|本期目录/Table of Contents|

[1]王梦姣,杨国鹏,乔帅,等.植物-根际微生物协同修复有机物污染土壤的研究进展[J].江苏农业科学,2017,45(01):5-8.
 Wang Mengjiao,et al.Research progress of plant-rhizosphere microorganism combined remediation of organic-contaminated soil[J].Jiangsu Agricultural Sciences,2017,45(01):5-8.
点击复制

植物-根际微生物协同修复有机物污染土壤
的研究进展
(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年01期
页码:
5-8
栏目:
专论与综述
出版日期:
2017-01-05

文章信息/Info

Title:
Research progress of plant-rhizosphere microorganism combined remediation of organic-contaminated soil
作者:
王梦姣123 杨国鹏3 乔帅3 邓百万23 陈文强23
1.陕西理工大学陕西省资源生物重点实验室,陕西汉中 723000;2.陕西理工大学陕西省食药用菌工程技术研究中心,陕西汉中 723000;
3. 陕西理工大学生物科学与工程学院,陕西汉中 723000
Author(s):
Wang Mengjiaoet al
关键词:
有机污染物生物修复协同修复植物根际微生物互作
Keywords:
-
分类号:
X53
DOI:
-
文献标志码:
A
摘要:
人工合成的有机化学物质具有化学性质稳定、难以降解、使用范围广、具有一定毒副作用及潜在的致畸致癌性,给人类生产生活相关的土壤环境造成严重影响。目前各个国家都已经采取各种措施,从污染治理等方面进行土壤修复,以减缓对环境的伤害,但是这些修复效果均不明显,且成本较高,还可能造成对环境的二次污染。植物修复技术和微生物修复技术是目前土壤污染治理较廉价和有效的手段之一,但这两者的修复过程都存在一些限制因素。本文论述利用土壤-植物-根际微生物的共存关系进行有机物污染土壤修复的2种方式及其原理,并介绍影响联合修复技术的几个因素,讨论今后植物-微生物联合修复技术的研究重点,以期在今后的研究及实际运用中,利用植物-微生物联合修复技术分别发挥植物、微生物修复的优点,达到联合彻底修复土壤、净化土壤的目的。
Abstract:
-

参考文献/References:

