Transcriptomic Analysis of Long Non-Coding RNAs and Coding Genes Uncovers a Complex Regulatory Network That Is Involved in Maize Seed Development

文献类型: 外文期刊

第一作者: Zhu, Ming

作者: Zhu, Ming;Jiang, Haiyang;Zhu, Ming;Zhang, Min;Xing, Lijuan;Li, Wenzong;Wang, Lei;Xu, Miaoyun

作者机构:

关键词: maize;seed development;lncRNA;mRNA;co-expression;ceRNA

期刊名称:GENES ( 影响因子:4.096; 五年影响因子:4.339 )

ISSN: 2073-4425

年卷期: 2017 年 8 卷 10 期

页码:

收录情况: SCI

摘要: Long non-coding RNAs (lncRNAs) have been reported to be involved in the development of maize plant. However, few focused on seed development of maize. Here, we identified 753 lncRNA candidates in maize genome from six seed samples. Similar to the mRNAs, lncRNAs showed tissue developmental stage specific and differential expression, indicating their putative role in seed development. Increasing evidence shows that crosstalk among RNAs mediated by shared microRNAs (miRNAs) represents a novel layer of gene regulation, which plays important roles in plant development. Functional roles and regulatory mechanisms of lncRNAs as competing endogenous RNAs (ceRNA) in plants, particularly in maize seed development, are unclear. We combined analyses of consistently altered 17 lncRNAs, 840 mRNAs and known miRNA to genome-wide investigate potential lncRNA-mediated ceRNA based on ceRNA hypothesis. The results uncovered seven novel lncRNAs as potential functional ceRNAs. Functional analyses based on their competitive coding-gene partners by Gene Ontology (GO) and KEGG biological pathway demonstrated that combined effects of multiple ceRNAs can have major impacts on general developmental and metabolic processes in maize seed. These findings provided a useful platform for uncovering novel mechanisms of maize seed development and may provide opportunities for the functional characterization of individual lncRNA in future studies.

分类号:

  • 相关文献

[1]Dissection of Myogenic Differentiation Signatures in Chickens by RNA-Seq Analysis. Li, Tingting,Zhang, Genxi,Wu, Pengfei,Liu, Qiuhong,Wang, Jinyu,Duan, Lian,Li, Guohui. 2018

[2]Integration of lncRNA-miRNA-mRNA reveals novel insights into oviposition regulation in honey bees. Chen, Xiao,Chen, Chao,Shi, Wei,Liu, Zhiguang,Wang, Huihua,Guo, Haikun,Ma, Ce,Lu, Qian. 2017

[3]LncRNA as ceRNAs may be involved in lactation process. Yu, Shuai,Zhao, Yong,Lai, Fangnong,Chu, Meiqiang,Hao, Yanan,Feng, Yanni,Li, Lan,Shen, Wei,Min, Lingjiang,Zhang, Hongfu,Liu, Jing,Cheng, Ming. 2017

[4]Integrated analysis of non-coding RNA and mRNA expression profiles of 2 pig breeds differing in muscle traits. Sun, J.,Xie, M.,Huang, Z.,Chen, T.,Xi, Qianyun,Wu, T.,Zhang, Y.,Li, H.,Sun, R.,Wang, J.. 2017

[5]Identification and characterization of long non-coding RNAs in subcutaneous adipose tissue from castrated and intact full-sib pair Huainan male pigs. Wang, Jing,Hua, Liushuai,Chen, Junfeng,Zhang, Jiaqing,Bai, Xianxiao,Gao, Binwen,Shi, Zhihai,Sheng, Weidong,Xing, Baosong,Li, Congjun,Gao, Yuan. 2017

[6]An Integrated Analysis of miRNAs and Methylated Genes Encoding mRNAs and lncRNAs in Sheep Breeds with Different Fecundity. Miao, Xiangyang,Luo, Qingmiao,Zhao, Huijing,Qin, Xiaoyu. 2017

[7]Differential regulation of mRNAs and lncRNAs related to lipid metabolism in two pig breeds. Huang, Wanlong,Zhang, Xiuxiu,Li, Ai,Xie, Lingli,Miao, Xiangyang. 2017

[8]Long non-coding RNA analysis of muscular responses to testosterone deficiency in Huainan male pigs. Xing, Baosong,Bai, Xianxiao,Guo, Hongxia,Chen, Junfeng,Hua, Liushuai,Zhang, Jiaqing,Ma, Qiang,Ren, Qiaoling,Wang, Jing,Wang, Huashuai.

