Comparative Study of Transcriptome Profiles of Mouse Livers and Skins Infected by Fork-Tailed or Non-Fork-Tailed Schistosoma japonicum

文献类型: 外文期刊

第一作者: Yang, Yan

作者: Yang, Yan;Hu, Shuang;Chang, Hua;Xiang, Xun;Yang, Jian-Fa;Zou, Feng-Cai;He, Jun-Jun

作者机构:

关键词: Schistosoma japonicum;transcriptome profiles;liver;skin;morphology distinct cercariae

期刊名称:FRONTIERS IN MICROBIOLOGY ( 影响因子:5.64; 五年影响因子:6.32 )

ISSN: 1664-302X

年卷期: 2017 年 8 卷

页码:

收录情况: SCI

摘要: Schistosoma japonicum (S. japonicum) is a worldwide spread pathogen which penetrates host skin and then induces several diseases in infected host, such as fibrosis, formation of granulomas, hepatocirrhosis, and hepatomegaly. In present study, for the first time, transcriptomic profiles of mouse livers and skins infected by fork-tailed S. japonicum cercaria or non-fork-tailed S. japonicum cercaria were analyzed by using RNA-seq. The present findings demonstrated that transcriptomic landscapes of livers and skins infected by fork-tailed S. japonicum cercaria or non-fork-tailed S. japonicum cercaria were different. S. japonicum has great influence on hepatic metabolic processes. Fork-tailed S. japonicum cercaria upregulated hepatic metabolic processes, while non-fork-tailed S. japonicum cercaria downregulated hepatic metabolic processes. For the metabolism process or the metabolism enzyme expressional change, the pharmacokinetics of host could be changed during S. japonicum infection, regardless the biotypes of S. japonicum cercariae. The changes of infected skins focused on upregulation of immune response. During the S. japonicum skin infection period, fork-tailed S. japonicum cercaria infection induced stronger immune response comparing with that immune response triggered by non-fork-tailed S. japonicum cercaria. The transcription factor enrichment analysis showed that Irf7, Stat1 and Stat2 could play important roles in gene regulation during fork-tailed S. japonicum cercaria infection.

分类号:

  • 相关文献

[1]Molecular cloning, characterization and expression analysis of gonadal P450 aromatase in the half-smooth tongue-sole, Cynoglossus semilaevis. Deng, Si-Ping,Chen, Song-Lin,Xu, Jian-Yong,Liu, Ben-Wei,Deng, Si-Ping.

[2]Expression of Vimentin in hair follicle growth cycle of inner Mongolian Cashmere goats. Rile, Nai,Liu, Zhihong,Xie, Yuchun,Su, Rui,Zhang, Yanjun,Wang, Ruijun,Li, Jie,Xiao, Hongmei,Li, Jinquan,Rile, Nai,Liu, Zhihong,Xie, Yuchun,Rile, Nai,Rile, Nai,Qi, Jingkai,Zhao, Meng,Gao, Lixia. 2018

[3]Characterization of MicroRNA* Species in Peking Duck Skin. Zhang Li,Xiao Mei,An Li-long,Xie Xiu-juan,Lin Shu-dai,Luo Wen,Jia Xin-zheng,Nie Qing-hua,Zhang Xi-quan,Jia Shan-gang. 2013

[4]Molecular Cloning, Characterization and Expression Analysis of Duck Tyrosinase-Related Protein-1. Wang, Cui,Yu, Huawen,Peng, Xiuli,Feng, Yanping,Gong, Yanzhang,Li, Shijun,Liang, Zhenhua. 2010

[5]The Characteristics Of Gelatin Extracted From Sturgeon (acipenser Baeri) Skin Using Various Pretreatments. Hao, Shuxian,Li, Laihao,Yang, Xianqing,Cen, Jianwei,Shi, Hong,Bo, Qi,He, Junyan.

[6]De novo assembly and characterization of skin transcriptome using RNAseq in sheep (Ovis aries). Yue, Y. J.,Yang, B. H.,Yue, Y. J.,Liu, J. B.,Yang, M.,Han, J. L.,Guo, T. T.,Guo, J.,Feng, R. L.,Yang, B. H.. 2015

[7]MicroRNA profile analysis on duck feather follicle and skin with high-throughput sequencing technology. Zhang, Li,Su, Ying,Nie, Qinghua,Xie, Xiujuan,Luo, Wen,Jia, Xinzheng,Zhang, Xiquan.

