首页> 外文期刊>BMC Plant Biology >High-throughput deep sequencing reveals that microRNAs play important roles in salt tolerance of euhalophyte Salicornia europaea
【24h】

High-throughput deep sequencing reveals that microRNAs play important roles in salt tolerance of euhalophyte Salicornia europaea

机译:高通量深度测序表明,microRNA在真核植物盐芥中的耐盐性中起重要作用

获取原文
           

摘要

Background microRNAs (miRNAs) are implicated in plant development processes and play pivotal roles in plant adaptation to environmental stresses. Salicornia europaea, a salt mash euhalophyte, is a suitable model plant to study salt adaptation mechanisms. S. europaea is also a vegetable, forage, and oilseed that can be used for saline land reclamation and biofuel precursor production on marginal lands. Despite its importance, no miRNA has been identified from S. europaea thus far. Results Deep sequencing was performed to investigate small RNA transcriptome of S. europaea. Two hundred and ten conserved miRNAs comprising 51 families and 31 novel miRNAs (including seven miRNA star sequences) belonging to 30 families were identified. About half (13 out of 31) of the novel miRNAs were only detected in salt-treated samples. The expression of 43 conserved and 13 novel miRNAs significantly changed in response to salinity. In addition, 53 conserved and 13 novel miRNAs were differentially expressed between the shoots and roots. Furthermore, 306 and 195 S. europaea unigenes were predicted to be targets of 41 conserved and 29 novel miRNA families, respectively. These targets encoded a wide range of proteins, and genes involved in transcription regulation constituted the largest category. Four of these genes encoding laccase, F-box family protein, SAC3/GANP family protein, and NADPH cytochrome P-450 reductase were validated using 5′-RACE. Conclusions Our results indicate that specific miRNAs are tightly regulated by salinity in the shoots and/or roots of S. europaea, which may play important roles in salt tolerance of this euhalophyte. The S. europaea salt-responsive miRNAs and miRNAs that target transcription factors, nucleotide binding site-leucine-rich repeat proteins and enzymes involved in lignin biosynthesis as well as carbon and nitrogen metabolism may be applied in genetic engineering of crops with high stress tolerance, and genetic modification of biofuel crops with high biomass and regulatable lignin biosynthesis.
机译:背景微RNA(miRNA)与植物发育过程有关,并在植物适应环境胁迫中发挥关键作用。 Salicornia europaea是一种盐糊真盐植物,是研究盐适应机制的合适模型植物。欧洲链球菌也是一种蔬菜,牧草和油料种子,可用于边际土地上的盐渍土地开垦和生物燃料前体生产。尽管其重要性,到目前为止,尚未从欧洲链球菌中鉴定出miRNA。结果进行了深度测序以研究欧洲链球菌的小RNA转录组。鉴定了包含51个家族的210个保守miRNA和属于30个家族的31个新的miRNA(包括7个miRNA星序列)。仅在盐处理的样品中检测到约一半(31个中的13个)新型miRNA。 43个保守和13个新的miRNA的表达响应盐度而显着改变。另外,在茎和根之间差异表达53个保守的miRNA和13个新的miRNA。此外,预计分别有306个和195个欧洲链球菌单基因成为41个保守miRNA家族和29个新颖miRNA家族的靶标。这些靶标编码各种蛋白质,参与转录调控的基因构成最大的类别。使用5'-RACE验证了编码漆酶,F-box家族蛋白,SAC3 / GANP家族蛋白和NADPH细胞色素P-450还原酶的这些基因中的四个。结论我们的结果表明,特定的miRNA受欧洲链球菌芽和/或根中盐度的严格调控,这可能在该真盐的耐盐性中起重要作用。针对转录因子,富含木质素生物合成以及碳和氮代谢的转录因子,富含核苷酸结合位点的亮氨酸重复蛋白和酶的欧洲链球菌盐反应性miRNA和miRNA可以用于具有高抗逆性的作物的基因工程中,高生物量和可调节木质素生物合成的生物燃料作物的合成和遗传修饰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号