[1]Chaudhry Q,Schrder P,Werck-Reichhart D,et al. Prospects and limitations of phytoremediation for the removal of persistent pesticides in the environment[J]. Environmental Science and Pollution Research,2002,9(1):4-17.
[2]Chaudhry Q,Blom-Zandstra M,Gupta S K,et al. Utilising the synergy between plants and rhizosphere microorganisms to enhance breakdown of organic pollutants in the environment[J]. Environmental Science and Pollution Research,2005,12(1):34-48.
[3]Antizar-Ladislao B,Lopez-Real J,Beck A J. Bioremediation of polycyclic aromatic hydrocarbons(PAH) in an aged coal-tar-contaminated soil using different in-vessel composting approaches[J]. Journal of Hazardous Materials,2006,137(3):1583-1588.
[4]Seeger M,Pieper D. Genetics of biphenyl biodegradation and co-metabolism of PCBs[M]//Handbook of hydrocarbon and lipid microbiology. United Kingdom:Springer-Verlag,2010:1179-1199.
[5]许超,夏北成. 土壤多环芳烃污染根际修复研究进展[J]. 生态环境,2007,16(1):216-222.
[6]Parrish Z D,Banks M K,Schwab A P. Effectiveness of phytoremediation as a secondary treatment for polycyclic aromatic hydrocarbons(PAHs) in composted soil[J]. International Journal of Phytoremediation,2004,6(2):119-137.
[7]Farwell A J,Vesely S,Nero V,et al. Tolerance of transgenic canola(Brassica napus) amended with ACC deaminase-containing plant growth-promoting bacteria to flooding stress at a metal-contaminated field site[J]. Environ Pollut 2007,147(3):540-5.
[8]Lin X,Li X J,Li P J,et al. Evaluation of plant-microorganism synergy for the remediation of diesel fuel contaminated soil[J]. Bulletin of Environmental Contamination and Toxicology,2008,81(1):19-24.
[9]Glick B R. Using soil bacteria to facilitate phytoremediation[J]. Biotechnology Advances,2010,28(3):367-374.
[10]王京秀,张志勇,万云洋,等. 植物-微生物联合修复石油污染土壤的实验研究[J]. 环境工程学报,2014,8(8):3454-3460.
[11]Cao L,Wang Q,Zhang J,et al. Construction of a stable genetically engineered rhamnolipid-producing microorganism for remediation of pyrene-contaminated soil[J]. World Journal of Microbiology and Biotechnology,2012,28(9):2783-2790.
[12]Volante A,Lingua G,Cesaro P,et al. Influence of three species of arbuscular mycorrhizal fungi on the persistence of aromatic hydrocarbons in contaminated substrates[J]. Mycorrhiza,2005,16(1):43-50.
[13]周妍,滕应,姚伦芳,等. 植物-微生物联合对土壤不同粒径组分中PAHs的修复作用[J]. 土壤,2015,47(4):711-718.
[14]Wu N Y,Huang H L,Zhang S Z,et al. Phenanthrene uptake by Medicago sativa L.under the influence of an arbuscularmycorrhizal fungus[J]. Environmental Pollution,2009,157(5):1613-1618.
[15]周笑白,周集体,项学敏,等. 丛枝菌根真菌在有机污染物污染土壤植物修复中的应用[J]. 辽宁化工,2011,40(8):860-863.
[16]Gao Y Z,Cheng Z X,Ling W T,et al. Arbuscular mycorrhizal fungal hyphae contribute to the uptake of polycyclic aromatic hydrocarbons by plant roots[J]. Bioresource Technology,2010,101(18):6895-6901.
[17]田蜜,陈应龙,李敏,等. 丛枝菌根结构与功能研究进展[J]. 应用生态学报,2013,24(8):2369-2376.
[18]林道辉,朱利中,高彦征. 土壤有机污染植物修复的机理与影响因素[J]. 应用生态学报,2003,14(10):1799-1803.
[19]单胜道,俞劲炎,于伟. 酸雨与土壤生态系统[J]. 生态农业研究,2000,8(2):20-23.
[20]侯梅芳,潘栋宇,黄赛花,等. 微生物修复土壤多环芳烃污染的研究进展[J]. 生态环境学报,2014,23(7):1233-1238.
[21]Boyajian G E,Carreira L H. Phytoremediation:a clean transition from laboratory to marketplace[J]. Nature Biotechnology,1997,15(2):127-128.
[22]Mielke H W,Wang G,Gonzales C R,et al. PAH and metal mixtures in New Orleans soils and sediments[J]. Science of the Total Environment,2001,281(1/2/3):217-227.
[23]Joynt J,Bischoff M,Turco R,et al. Microbial community analysis of soils contaminated with lead,chromium and petroleum hydrocarbons[J]. Microbial Ecology,2006,51(2):209-219.
[24]Furukawa K,Fujihara H. Microbial degradation of polychlorinated biphenyls:biochemical and molecular features[J]. Journal of Bioscience and Bioengineering,2008,105(5):433-449.
[25]Pieper D,Seeger M. Bacterial metabolism of polychlorinated biphenyls[J]. J Mol Microbiol Biotechnol,2008,15:121-138.
[26]Dong R,Gu L J,Guo C H,et al. Effect of PGPR serratia marcescens BC-3 and AMF glomus intraradices on phytoremediation of petroleum contaminated soil[J]. Ecotoxicology,2014,23(4):674-680.
[27]焦杏春,陈素华,沈伟然,等. 水稻根系对多环芳烃的吸着与吸收[J]. 环境科学,2006,27(4):760-764.
[28]高彦征,凌婉婷,朱利中,等. 黑麦草对多环芳烃污染土壤的修复作用及机制[J]. 农业环境科学学报,2005,24(3):498-502.
[HJ1.6mm] [29]刘晓冰,邢宝山,周克琴,等. 污染土壤植物修复技术及其机理研究[J]. 中国生态农业学报,2005,13(1):134-138.
[30]董社琴,李冰雯,周健. 植物修复有机污染土壤机理的分析[J]. 科技情报开发与经济,2004,14(3):189-190.
[31]陈梅,唐运来. 用于植物修复的转基因植物研究进展[J]. 生物技术通报,2013(6):7-11.
[32]顾平,张倩茹,周启星,等。一株苯并[a]芘高效降解真菌的筛选与降解特性[J]. 环境科学学报,2010,30(2):354-360。
[33]周际海,袁颖红,朱志保,等. 土壤有机污染物生物修复技术研究进展[J]. 生态环境学报,2015,24(2):343-351.
[34]Walton B T,Anderson T A. Microbial degradation of trichloroethylene in the rhizosphere:potential application to biological remediation of waste sites[J]. Appl Environ Microbiol,1990,56(4):1012-1016.
[35]Shann J R. The role of plants and plant/microbial systems in the reduction of exposure[J]. Environ Health Perspect,1995,103(s5):13-15.
[36]El-Shatnawi M K J,Makhadmeh I M. Ecophysiology of the plant-rhizosphere system[J]. J Agron Crop Sci,2001,187(1):1-9.
[37]Lafrance P,Lapointe M. Mobilization and co-transport of pyrene in the presence of Pseudomonas aeruginosa UG2 biosurfactants in sandy soil columns[J]. Ground Water Monit Remediat,1998,18(4):139-147.
[38]Sandrin T R,Chech A M,Maier R M. A rhamnolipid biosurfactant reduces cadmium toxicity during naphthalene biodegradation[J]. Appl Environ Microbiol,2000,66(10):4585-4588.
[39]Wang M J,Liu X Y,Wang R,et al. Overexpression of a putative Arabidopsis BAHD acyltransferase causes dwarfism that can be rescued by brassinosteroid[J]. Journal of Experimental Botany,2012,63(16):5787-5801.
[40]王梦姣,邓百万,杨国鹏. 拟南芥油菜素内酯的合成、修饰、信号转导及其在农作物育种中的应用研究进展[J]. 河南农业科学,2015,44(2):1-6.
[41]王梦姣,李新生,杨国鹏. 油菜素内酯的生理效应及其参与残留农药降解的研究进展[J]. 北方园艺,2015(3):168-170.