[8]Studies on Aroma Volatile Constituents from Four Varieties of Ripe Mango in China. Wei, Chang-bin,Wu, Hong-xia,Liu, Yu-ge,Xing, Shan-shan,Wang, Song-biao,Zang, Xiao-ping,Zhan, Ru-lin.

[9]Molecular characterization of SjBIRP, another apoptosis inhibitor, from Schistosoma japonicum. Dao, Jinwei,Zhu, Lihui,Luo, Rong,Hu, Chao,Wang, Yuqing,Li, Hao,Lu, Ke,Liu, Jinming,Lin, Jiaojiao,Cheng, Guofeng,Dao, Jinwei,Cheng, Guofeng. 2014

[10]Cloning and expression of gynecophoral canal protein gene of Schistosoma japonicum (Chinese strain). Jin, YM,Lin, JJ,Feng, XG,Zhang, L,Wu, XF,Zhou, YC,Cai, YM. 2002

[11]Cloning and expression of actin gene of Schistosoma japonicum Chinese strain. Zhu, JG,Lin, JJ,Feng, XG,Wu, XF,Zhou, YC,Cai, YM. 2000

[12]Proteomic analysis of differentially expressed proteins between the male and female worm of Schistosomal japonicum after pairing. Cheng, GF,Lin, JJ,Feng, XG,Fu, ZQ,Jin, YM,Yuan, CX,Zhou, YC,Cai, YM. 2005

[13]Production and testing of Schistosoma japonicum candidate vaccine antigens in the natural ovine host. Taylor, MG,Huggins, MC,Shi, FH,Lin, JJ,Tian, E,Ye, P,Shen, W,Qian, CG,Lin, BF,Bickle, QD. 1998

[14]A novel colloidal gold immunochromatography assay strip for the diagnosis of schistosomiasis japonica in domestic animals. Xu, Rui,Feng, Jintao,Hong, Yang,Lv, Chao,Zhao, Dengyun,Lin, Jiaojiao,Lu, Ke,Li, Hao,Liu, Jinming,Cao, Xiaodan,Wang, Tao,Zai, Jinli,Wang, Zhaozhe,Jia, Bingguang,Han, Qian,Zhu, Chuangang,Lin, Jiaojiao. 2017

[15]Studies on the expression of the 28kD glutathione S-transferase gene from Schistosoma japonicum in the silkworm (Bombyx mori) larvae and insect cells. Tian, E,Yang, GZ,Cai, YM,Shi, FH,Wu, XF. 1997

[16]Analysis of early hepatic stage schistosomula gene expression by subtractive expressed sequence tags library. Wang, Xinzhi,Feng, XinGang,Fu, Zhiqiang,Jin, Yamei,Peng, Jinbiao,Lin, JiaoJiao,Gobert, Geoffrey N.. 2009

[17]Gene cloning, expression and vaccine testing of Schistosoma japonicum SjFABP. Liu, JM,Cai, XZ,Lin, JJ,Fu, ZQ,Yang, GZ,Shi, FH,Cai, YM,Shen, W,Taylor, MG,Wu, XF. 2004

[18]A specific PCR assay for the identification and differentiation of Schistosoma japonicum geographical isolates in mainland China based on analysis of mitochondrial genome sequences. Zhao, Guang-Hui,Li, Juan,Song, Hui-Qun,Li, Xiao-Yan,Zou, Feng-Cai,Zhu, Xing-Quan,Zhao, Guang-Hui,Zhao, Guang-Hui,Li, Juan,Song, Hui-Qun,Chen, Fen,Lin, Rui-Qing,Yuan, Zi-Guo,Weng, Ya-Biao,Li, Xiao-Yan,Zou, Feng-Cai,Zhu, Xing-Quan,Hu, Min,Zhu, Xing-Quan.

[19]Molecular characterization and expression profile of nanos in Schistosoma japonicum and its influence on the expression several mammalian stem cell factors. Giri, Bikash Ranjan,Du, Xiaoli,Xia, Tianqi,Chen, Yongjun,Li, Hao,Cheng, Guofeng.

[20]Dose-dependent Inhibition of Gynecophoral Canal Protein Gene Expression in Vitro in the Schistosome (Schistosoma japonicum) by RNA Interference. Cheng, GF,Lin, JJ,Shi, Y,Jin, YX,Fu, ZQ,Jin, YM,Zhou, YC,Cai, YM.

作者其他论文 更多>>