数字农科院2.0

Maternal Transcription Profiles At Different Stages For The Development Of Early Embryo In Buffalo

文献类型: 外文期刊

作者: Chen, Fumei;Lu, Yangqing;Pang, Chunying;Pang, Chunying;Liang, Xianwei;Pu, Liping;Zhang, Pengfei;Zhang, Ming;Xu, Zhuangzhuang;Deng, Tingxian;Fu, Qiang;Hou, Zhen;Deng, Tingxian;Liang, Xianwei

作者机构:

关键词: buffalo; hub gene; maternal genes; parthenogenesis; pre-implantation development; RNA sequencing; specific stage

期刊名称: REPRODUCTION IN DOMESTIC ANIMALS

ISSN: 0936-6768

年卷期: 2020 年 55 卷 4 期

页码:

摘要: Maternal mRNAs deposited in the egg during oogenesis are critical during the development of early embryo, before the activation of the embryonic genome. However, there is little known about the dynamic expression of maternally expressed genes in mammals. In this study, we made buffalo parthenogenesis as our research model to analyse maternal transcription profiles of pre-implantation embryo in buffalo using RNA sequencing. In total, 3,567 unique genes were detected to be differentially expressed among all constant stages during early embryo development (FPKM > 0). Interestingly, a total of 10,442 new genes were discovered in this study, and gene ontology analysis of the new differentially expressed genes indicated that the new genes have a wide cellular localization and are involved in many molecular functions and biological processes. Moreover, we identified eight clusters that were only highly expressed in a particular developmental stage and enriched a number of GO terms and KEGG pathways that were related to specific stage. Furthermore, we identified 1,530 hub genes (or key members) from the maternally expressed gene networks, and these hub genes were involved in 11 stage-specific modules. After visualization using Cytoscape 3.2.1 software, we obtained complex interaction network of hub genes, indicating the highly efficient cooperation between genes during the development in buffalo embryos. Further research of these genes will greatly deepen our understanding of embryo development in buffalo. Collectively, this research lays the foundation for future studies on the maternal genome function, buffalo nuclear transfer and parthenogenetic embryonic stem cells.

分类号:

  • 相关文献

[1]Identifying Hub Genes For Heat T.olerance In Water Buffalo ( Bubalus Bubalis) Using Transcriptome Data. Ye, Tingzhu,Li, Jun,Zhou, Yang,Yang, Liguo,Liu, Shenhe,Jamil, Ahmad Muhammad,Hua, Guohua,Deng, Tingxian,Liang, Aixin,Li, Zipeng. 2019

[2]Identification Of Lncrnas By Rna S.equencing Analysis During In V ivo Pre-Implantation Developmental Transformation In The Goat. Ling, YH, Zheng, Q, Li, YS, Sui, MH, Wu, H, Zhang, YH, Chu, MX, Ma, YH, Fang, FG, Xu, LN. 2019

[3]The Asynchronous Establishment Of Chromatin 3D Architecture Between In Vitro Fertilized And Uniparental Preimplantation Pig Embryos. Li, FF, Wang, DY, Song, RG, Cao, CW, Zhang, ZH, Wang, Y, Li, XL, Huang, JJ, Liu, Q, Hou, NP, Xu, BX, Li, X, Gao, XM, Jia, Y, Zhao, JG, Wang, YF. 2020

[4]Reproductive Polyphenism And Its Advantages In Aphids: Switching Between Sexual And Asexual Reproduction. Yan, S, Wang, WX, Shen, J. 2020

[5]Analysis Of Gene Co-Expression Networks A.nd Function Modules At D ifferent Developmental Stages Of Chicken Breast Muscle. Zhang, Genxi,Zhu, Xiaoyan,Zhang, Tao,Chen, Lan,Chen, Lan,Dai, Guojun,Han, Wei,Zhang, Genxi,Wang, Jinyu,Li, Guohui,Li, Guohui,Su, Yijun,Zhang, Tao,Xie, Kaizhou,Xie, Kaizhou. 2019

[6]Identification of gene co-expression networks and key genes regulating flavonoid accumulation in apple (Malus × domestica) fruit skin. Tiyu Ding,Ruiping Zhang,Hengtao Zhang,Zhe Zhou,Chonghuai Liu,Mengmeng Wu,Huan Wang,Haiqing Dong,Jihong Liu,Jia-Long Yao,Zhenli Yan. 2021

[7]Identification Of The Regulatory Networks And Hub Genes Controlling Alfalfa Floral Pigmentation Variation Using Rna-Sequencing Analysis. Duan, HR, Wang, LR, Cui, GX, Zhou, XH, Duan, XR, Yang, HS. 2020

[8]Identification Of Regulatory Networks And Hub Genes Controlling Nitrogen Uptake In Tea Plants [Camellia Sinensis (L.) O. Kuntze]. Zhang, F, Wang, LY, Bai, PX, Wei, K, Zhang, YZ, Ruan, L, Wu, LY, Cheng, H. 2020

