Developmental toxicity of TCBPA on the nervous and cardiovascular systems of zebrafish (Danio rerio): A combination of transcriptomic and metabolomics
文献类型: 外文期刊
作者: Liu W.; Pan Y.; Yang L.; Xie Y.; Chen X.; Chang J.; Hao W.; Zhu L.; Wan B.
作者机构:
关键词: Amino acids; Toxicity; Behavioral analysis; Biochemical analysis; Developmental toxicity; Halogenated flame retardant; Metabolomics; Tetrachlorobisphenol A; Tetrachlorobisphenol-A; Transcriptomics; Zebrafish; Zebrafish danio rerio; Blood vessels; cardiovascular system; cyprinid; embryo; flame retardant; nervous system; phenol; toxicity
期刊名称: Journal of Environmental Sciences (China)
ISSN: 1001-0742
年卷期: 2023 年 127 卷
页码:
收录情况: SCIE(2023版) ; ; EI(2023版) ; ; CSCD(2023-2024年度) ; ; 科技核心(2023版)
摘要: Tetrachlorobisphenol A (TCBPA), a widely used halogenated flame retardant, is frequently detected in environmental compartments and human samples. However, unknown developmental toxicity and mechanisms limit the entire understanding of its effects. In this study, zebrafish (Danio rerio) embryos were exposed to various concentrations of TCBPA while a combination of transcriptomics, behavioral and biochemical analyzes as well as metabolomics were applied to decipher its toxic effects and the potential mechanisms. We found that TCBPA could interfere with nervous and cardiovascular development through focal adhesion and extracellular matrix-receptor (ECM-receptor) interaction pathways through transcriptomic analysis. Behavioral and biochemical analysis results indicated abnormal swimming behavior of zebrafish larvae. Morphological observations revealed that TCBPA could cause the loss of head blood vessels. Metabolomic analysis showed that arginine-related metabolic pathways were one of the main pathways leading to TCBPA developmental toxicity. Our study demonstrated that by using omics, TCBPA was shown to have neurological and cardiovascular developmental toxicity and the underlying mechanisms were uncovered and major pathways identified. © 2022
分类号:
- 相关文献
作者其他论文 更多>>
-
The maize transcription factor CCT regulates drought tolerance by interacting with Fra a 1, E3 ligase WIPF2, and auxin response factor Aux/IAA8
作者:Zhang Z.;Qu J.;Lu M.;Zhao X.;Xu Y.;Wang L.;Liu Z.;Shi Y.;Liu C.;Li Y.;Wang C.;Xu M.;Nan Z.;Cao Q.;Pan J.;Liu W.;Li X.;Sun Q.;Wang W.
关键词:Auxin;auxin response gene;drought tolerance;plant growth;ubiquitination;ZmCCT
-
Effects of pressure in hand kneading and mechanical bionic kneading on dough formation and texture properties
作者:Liu Q.;Li K.;Wu L.;Liu W.;Zhao R.;Zhang L.;Hu H.
关键词:Dough;Gluten network;Hand kneading;Mechanical bionic kneading;Protein second structure
-
The dynamic landscape of chromatin accessibility and active regulatory elements in the mediobasal hypothalamus influences the seasonal activation of the reproductive axis in the male quail under long light exposure
作者:Chang J.;Xu Y.;Fu Y.;Liu J.;Jiang D.;Pan J.;Ouyang H.;Liu W.;Xu J.;Tian Y.;Huang Y.;Ruan J.;Shen X.
关键词:(1-2-2)Chromatin accessibility;Coturnix japonica;Seasonal reproduction;Transcription factor
-
Exploring Multi-Tissue Alternative Splicing and Skeletal Muscle Metabolism Regulation in Obese- and Lean-Type Pigs
作者:Wang W.;Li W.;Liu W.;Wang Z.;Xie B.;Yang X.;Tang Z.
关键词:(1-1-2)alternative splicing;multiple tissues;obese- and lean-type pigs;skeletal muscle metabolism;transcriptome
-
N6-methyladenosine modification of the mRNA for a key gene in purine nucleotide metabolism regulates virus proliferation in an insect vector
作者:Zhu M.;Wu N.;Zhong J.;Chen C.;Liu W.;Ren Y.;Wang X.;Jin H.
关键词:CP: Microbiology;inosine monophosphate dehydrogenase;methyltransferase-like protein 3;N6-methyladenosine modification;rice stripe virus;viral transmission;YTHDF3
-
Lactiplantibacillus plantarum FRT4 attenuates high-energy low-protein diet-induced fatty liver hemorrhage syndrome in laying hens through regulating gut-liver axis
作者:Li D.;Cai H.;Liu G.;Han Y.;Qiu K.;Liu W.;Meng K.;Yang P.
关键词:Fatty liver hemorrhage syndrome;Gut microbiota;Lactiplantibacillus plantarum FRT4;Laying hens;Lipid metabolism
-
Anti-fungal activity of a novel succinate dehydrogenase inhibitor pydiflumetofen against Bipolaris maydis
作者:Sun Y.;Wang K.;Yang B.;Yang J.;Liu B.;Chen X.;Liu W.;Chen Y.
关键词:Activity;Bipolaris maydis;Pydiflumetofen;Sensitivity distribution