Institute of Tropical Bioscience and Biotechnology, MOA Key Laboratory of Tropical Crops Biology and Genetic Resources, Hainan Bioenergy Center, Chinese Academy of Tropical Agricultural Sciences, Xueyuan Road 4, Haikou, 571101, China.
Hainan Academy of Tropical Agricultural Resource, Chinese Academy of Tropical Agricultural Sciences, Xueyuan Road 4, Haikou, 571101, China.
BMC Genomics. 2020 Mar 5;21(1):212. doi: 10.1186/s12864-020-6633-x.
Salt significantly depresses the growth and development of the greater duckweed, Spirodela polyrhiza, a model species of floating aquatic plants. Physiological responses of this plant to salt stress have been characterized, however, the roles of long noncoding RNAs (lncRNAs) remain unknown.
In this work, totally 2815 novel lncRNAs were discovered in S. polyrhiza by strand-specific RNA sequencing, of which 185 (6.6%) were expressed differentially under salinity condition. Co-expression analysis indicated that the trans-acting lncRNAs regulated their co-expressed genes functioning in amino acid metabolism, cell- and cell wall-related metabolism, hormone metabolism, photosynthesis, RNA transcription, secondary metabolism, and transport. In total, 42 lncRNA-mRNA pairs that might participate in cis-acting regulation were found, and these adjacent genes were involved in cell wall, cell cycle, carbon metabolism, ROS regulation, hormone metabolism, and transcription factor. In addition, the lncRNAs probably functioning as miRNA targets were also investigated. Specifically, TCONS_00033722, TCONS_00044328, and TCONS_00059333 were targeted by a few well-studied salt-responsive miRNAs, supporting the involvement of miRNA and lncRNA interactions in the regulation of salt stress responses. Finally, a representative network of lncRNA-miRNA-mRNA was proposed and discussed to participate in duckweed salt stress via auxin signaling.
This study is the first report on salt-responsive lncRNAs in duckweed, and the findings will provide a solid foundation for in-depth functional characterization of duckweed lncRNAs in response to salt stress.
盐显著抑制浮萍(浮萍的模式物种)的生长和发育,浮萍是一种漂浮水生植物。然而,该植物对盐胁迫的生理反应的特征,长非编码 RNA(lncRNA)的作用仍然未知。
在这项工作中,通过链特异性 RNA 测序在 S. polyrhiza 中总共发现了 2815 个新的 lncRNA,其中 185(6.6%)在盐胁迫条件下表达差异。共表达分析表明,反式作用 lncRNA 调节其共表达基因在氨基酸代谢、细胞和细胞壁相关代谢、激素代谢、光合作用、RNA 转录、次生代谢和运输中发挥作用。总共发现了 42 个可能参与顺式作用调控的 lncRNA-mRNA 对,这些相邻基因参与细胞壁、细胞周期、碳代谢、ROS 调节、激素代谢和转录因子。此外,还研究了可能作为 miRNA 靶标的 lncRNA。具体而言,TCONS_00033722、TCONS_00044328 和 TCONS_00059333 被几个研究较好的盐响应 miRNA 靶向,支持 miRNA 和 lncRNA 相互作用在盐胁迫反应调节中的参与。最后,提出并讨论了一个代表 lncRNA-miRNA-mRNA 的网络,该网络通过生长素信号参与浮萍盐胁迫。
本研究是浮萍中盐响应 lncRNA 的首次报道,研究结果将为深入研究浮萍 lncRNA 对盐胁迫的功能特征提供坚实的基础。