相似文献/References:

[1]罗大富.城市污泥改良土壤的生态环境风险[J].江苏农业科学,2016,44(03):335.
 Luo Dafu.Study on ecological environmental risk of soil improvement with urban sludge[J].Jiangsu Agricultural Sciences,2016,44(01):335.
[2]展漫军,李婧,徐慧,等.菇渣应用于生物堆修复有机污染土壤的研究[J].江苏农业科学,2013,41(12):344.
 Zhan Manjun,et al.Study on organic contaminated soil remediation of biopile using mushroom residues[J].Jiangsu Agricultural Sciences,2013,41(01):344.
[3]金雷,成明根,孙斌,等.芽孢杆菌QC-13对咪唑乙烟酸污染土壤的生物修复[J].江苏农业科学,2015,43(06):300.
 Jing Lei,et al.Bioremediation of imazethapyr contaminated soil by Bacillus sp. QC-13[J].Jiangsu Agricultural Sciences,2015,43(01):300.
[4]展漫军,张磊,李婧,等.秸秆和菇渣应用于生物堆修复有机污染土壤的现场试验研究[J].江苏农业科学,2015,43(03):300.
 Zhan Manjun,et al.A field scale study on biopile applied in remediating organic-chemicals contaminated soil using straw and mushroom residue as soil conditioner[J].Jiangsu Agricultural Sciences,2015,43(01):300.
[5]陈秋会,席运官,王磊,等.产地环境中重金属和有机污染物对农产品质量的影响综述[J].江苏农业科学,2018,46(1):5.
 Chen Qiuhui,et al.Influences of heavy metals and organic contaminants in producing area on quality of agricultural products: a review[J].Jiangsu Agricultural Sciences,2018,46(01):5.
[6]刘晨,贾凤安,吕睿.我国耕地重金属污染现状及固氮菌在其修复中的作用[J].江苏农业科学,2018,46(03):21.
 Liu Chen,et al.Chinas farmland heavy metal contaminate situation and effect of azotobacter in its remediation[J].Jiangsu Agricultural Sciences,2018,46(01):21.
[7]刘冉,兰汝佳,赵海燕,等.人工湿地中生物修复污水的应用与研究进展[J].江苏农业科学,2019,47(22):30.
 Liu Ran,et al.Application and research progress of bioremediation wastewater in constructed wetlands[J].Jiangsu Agricultural Sciences,2019,47(01):30.
[8]刘丹丹,刘畅.微生物去除土壤阿特拉津污染及黄瓜根系的氧化应激反应[J].江苏农业科学,2019,47(22):307.
 Liu Dandan,et al.Microbial removal of soil atrazine pollution and oxidative stress response in cucumber roots[J].Jiangsu Agricultural Sciences,2019,47(01):307.
[9]申志慧,王亚,李昊聪,等.1株氟环唑降解菌的分离鉴定及降解特性[J].江苏农业科学,2020,48(04):273.
 Shen Zhihui,et al.Isolation,identification and degrading characterization of an epoxiconazole-degrading bacterium[J].Jiangsu Agricultural Sciences,2020,48(01):273.
[10]田连生.温室大棚土壤生物修复剂的菌种选育及应用效果[J].江苏农业科学,2020,48(12):246.
 Tian Liansheng.Breeding and application effect of soil bioremediation agent in greenhouse[J].Jiangsu Agricultural Sciences,2020,48(01):246.

备注/Memo

备注/Memo:
收稿日期:2015-11-20
基金项目:陕西省教育厅重点科学研究计划(编号:15JS021);陕西理工大学人才启动项目(编号:SLGKYQD2-19)。
作者简介:王梦姣(1987—),女,陕西宝鸡人,博士,讲师,主要从事根际微生物与植物互作及微生物重要功能基因研究。E-mail:amy133253@126.com。
更新日期/Last Update: 2017-01-05