Microarray analysis of differentially expressed gene responses to bisphenol A in Arabidopsis
文献类型: 外文期刊
作者: Tian, Yong-Sheng 1 ; Jin, Xiao-Fen 1 ; Fu, Xiao-Yan 1 ; Zhao, Wei 1 ; Han, Hong-Juan 1 ; Zhu, Bo 1 ; Man-Liu 2 ; Yao, Qua 1 ;
作者机构: 1.Shanghai Acad Agr Sci, Biotechnol Res Inst, Shanghai Key Lab Agr Genet & Breeding, Shanghai 201106, Peoples R China
2.Shanghai Ruifeng Agr Sci & Technol Co Ltd, Shanghai 201106, Peoples R China
关键词: Arabidopsis;BPA;Microarray;RT-PCR;Toxicity
期刊名称:JOURNAL OF TOXICOLOGICAL SCIENCES ( 影响因子:2.196; 五年影响因子:2.177 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: Environmental levels of bisphenol A (BPA) are a global concern because the compound can cause damage to reproductive organs, the thyroid gland, and brain tissues at developmental stages. Plants are important in removing BPA from the atmosphere, soil, and water. However, knowledge on the mechanism by which plants respond to this compound is limited. To determine the response mechanism of plants to BPA, we used a microarray system to analyze the gene expression patterns of Arabidopsis thaliana after irrigation with 3.0 mM BPA. We identified 651 genes that were differentially expressed upregulated and 470 genes that were downregulated by BPA. These genes may specifically contribute to BPA uptake, transformation, conjugation, and compartmentation in plants. The potential function of upregulated genes in plant defense against BPA was also determined.
- 相关文献
作者其他论文 更多>>
-
Development of "environmentally friendly" super Escherichia coli strains that can completely biodegrade toluene
作者:Wang, Yu;Qian, Cen;Tian, Yong-Sheng;Gao, Jian-Jie;Xu, Jing;Li, Zhen-Jun;Fu, Xiao-Yan;Han, Hong-Juan;Zhang, Wen-Hui;Zhang, Hao;Wang, Bo;Peng, Ri-He;Yao, Quan-Hong;Wang, Yu;Deng, Yong-Dong;Tian, Yong-Sheng;Han, Hong-Juan;Wang, Bo;Sun, Yuan-Zhang
关键词:Toluene; Biodegradation; Environmental pollution; Engineered bacteria; Synthetic biology
-
Comparative physiological and transcriptomic analyses identify computationally predicted key genes and regulatory pathways in non-heading Chinese cabbage under heat stress
作者:Liu, Wei;Dai, Zhangyang;Jia, Jingyi;Kan, Xianzhao;Zhu, Bo;Li, Xiaofeng;Zhu, Hongfang
关键词:Non-heading chinese cabbage; Heat stress; WGCNA analyses; Transcription factors; Gene expression
-
Genome-wide analysis of OPR family genes in Vitis vinifera and the role of VvOPR1 in copper, zinc tolerance
作者:You, Shuang-Hong;Chen, Yuan-Ping;Shi, Wen-Jing;Li, Xue;Wu, Zheng;Yao, Quan-Hong
关键词:reductase; grapevine; gene family; copper and zinc stress; mechanism
-
The complete degradation of 1,2-dichloroethane in Escherichia coli by metabolic engineering
作者:Deng, Yong-Dong;Zhang, Wen -Hui;Zuo, Zhi-Hao;Zhang, Hao;Xu, Jing;Gao, Jian- Jie;Wang, Bo;Li, Zhen-Jun;Fu, Xiao-Yan;Wang, Li -Juan;Wang, Yu;Tian, Yong-Sheng;Peng, Ri-He;Yao, Quan-Hong;Deng, Yong-Dong;Zhang, Wen -Hui;Zuo, Zhi-Hao;Zhang, Hao;Xu, Jing;Gao, Jian- Jie;Wang, Bo;Li, Zhen-Jun;Fu, Xiao-Yan;Wang, Li -Juan;Wang, Yu;Tian, Yong-Sheng;Peng, Ri-He;Yao, Quan-Hong
关键词:Bioremediation; Engineered bacteria; Environmental pollution; Metabolic engineering; Synthetic biology
-
"Structure-function" analysis using starches isolated from Lycoris chinensis bulbs of different developmental stages
作者:Ren, Huanhuan;Zhao, Wei;Li, Kehu;Zhang, Tongze;Li, Qingzhu;He, Liangliang
关键词:Lycoris chinensis; Starch physicochemical properties; Structural properties
-
Characterization and structure-functionality analysis of starch in different layers of Lycoris chinensis bulb scales
作者:Zhou, Kunyu;Lu, Peihui;Zhao, Wei;Li, Kehu;Yang, Feng;Li, Qingzhu;Zhang, Tongze
关键词:Lycoris chinensis bulb scales starch; Structure; Physicochemical properties
-
Metabolic engineering of Escherichia coli for 2,4-dinitrotoluene degradation
作者:Zhang, Wen-Hui;Deng, Yong-Dong;Zuo, Zhi-Hao;Tian, Yong-Sheng;Xu, Jing;Wang, Bo;Wang, Li-Juan;Han, Hong-Juan;Li, Zhen-Jun;Wang, Yu;Yao, Quan-Hong;Gao, Jian-Jie;Fu, Xiao-Yan;Peng, Ri-He;Zhang, Wen-Hui;Deng, Yong-Dong;Zuo, Zhi-Hao;Tian, Yong-Sheng;Xu, Jing;Wang, Bo;Wang, Li-Juan;Han, Hong-Juan;Li, Zhen-Jun;Wang, Yu;Yao, Quan-Hong;Gao, Jian-Jie;Fu, Xiao-Yan;Peng, Ri-He;Chen, Zhi-Feng
关键词:4-Dinitrotoluene; Re-synthesize gene; Complete degradation; Bioremediation; Escherichia coli



