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玉米长非编码 RNA 响应干旱胁迫的时空转录组动态

Spatio-Temporal Transcriptional Dynamics of Maize Long Non-Coding RNAs Responsive to Drought Stress.

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Genes (Basel). 2019 Feb 13;10(2):138. doi: 10.3390/genes10020138.

Abstract

Long non-coding RNAs (lncRNAs) have emerged as important regulators in plant stress response. Here, we report a genome-wide lncRNA transcriptional analysis in response to drought stress using an expanded series of maize samples collected from three distinct tissues spanning four developmental stages. In total, 3488 high-confidence lncRNAs were identified, among which 1535 were characterized as drought responsive. By characterizing the genomic structure and expression pattern, we found that lncRNA structures were less complex than protein-coding genes, showing shorter transcripts and fewer exons. Moreover, drought-responsive lncRNAs exhibited higher tissue- and development-specificity than protein-coding genes. By exploring the temporal expression patterns of drought-responsive lncRNAs at different developmental stages, we discovered that the reproductive stage R1 was the most sensitive growth stage with more lncRNAs showing altered expression upon drought stress. Furthermore, lncRNA target prediction revealed 653 potential lncRNA-messenger RNA (mRNA) pairs, among which 124 pairs function in -acting mode and 529 in . Functional enrichment analysis showed that the targets were significantly enriched in molecular functions related to oxidoreductase activity, water binding, and electron carrier activity. Multiple promising targets of drought-responsive lncRNAs were discovered, including the V-ATPase encoding gene, . These findings extend our knowledge of lncRNAs as important regulators in maize drought response.

摘要

长非编码 RNA(lncRNA)已成为植物应激反应中的重要调控因子。在这里,我们使用三个不同组织在四个发育阶段收集的扩展玉米样本系列,报告了一个全基因组 lncRNA 转录分析,以响应干旱胁迫。总共鉴定了 3488 个高可信度 lncRNA,其中 1535 个被表征为对干旱有反应。通过表征基因组结构和表达模式,我们发现 lncRNA 结构比蛋白质编码基因更简单,表现出更短的转录物和更少的外显子。此外,干旱响应 lncRNA 表现出比蛋白质编码基因更高的组织和发育特异性。通过探索不同发育阶段干旱响应 lncRNA 的时间表达模式,我们发现生殖阶段 R1 是最敏感的生长阶段,更多的 lncRNA 在受到干旱胁迫时表现出改变的表达。此外,lncRNA 靶标预测显示了 653 个潜在的 lncRNA-messenger RNA(mRNA)对,其中 124 对以反式作用模式发挥作用,529 对以顺式作用模式发挥作用。功能富集分析表明,靶标在与氧化还原酶活性、水结合和电子载体活性相关的分子功能中显著富集。发现了多个有前途的干旱响应 lncRNA 靶标,包括 V-ATPase 编码基因。这些发现扩展了我们对 lncRNA 作为玉米干旱响应中重要调控因子的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a8/6410058/190b9834af79/genes-10-00138-g001.jpg

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