Enantioselective accumulation of chiral polychlorinated biphenyls in lotus plant (Nelumbonucifera spp.)

文献类型: 外文期刊

第一作者: Dai, Shouhui

作者: Dai, Shouhui;Qiu, Jing;Wang, Min;Chai, Tingting;Fan, Li;Yang, Shuming;Dai, Shouhui;Qiu, Jing;Wang, Min;Chai, Tingting;Fan, Li;Yang, Shuming;Wong, Charles S.;Dai, Shouhui

作者机构:

关键词: Polychlorinated biphenyls;Enantiomer;Accumulation;Lotus root;Sediment

期刊名称:JOURNAL OF HAZARDOUS MATERIALS ( 影响因子:10.588; 五年影响因子:10.129 )

ISSN: 0304-3894

年卷期: 2014 年 280 卷

页码:

收录情况: SCI

摘要: Enantioselective accumulation of chiral polychlorinated biphenyls (PCBs) 91, 95, 136, 149, 176 and 183 was investigated in lotus plants (Nelumbonucifera spp.) exposed to these chemicals via spiked sediment, to determine uptake and possible biotransformation for aquatic phytoremediation purposes. The concentrations of most PCBs were greatest in roots at 60 d (19.6 +/- 1.51-70.6 +/- 6.14 mu g kg(-1)), but were greatest in stems and leaves at 120 d (25.3 +/- 6.14-95.5 +/- 19.4 mu g kg(-1) and 17.4 +/- 4.41-70.4 +/- 10.4 mu g kg(-1), respectively). Total amounts were greatest at 120 d and significantly higher in roots than those in stems and in leaves (1,457 +/- 220-5,852 +/- 735 ng, 237 +/- 47.1-902 +/- 184 ng and 202 +/- 60.3-802 +/- 90.2 ng, respectively), but represented less than 0.51% of the total mass of PCBs added to sediments, indicating that lotus plants were unlikely to remove appreciable amounts of PCBs from contaminated sediments. Racemic PCB residues in sediment indicate no enantioselective biodegradation by sedimentary microbial consortia over the entire experiment. Preferential accumulation of the (-)-enantiomers of PCBs 91, 95 and 136 were observed in roots, stems and leaves, but non-enantioselective accumulation was observed for PCBs 149, 176 and 183. These results indicate that aquatic plants can accumulate PCBs enantioselectively via root uptake, possibly by biotransformation within plant tissues as observed for terrestrial plants. This is also the first report to identify optical rotation of the atropisomers of PCBs 91 and 95. (C) 2014 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Determination of Polychlorinated Biphenyl Enantiomers in Lotus Root and Sediment by Chiral Gas Chromatography-Mass Spectrometry. Dai Shou-Hui,Zhao Hua-Lin,Wang Min,Chai Ting-Ting,Yang Shu-Ming,Qiu Jing,Dai Shou-Hui,Zhao Hua-Lin,Wang Min,Chai Ting-Ting,Yang Shu-Ming,Qiu Jing,Wong, Charles S.. 2012

[2]Accumulation and risk assessment of heavy metals in water, sediments, and aquatic organisms in rural rivers in the Taihu Lake region, China. Wang, Dejian,Zhang, Gang,Wang, Can,Bo, Luji,Li, Yan,Li, Tianling,Zhang, Shanqing,Li, Tianling,Zhang, Shanqing.

[3]Effect of mild heat treatment on shelf life of fresh lotus root. Li, Shuyi,He, Xu,Liu, Zhiwei,Yi, Yang,Wang, Hongxun,Lamikanra, Olusola,Li, Xiaojin,Liu, Zhiwei,Yi, Yang,Wang, Hongxun. 2018

[4]Comparison of Enantioseparations of 19 Chiral Polychlorinated Biphenyls by 5 Different Polysaccharides Chiral Columns. Xu Na-Na,Mu Peng-Qian,Jia Qi,Chai Ting-Ting,Yin Zhi-Qiang,Shu-Ming, Yang,Jing, Qiu,Chai Ting-Ting. 2015

[5]Resolution of racemic gamma-lactone flavors on Chiralpak AD by packed column supercritical fluid chromatography. Xie, Jianchun,Han, Huilan,Sun, Baoguo,Cheng, Jie,Yanik, Gary W.. 2011

[6]Enantiomeric analysis of linalool in teas using headspace solid-phase microextraction with chiral gas chromatography. Yang, Ting,Zhu, Yin,Shao, Chen-Yang,Zhang, Yue,Shi, Jiang,Lv, Hai-Peng,Lin, Zhi,Yang, Ting,Shao, Chen-Yang,Shi, Jiang.

