[1] Alves L R, Monteiro C C, Carvalho R F, et al. Cadmium stress related to root-to-shoot communication depends on ethylene and auxin in tomato plants[J]. Environmental and Experimental Botany,2017,134:102-115
[2] Zeng L, Zhu T, Gao Y, et al. Effects of Ca addition on the uptake, translocation, and distribution of Cd in Arabidopsis thaliana[J]. Ecotoxicology and Environmental Safety,2017,139:228-237
[3] McLaughlin M J, Parker D R, Clarke J M. Metals and micronutrients-food safety issues[J]. Field Crop Research,1999,60:143-163
[4] Quartacci M F, Argilla A, Baker A J M, et al. Phytoextraction of metals from a multiply contaminated soil by Indian mustard[J]. Chemosphere,2006,63:918-925
[5] Vetterlein D, Wesenberg D, Nathan P, et al. Pteris vitata-Revisited:uptake of As and its speciation, impact of P, role of phytochelatins and S[J]. Environmental Pollution,2009,157(11):3016-3024
[6] Lebeau T, Braud A, Jezequel K. Performance of bioaugmentation-assisted phytoextraction applied to metal contaminated soil:A review[J]. Environmental Pollution,2008,153:497-522
[7] Bashan Y, De-Bashan L E. Bacteria plant growth-promotion[M]. Encyclopedia of Soils in the Environment. Oxford:Elsevier,2005:103-115
[8] 能凤娇,刘鸿雁,马莹,等. 根际促生菌在植物修复重金属污染土壤中的应用研究进展[J]. 中国农学通报,2013,29(5):187-191
[9] Kamnev A A, Lelie D V D. Chemical and biological parameters as tools to evaluate and improve heavy metal phytoremediation[J]. Bioscience Reports,2000,20(4):239-258
[10] Rajkumar M, Freitas H. Influence of metal resistant-plant growth promoting bacteria on the growth of Ricinus communis in soil contaminated with heavy metals[J]. Chemosphere,2008,71:834-842
[11] 王海鸥,徐海洋,钟广蓉,等.根际微生物对植物修复重金属污染土壤作用的研究进展[J]. 安徽农业科学学,2009,37(30):14832-14834
[12] Ma Y, Rajkumar M, Freitas H. Isolation and characterization of Ni mobilizing PGPB from serpentine soils and their potential in promoting plant growth and Ni accumulation by Brassica spp.[J]. Chemosphere,2009,75:719-725
[13] 张艳峰. 金属耐性植物内生细菌对油菜耐受与富集重金属的影响极其机制研究[D]. 南京:南京农业大学,2011:43-59
[14] Ali H, Khan E, Sajad M A. Phytoremediation of heavy metals-Concepts and applications[J]. Chemosphere,2013,91:869-881
[15] Marques A P, Moreira H, Franco A R. Inoculating Helianthus annuus (sunflower) grown in zinc and cadmium contaminated soils with plant growth promoting bacteria effects on phytoremediation strategies[J]. Chemosphere,2013,92:74-83
[16] 丁成龙,许能祥,董臣飞,等. 早熟型多花黑麦草生产性能及饲用品质研究[J]. 草地学报,2014,22(6):1337-1341
[17] 李强,郭和蓉. 一年生黑麦草制取燃料乙醇预处理工艺的初步研究[J]. 草业科学,2009,9:54-61
[18] Yasuda M, Takenouchi Y, Nitta Y, et al. Italian ryegrass (Lolium multiflorum Lam) as a high-potential bio-ethanol resource[J]. Bioenergy Research,2015,8:1303-1309
[19] 付华,周志宇,张洪荣,等. 施用污泥对黑麦草生育及其元素含量的影响[J]. 草地学报,2002,10(3):167-172
[20] 刘大林,曹喜春,张华,等. 土壤Cu 2+胁迫对多花黑麦草部分生理指标的影响[J]. 草地学报,2014,22(2):319-325
[21] Gordon S A, Weber R P. Colorimetric estimation of indoleacetic acid[J]. Plant Physiology,1951,26:192-195
[22] 夏娟娟. 植物促生内生细菌的筛选及其强化油菜富集土壤铅镉重金属的研究[D]. 南京:南京农业大学,2003:54
[23] 黄静,盛下放,何琳燕. 具溶磷能力的植物内生促生细菌的分离筛选及其生物多样性[J]. 微生物学报,2010,50(6):710-716
[24] 杨清,余丽芸. 分子生物学与基因工程试验技术[M]. 中国农业大学出版社,2014:15-36
[25] Guo J K, Chi J. Effect of Cd-tolerant plant growth-promoting rhizobium on plant growth and Cd uptake by Lolium multiflorum Lam. and Glycine max (L.) Merr. in Cd-contaminated soil[J]. Plant and Soil,2014,375:205-214
[26] 李强,文唤成,胡彩荣. 土壤pH值的测定国际国内方法差异研究[J]. 土壤,2007,39(3):488-491
[27] 刘铭,刘凤枝,刘保峰. 土壤中有效态铅和镉的测定[J]. 农业环境科学学报,2007,26(增刊):300-302
[28] 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,2000:260-261
[29] 霍伟,蔡庆生. 植物促生菌提高植物重金属耐受性研究进展[J]. 微生物学通报,2010,37(9):1374-1378
[30] Pal A, Dutta S, Mukherjee PK, et al. Occurrence of heavy metal resistance in microflora from serpentine soil of Andaman[J]. Journal of Basic Microbiology,2005,45(3):207-218
[31] Asghar H N, Zahir Z A, Arshad M. Screening rhizobacteria for improving the growth, yield and oil content of canola (Brassica napus L.)[J]. Australian Journal of Agricultural Research,2004,55(2):187-194
[32] 刘佳莉,方芳,史煦涵,等. 2株盐碱地燕麦根际促生菌的筛选及其促生作用研究[J]. 草业学报,2013,22(2):132-139
[33] Jiang C Y, Sheng X F, Qian M, et al. Isolation and characterization of a heavy metal-resistant Burkholderia sp. from heavy metal-contaminated paddy field soil and its potential in promoting plant growth and heavy metal accumulation in metal-polluted soil[J]. Chemosphere,2008,72(2):157-164
[34] 荣良燕,姚拓,马文彬,等. 岷山红三叶根际优良促生菌对其宿主生长和品质的影响[J]. 草业学报,2014,23(5):231-240
[35] Sikandar A, Hamid N, Naginan N, et al. Screening of phosphate solubilizing microorganisms using different original and modified culture media[J]. Biologia,1998,44:110-122
[36] 侯明,路畅,张兴龙. 钒、汞胁迫对菜心幼苗生理生化特性的影响[J]. 生态学杂志,2012,31(3):532-537
[37] 田野,张会慧,孟祥英,等. 镉(Cd)污染土壤接种丛枝菌根真菌(Glomus mosseae)对黑麦草生长和光合的影响[J]. 草地学报,2013, 21(1):135-141
[38] 刘莉华,刘淑杰,陈福明,等. 接种内生细菌对龙葵吸收积累镉的影响[J]. 环境科学学报,2013,33(12):3368-3375 |