[9]Discovery of novel long non-coding RNAs induced by subgroup J avian leukosis virus infection in chicken. Qiu, Lingling,Li, Zhiteng,Chang, Guobin,Bi, Yulin,Xu, Lu,Zhang, Yang,Zhao, Wenming,Xu, Qi,Chen, Guohong,Liu, Xiangping.

[10]Divergently expressed gene identification and interaction prediction of long noncoding RNA and mRNA involved in duck reproduction. Ren, Jindong,Hu, Jianhong,Ren, Jindong,Du, Xue,Zeng, Tao,Chen, Li,Shen, Junda,Lu, Lizhi.

[11]De novo transcriptome sequencing and gene expression profiling of Elymus nutans under cold stress. Fu, Juanjuan,Hu, Tianming,Yang, Peizhi,Miao, Yanjun,Shao, Linhui. 2016

[12]Construction and co-expression of polycistronic plasmids encoding bio-degumming-related enzymes to improve the degumming process of ramie fibres. Cheng, Yi,Liu, Zhengchu,Zeng, Jie,Cheng, Lifeng,Yan, Zhun,Duan, Shengwen,Feng, Xiangyuan,Zheng, Ke,Zheng, Xia,Wang, Ruijun.

[13]Isolation and characterization of a novel chalcone synthase gene family from mulberry. Wang, Chuanhong,Zhi, Shuang,Liu, Changying,Xu, Fengxiang,Zhao, Aichun,Wang, Xiling,Tang, Xing,Yu, Maode,Wang, Chuanhong,Zhi, Shuang,Liu, Changying,Xu, Fengxiang,Zhao, Aichun,Wang, Xiling,Tang, Xing,Yu, Maode,Li, Zhengang,Huang, Ping.

[14]The Establishment of Double-Transgenic Mice that Co-Express the appA and MxA Genes Mediated by Type A Spermatogonia In vivo. Bai Li-jing,Ju Hui-ming,Mu Yu-Lian,Yang Shu-lin,Ren Hong-yan,Ao Hong,Li Kui,Bai Li-jing,Wang Chu-duan,Ju Hui-ming. 2014

[15]Constructing a comprehensive gene co-expression based interactome in Bos taurus. Chen, Yan,Zhang, Wengang,Xu, Ling,Gao, Xue,Zhang, Lupei,Gao, Huijiang,Xu, Lingyang,Li, Junya,Liu, Yining,Du, Min,Zhao, Min. 2017

[16]Construction and Validation of a Dual-Transgene Vector System for Stable Transformation in Plants. He, Zhimin,He, Reqing,Yan, Jindong,Zhong, Ming,Zhao, Xiaoying,Liu, Xuanming,He, Zhimin,Wang, Xu,Liu, Bin,Bian, Mingdi,Liu, Xuanming. 2016

[17]Enhanced soluble production of cholera toxin B subunit in Escherichia coil by co-expression of SKP chaperones. Zhang, Yuanpeng,Qiao, Xuwen,Yu, Xiaoming,Chen, Jin,Hou, Liting,Bi, Zhixiang,Zheng, Qisheng,Hou, Jibo,Zhang, Yuanpeng,Qiao, Xuwen,Yu, Xiaoming,Chen, Jin,Hou, Liting,Bi, Zhixiang,Zheng, Qisheng,Hou, Jibo. 2017

[18]Characterization of CIPK Family in Asian Pear (Pyrus bretschneideri Behd) and Co-expressin Analysis Related to Salt and Osmotic Stress Responses. Tang, Jun,Lin, Jing,Chang, Youhong,Tang, Jun,Cheng, Zong-Ming. 2016

[19]Characterization of a novel lipase and its specific foldase from Acinetobacter sp XMZ-26. Zheng, Xiaomei,Wu, Ningfeng,Fan, Yunliu. 2012

[20]Transcriptomic analyses reveal complex and interconnected sucrose signaling cascades in developing seeds of castor bean. Wang, Bin,Haque, Mohammad Enamul,Xu, Wei,Li, Fei,Liu, Aizhong,Wang, Bin,Haque, Mohammad Enamul,Zhang, Yang,Liu, Aizhong. 2018

作者其他论文 更多>>