[7]Influence of Soil Properties on the Enantioselective Dissipation of the Herbicide Lactofen in Soils. Diao, Jinling,Lv, Chunguang,Dang, Ziheng,Zhu, Wentao,Zhou, Zhiqiang,Wang, Xinquan.

[8]Effect of polychlorinated biphenyls on osmoregulatory response and apoptosis in GIFT tilapia, Oreochromis niloticus. Zheng, Y.,Qiu, L.,Fan, L.,Song, C.,Meng, S.,Chen, J.,Zheng, Y.,Qiu, L.,Fan, L.,Song, C.,Meng, S.,Chen, J.,Zheng, Y.,Chen, J.. 2016

[9]Identification of Metabolized Polychlorinated Biphenyls in Fishery Products by Gas Chromatography-Tandem Mass Spectrometry. Shi Yong-Fu,Cai You-Qiong,Yu Hui-Juan,Tian Liang-Liang,Huang Xuan-Yun,Huang Dong-Mei. 2014

[10]Effect of polychlorinated biphenyls on oxidation stress in the liver of juvenile GIFT, Oreochromis niloticus. Zheng, Y.,Qiu, L. P.,Meng, S. L.,Fan, L. M.,Song, C.,Li, D. D.,Zhang, C.,Chen, J. Z.,Zheng, Y.,Chen, J. Z.. 2016

[11]A novel electrochemical PCB77-binding DNA aptamer biosensor for selective detection of PCB77. Wu, Lidong,Fu, Xiaochen,Liu, Huan,Li, Jincheng,Wang, Qiong,Fan, Hao,Qi, Peipei.

[12]Headspace solid phase microextraction procedure for the detection of polychlorinated biphenyls in seawater sample. Ping, Xian-yin,Wang, Yun-long. 2013

[13]Identification of candidate genes involved in responses of Arabidopsis to polychlorinated biphenyls based on microarray analysis. Jin, Xiao-Fen,Shuai, Jian-Jun,Peng, Ri-He,Zhu, Bo,Fu, Xiao-Yan,Tian, Yong-Sheng,Zhao, Wei,Han, Hong-Juan,Chen, Chen,Xu, Jing,Yao, Quan-Hong,Xiong, Ai-Sheng,Qu, Shen-Chun.

[14]Preparation of mesoporous ZrO2-coated magnetic microsphere and its application in the multi-residue analysis of pesticides and PCBs in fish by GC-MS/MS. Peng, Xi-Tian,Gong, Yan,Hu, Xi-Zhou,Peng, Li-Jun,Peng, Xi-Tian,Jiang, Li,Feng, Yu-Qi.

[15]The Determination of PCBs in Meat and Sea Food by GC-QqQ-MS/MS. Huo, Lu-Ge,Zhao, Chang-Le,Yang, Guo-Sheng,Li, Hui-Dong,Wang, Wen-Bo,Chen, Zi-Lei,Ding, Rui-Yan,Dong, Zhan,Wang, Feng-En,Lu, Xiao,Li, Hui-Dong,Wang, Wen-Bo,Chen, Zi-Lei,Ding, Rui-Yan,Dong, Zhan,Wang, Feng-En,Lu, Xiao,Li, Hui-Dong,Wang, Wen-Bo,Chen, Zi-Lei,Ding, Rui-Yan,Dong, Zhan,Wang, Feng-En,Lu, Xiao,Aboul-Enein, Hassan Y..

[16]Analysis of Pollution in Dianchi Lake and Consideration of Its Application in Crop Planting. Liu, Yanfang,Li, Yangang,Yang, Xiaohong,Zhang, Jianhua,Guan, Junjiao,Wang, Jiangmin,Zhang, Hui,Xu, Chuankun. 2012

[17]Distribution and sources of organic carbon, nitrogen and their isotopes in surface sediments from the largest mariculture zone of the eastern Guangdong coast, South China. Gu, Yang-Guang,Ning, Jia-Jia,Wang, Zeng-Huan,Gu, Yang-Guang,Ouyang, Jun,Ning, Jia-Jia,Wang, Zeng-Huan,Gu, Yang-Guang. 2017

[18]Particle size distribution and settling velocity of sediments in water diverted from the Yellow River during border-strip irrigation. Li, Jinshan,Fei, Liangjun,Li, Jinshan,Chen, Zhen,Sun, Xiulu. 2017

[19]Soil salinity in the irrigated area of the yellow river in Ningxia, China. Xiong, SY,Xiong, ZX,Wang, PW. 1996

[20]Distribution and risk assessment of metals in water, sediments, and wild fish from Jinjiang River in Chengdu, China. Liu, Xueping,Jiang, Jingyan,Yan, Yan,Deng, Biao,Ding, Sanglan,Su, Shijun,Sun, Weiyi,Li, Zhi,Gan, Zhiwei,Dai, YuanYuan. 2018

作者其他论文 更多>>