响. 农业环境科学学报, 2014, 33(12): 2303-2308. [9] Long J, Huang C Y, Teng Y, et al . Resistance to heavy metals by several forage grass and its microbial effects from copper mine tailings. Acta Scientiae Circumstantiate, 2004, 24(1): 159-164. 龙健, 黄昌勇, 滕应, 等. 几种牧草对铜尾矿重金属的抗性及其微生物效应. 环境科学学报, 2004, 24(1): 159-164. [10] GB15618-1995, Environmental Quality Standard for Soils[S]. Beijing: China Standards Press, 1995. GB15618-1995, 土壤环境质量标准[S]. 北京: 中国标准出版社, 1995. [11] Zhu G L, Zhong H W, Zhang A Q. Plant Physiology Experiments[M]. Beijing: Peking University Press, 1990: 245-248. 朱广廉, 钟海文, 张爱琴. 植物生理学实验[M]. 北京: 北京大学出版社, 1990: 245-248. [12] Zhang Z L. Experimental Instruction of Plant Physiology[M]. Second Edition. Beijing: China Higher Education Press, 1990: 154-155. 张志良. 植物生理学实验指导[M]. 第二版. 北京: 高等教育出版社, 1990: 154-155. [13] Li H S. Principles and Techniques of Plant Physiology and Biochemistry Experiment[M]. Beijing: China Higher Education Press, 2000: 175-177. 李合生. 植物生理生化实验原理和技术[M]. 北京: 高等教育出版社, 2000: 175-177. [14] Martínez-Fernández D, Walker D J, Romero-Espinar P, et al . Physiological responses of Bituminaria bituminosa to heavy metals. Journal of Plant Physiology, 2011, 168(18): 2206-2211. [15] Li Z Y, Wu H, Tian X R, et al . Fluorescent characteristics of chlorophylls in Plagiomnium acutum under Cd and Pb stresses. Journal of Agro-Environment Science, 2014, 33(1): 49-56. 李朝阳, 吴昊, 田向荣, 等. Cd、Pb 胁迫下湿地匍灯藓( Plagiomnium acutum )叶绿素荧光特性研究. 农业环境科学学报, 2014, 33(1): 49-56. [16] Li Y Z, Liang Y L, Wang Q C. Influence of Pb on photosynthesis and chlorophyⅡfluorescence characteristics in Pyrus ussuriensis and Malus baccata . Journal of Northwest Forestry University, 2012, 27(5): 21-25. 李亚藏, 梁彦兰, 王庆成. 铅对山梨和山荆子光合作用和叶绿素荧光特性的影响. 西北林学院学报, 2012, 27(5): 21-25. [17] Feng P, Sun L, Shen X H, et al . Response and enrichment ability of perennial ryegrass under lead and cadmium stresses. Acta Prataculturae Sinica, 2016, 25(1): 153-162. 冯鹏, 孙力, 申晓慧, 等. 多年生黑麦草对Pb、Cd胁迫的响应及富集能力研究. 草业学报, 2016, 25(1): 153-162. [18] Liu D L, Yang J Q, Liu Z M, et al . Effects of cadmium and lead stress of physiological characters of Poa pratensis seedings. Pratacultural Science, 2015, 32(2): 224-230. 刘大林, 杨俊俏, 刘兆明, 等. 镉、铅胁迫对草地早熟禾幼苗生理的影响. 草业科学, 2015, 32(2): 224-230. [19] Foyer C H, Descourvoeres P, Kunert K J. Protection against oxygen radicals: An important defense mechanism studied in transgenic plants. Plant Cell Environment, 1994, 17(5): 507-523. [20] Zhao G, Zou L, Peng L X, et al . Effects of lead stress on the physiological characteristics of Buckwheat. Jiangsu Agriculture Science, 2012, 40(7): 98-100. 赵钢, 邹亮, 彭镰心, 等. 铅胁迫对苦荞生理特性的影响. 江苏农业科学, 2012, 40(7): 98-100. [21] Zhu Q H, Xia H X. Effects of lead stress on antioxidant enzyme system and chlorophyⅡ content of Pteris vittata . Guizhou Agricultural Science, 2012, 40(4): 56-58. 朱启红, 夏红霞. 铅胁迫对蜈蚣草抗氧化酶系统和叶绿素含量的影响. 贵州农业科学, 2012, 40(4): 56-58. |