[9]Complementary Rna-Sequencing Based Transcriptomics And I.traq Proteomics Reveal The M echanism Of The Alleviation Of Quinclorac Stress By Salicylic Acid In Oryza Sativa Ssp Japonica. Zhou, Weijun,Yang, Chong,Wang, Jian,Mao, Bizeng,Long, Meijuan,Li, Lan,Jin, Xiaoli,Islam, Faisal,Ali, Basharat,Ali, Basharat. 2017

[10]Characterization Of Circular Rnas In C.hinese Buffalo (Bubalus Bubalis) A dipose Tissue: A Focus On Circular Rnas Involved In Fat Deposition. Wei, Xuefeng,Huang, Jieping,Li, Fen,Ma, Yun,Zheng, Qiuzhi,Huang, Jieping,Lei, Chuzhao,Wang, Shuzhe,Ma, Yun,Shang, Jianghua,Zhao, Jinhui. 2019

[11]1-Mcp Treatment Affects Peach Fruit A.roma Metabolism As Revealed B y Transcriptomics And Metabolite Analyses. Han, Shuai,Cai, Hongfang,Jiang, Li,Yu, Zhifang,Yu, Mingliang,Ma, Ruijuan. 2019

[12]P8 Nuclear Receptor Responds To A.caricides Exposure And Regulates T ranscription Of P450 Enzyme In The Two-Spotted Spider Mite, Tetranychus Urticae. Hu Jia,Lu Wencai,Hu Yuan,Liu Peiling,Xu Zhifeng,Xu Zhifeng,He Lin,Hu Jia,Liu Peiling,He Lin,Hu Yuan. 2019

[13]Transcriptomic Studies Reveal A Key M.etabolic Pathway Contributing To A Well-Maintained Photosynthetic System Under Drought Stress In Foxtail Millet (Setaria Italica L.). Wen, Xiaojie,Shi, Weiping,Guo, Pingyi,Yao, Jiayan,Sun, Qian,Cheng, Jingye,Xiang, Peng,Wang, Jixiang,Cheng, Jingye,Hou, Liyuan,Shi, Guanyan,Guo, Jie,Yuan, Xiangyang,Dong, Shuqi. 2018

[14]Genome-Wide Analysis And Identification Of T.he Low Potassium Stress R esponsive Gene Simyb3 In Foxtail Millet (Setariaitalica L.). Xu, Zhaoshi,Chen, Xueyan,Ma, Youzhi,Song, Jianming,Hu, Liqin,Cheng, Dungong,Chen, Ming,Cao, Xinyou,Li, Haosheng,Li, Liancheng,Liu, Cheng,Liu, Jianjun,Zhao, Zhendong,Zhou, Yongbin,Liu, Aifeng,Zhang, Rongzhi. 2019

[15]Comparative Transcriptome Reveals Circadian And H.ormonal Control Of Adventitious R ooting In Mulberry Hardwood Cuttings. Cheng, Jialing,Cheng, Jialing,Liu, Li,Shen, Qiudi,Shang, Chunqiong,Shen, Qiudi,Liu, Li,Du, Wei,Cao, Xu,Cao, Xu,Shang, Chunqiong. 2018

[16]An Integrated Analysis Of Qtl M.apping And Rna Sequencing P rovides Further Insights And Promising Candidates For Pod Number Variation In Rapeseed (Brassica Napus L.). Yang, Yuhua,Wang, Xinfa,Zhan, Jiepeng,Ye, Jiang,Wang, Hanzhong,Liu, Guihua,Chen, Bo,Shi, Jiaqin,Luo, Meizhong. 2017

[17]Detecting Novel Loci Underlying Rice B.last Resistance By Integrating A Genome-Wide Association Study And Rna Sequencing. Wang, Caihong,Wang, Shan,Wang, Yiping,Lu, Qing,Lu, Qing,Niu, Xiaojun,Yu, Hanyong,Yuan, Xiaoping,Zhang, Mengchen,Feng, Yue,Wei, Xinghua,Xu, Qun,Yang, Yaolong. 2019

[18]Involvement Of Salicylic Acid In A.nthracnose Infection In Tea P lants Revealed By Transcriptome Profiling. Shi, Yun-Long,Sheng, Yue-Yue,Liang, Yue-Rong,Ye, Jian-Hui,Yang, Rui,Wang, Kai-Rong,Li, Da,Guo, Xiao-Yuan,Cai, Zhuo-Yu,Zheng, Xin-Qiang,Li, Xu-Min,Li, Qing-Sheng,Lu, Jian-Liang,Zhang, Long-Jie. 2019

[19]Genome-wide identification and comparative analysis of drought related genes in roots of two maize inbred lines with contrasting drought tolerance by RNA sequencing. Tang Huai-jun,Xie Xiao-qing,Zhang Deng-feng,Liu Cheng,Song Yan-chun,Shi Yun-su,Li Yu,Wang Tian-yu,Hao Lu-yang,Liu Xu-yang,Li Yong-xiang,Li Chun-hui,Zhang Xiao-jing,Sun Bao-cheng. 2020

[20]Transcriptome Of Porcine Alveolar Macrophages A.ctivated By Interferon-Gamma And L ipopolysaccharide. Liu, Q, Zhang, YL, Hu, W, Hu, SP, Zhang, Z, Cai, XH, He, XJ. 2018

作者其他论文 更多>>