Effect of ammonia stress on transcriptome and endoplasmic reticulum stress pathway for common carp (Cyprinus carpio) hepatopancreas
文献类型: 外文期刊
第一作者: Xue, Shuqun
作者: Xue, Shuqun;Lin, Jiawen;Zhou, Qun;Han, Ying;Wang, Haitao
作者机构:
关键词: Cyprinus carpio; Ammonia; Transcriptome; Endoplasmic reticulum stress; Apoptosis
期刊名称:AQUACULTURE REPORTS ( 影响因子:3.216; 五年影响因子:3.812 )
ISSN: 2352-5134
年卷期: 2021 年 20 卷
页码:
收录情况: SCI
摘要: Ammonia is the mainly environmental pollutant in the field of aquaculture in association with negative impact on the healthy cultivation of common carp. Gene expression profiles in the hepatopancreas of common carp treated with ammonia stress using an RNA-seq technique, and 22,431,825 and 23,592,342 clean reads from the control and treatment groups by a 96-h ammonia challenge (0.85 mg/L unionized ammonia, NH3) are obtained. Total amount of 3367 unigenes are identified as differentially expressed genes (DEGs) related to ammonia stress. The 1724 DEGs are down-regulated and 1643 DEGs are upregulated. The metabolic pathways of these DEGs are classified into 49 different terms by KEGG pathway analysis. Protein processing in the endoplasmic reticulum (ko04141) pathway is a significantly enriched pathway of DEGs. Many DEGs are enriched in the endoplasmic reticulum stress (ERS) pathway and unfolded protein response (UPR) signal pathway in the ko04141 pathway. ERS and UPR pathway are involved in the response of hepatopancreas cells by ammonia stress. The RT-PCR and transcriptomic results indicate that PERK- eIF2 alpha and IRE1-xbp1 pathways take participate in the response to ERS in hepatopancreas cells induced by ammonia stress. The TUNEL assays results confirmed that ammonia stress induced apoptosis in hepatopancreatic cells. Furthermore, apoptosis of hepatopancreas cells under ammonia-stress is definitely induced by ERS through the PERK-eIF2 alpha-CHOP and IRE1-XBP1-CHOP signaling pathways.
分类号:
- 相关文献
作者其他论文 更多>>
-
Optimization of CRISPR/Cas9 Gene Editing System in Sheep (Ovis aries) Oocytes via Microinjection
作者:Wang, Haitao;Yang, Hengqian;Li, Tingting;Chen, Yan;Chen, Jieran;Zhang, Yuting;Zhang, Na;Ma, Runlin;Huang, Xun;Liu, Qiuyue;Yang, Hengqian;Zhang, Xiaosheng;Zhang, Jinlong;Zhang, Xiaosheng;Zhang, Jinlong
关键词:CRISPR/Cas9; microinjection; gene editing; sheep
-
The Distribution of Microplastic Pollution and Ecological Risk Assessment of Jingpo Lake-The World's Second Largest High-Mountain Barrier Lake
作者:Wang, Haitao;Zhao, Chen;Huo, Tangbin;Wang, Haitao;Zhao, Chen;Huo, Tangbin
关键词:microplastic; surface water; sediment; fish; ecological risk
-
MYB regulation of GST/GT mediates red petal spot development in cotton
作者:Zhang, Sujun;Wang, Haitao;Cai, Xiao;Liu, Cunjing;Tang, Liyuan;Li, Xinghe;Zhang, Jianhong;Chen, Jie;Jiang, Tao;Sun, Yaqian
关键词:Cotton; Red-spot-petal; MYB-encoding gene; Glutathione S transferase gene; Glycosyl-transferase gene
-
A plastid lipid-associated protein-encoding gene (GhPAP) that positively regulates fiber strength was identified via genetic mapping and transcriptomic analysis of a stable QTL on chromosome D06 of upland cotton
作者:Zhang, Sujun;Liu, Cunjing;Tang, Liyuan;Li, Xinghe;Cai, Xiao;Wang, Haitao;Zhang, Jianhong;Zhang, Jinfa
关键词:
-
Exogenous addition of glutamic-based organic nitrogen stimulates straw decomposition by altering bacterial community assemblage and network formation
作者:Hua, Lu;Wang, Haitao;Zhao, Yidong;Dong, Wenyi;Chen, Baoqing;Dong, Wenyi;Hua, Lu;Xia, Jie;Chen, Baoqing;Chen, Baoqing;Li, Wenqian;Wang, Weiran
关键词:Organic nitrogen source; Straw; Decomposition; Nitrogen release; Dominant bacterial community
-
Identification of the cysteine-rich transmembrane module CYSTM family in upland cotton and functional analysis of GhCYSTM5_A in cold and drought stresses
作者:Cai, Xiao;Tang, Liyuan;Wang, Haitao;Zhang, Sujun;Li, Xinghe;Liu, Cunjing;Zhang, Xiangyun;Zhang, Jianhong
关键词:CYSTM; Cold stress; Drought stress; Gossypium hirsutum
-
Depth-dependent patterns in soil organic C, enzymatic stochiometric ratio, and soil quality under conventional tillage and reduced tillage after 55-years
作者:Feng, Wenhao;Zhang, Wentao;Yang, Haishui;Li, Feng-Min;Zhou, Jie;Feng, Wenhao;Ai, Juanjuan;Dippold, Michaela A.;Sanchez-Rodriguez, Antonio Rafael;Li, Shiwei;Dittert, Klaus;Wang, Haitao;Apostolakis, Antonios;Muenter, Christiane
关键词:Reduced tillage; Soil organic carbon; Soil ecosystem multifunctionality; Soil depth; Enzymatic stoichiometric ratio; Microbial metabolic limitation