[1] 刘军, 周坤, 徐卫红, 等. 外源铁对不同番茄品种生理特性、镉积累及化学形态的影响[J]. 环境科学, 2013, 34(10): 4126-4131
[2] Ren J P, Li D F, Zhang L Y. Advances of the toxicology of cadmium[J]. Acta Zoonutrimenta Sinica, 2003, 15(1): 1-6
[3] 高芳, 林英杰, 张家蕾, 等. 镉胁迫对花生生理特性、产量和品质的影响[J].作物学报, 2011, 37(12): 2269-2276
[4] Wang K R. Tolerance of cultivated plants to cadmium and their utilization in polluted farmland soils[J]. Acta Biotechnologica, 2002, 21: 189-198
[5] 王凯荣, 张磊. 花生镉污染研究进展[J]. 应用生态学报, 2008, 19(12): 2757-2762
[6] 万书波. 中国花生栽培学[M]. 上海: 上海科学技术出版社, 2003
[7] Zuo Y M, Zhang F S, Li X L, et al. Studies on the improvement in iron nutrition of peanut by intercropping with maize on a calcareous soil[J]. Plant and Soil, 2000, 220(1/2): 13-25
[8] Murakami T, Ise K, Hayakawa M, et al. Stabilities of metal complexes of mugineic acids and their specific affinities for iron (Ⅲ)[J]. Chemical Society of Japan, 1989, 2137-2140
[9] Shao G S, Chen M X, Wang D Y, et al. Using iron fertilizer to control Cd accumulation in rice plants: A new promising technology[J]. Science in China Series C: Life Sciences, 2008, 51: 245-253
[10] Bao T, Sun L N, Sun T H, et al. Iron-deficiency induces cadmium uptake and accumulation in Solanmumnigrum L[J]. Bulletin of Environmental Contamination and Toxicology, 2009, 82: 338-342
[11] 李花粉, 张福锁, 毛达如, 等. 小麦根表铁氧化物及植物铁载体对植物吸收镉的影响[J]. 中国环境科学, 1997, 17: 433-436
[12] Awad F, Römheld V. Mobilization of heavy metals from contaminated calcareous soils by plant born, microbial and synthetic chelates and their uptake by wheat plants[J]. Journal of Plant Nutrition, 2000, 23: 1847-1855
[13] Nakanishi H, Ogawa I, Ishimaru Y, et al. Iron deficiency enhances cadmium uptake and translocation mediated by the Fe2+ transporters OsIRT1 and OsIRT2 in rice[J]. Soil Science and Plant Nutrition, 2006, 52: 464-469
[14] Luo C L, Shen Z G, Li X D. Root exudates increase metal accumulation in mixed cultures: Implications for naturally enhanced phytoextraction[J]. Water Air Soil Pollution, 2008, 193: 147-154
[15] Shenker M, Fan T W M, Crowley D E. Phytosiderophores influence on cadmium mobilization and uptake by wheat and barley plants[J]. Journal of Environmental Quality, 2001, 30: 2091-2098.
[16] Hill K A, Lion L W, Ahner B A. Reduced Cd accumulation in Zea mays: A protective role for phytosiderophores[J]. Environmental Science and Technology, 2002, 36: 5363-5368
[17] 陈秀玲, 张磊, 王凯荣. 不同铁营养状况下间作小麦对花生吸收Cd的影响[J].水土保持学报, 2014, 28(1): 257-261
[18] 房增国, 左元梅, 李隆, 等. 玉米-花生混作体系中不同施氮水平对花生铁营养及固氮的影响[J]. 植物营养与肥料学报, 2004, 10(4): 386-390
[19] 丁红. 花生铁营养研究进展[J]. 花生学报, 2011, 40(1): 39-43
[20] 罗厚枚, 王宏. 土壤重金属复合污染对作物的影响[J]. 环境化学, 1994, 13 (5): 427-432
[21] 宋阿琳, 李萍, 李兆君, 等. 镉胁迫下两种不同小白菜的生长、镉吸收及其亚细胞分布特征[J]. 环境化学, 2011, 30(6): 1075-1080
[22] 张金彪, 黄维南. 镉对植物的生理生态效应的研究进展[J]. 生态学报, 2000, 20(3): 514-523
[23] 王焕校. 污染生态学基础[M]. 昆明:云南大学出版社, 1990
[24] 刘文菊, 张西科, 张福锁. 根分泌物对根际难溶性镉的活化作用及对水稻吸收、运输镉的影响[J]. 生态学报, 2000, 20(3): 448-451
[25] 郝汉舟, 靳孟贵, 李瑞敏, 等. 耕地土壤铜、镉、锌形态及生物有效性研究[J]. 生态环境学报, 2010, 19(1): 92-96
[26] Salt D E, Pickering I J, Prince R C, et al. Metal accumulation by aquacultured seedlings of Indian mustard[J]. Environmental Science and Technology, 1997, 31: 1636-1644
[27] Jarvis S C, Jones L H P, Hopper M J. Cadmium uptake from solution by plants and its transport from roots to shoots[J]. Plant and soil, 1976, 44(1): 179-191
[28] Kudo K, Kudo H, Kawai S. Cadmium uptake in barley affected by iron concentration of the medium: Role of phytosiderophores[J]. Soil Science and Plant Nutrition, 2007, 53: 259-266
[29] Suzuki M, Tsukamoto T, Inoue H, et al. Deoxymugineic acid increases Zn translocation in Zn-deficient rice plants[J]. Plant Molecular Biology, 2008, 66: 609-617