Ministry of Education Key Laboratory for Ecology of Tropical Islands, Key Laboratory of Tropical Animal and Plant Ecology of Hainan Province, College of Life Sciences, Hainan Normal University, Haikou, China.
Hainan Observation and Research Station of Dongzhaigang Mangrove Wetland Ecosystem, Haikou, China.
Plant Genome. 2024 Jun;17(2):e20450. doi: 10.1002/tpg2.20450. Epub 2024 Apr 11.
Avicennia marina, known for its remarkable adaptability to the challenging coastal environment, including high salinity, tide, and anaerobic soils, holds pivotal functions in safeguarding the coastal ecosystem. Long non-coding RNAs (lncRNAs) have emerged as significant players in various natural processes of plants such as development. However, lncRNAs in A. marina remain largely unknown and uncharacterized. Here, we employed the transcriptome datasets from multiple tissues, such as root, leaf, and seed, to detect and characterize the lncRNAs of A. marina. Analyzing synthetically, we finally identified 6333 lncRNAs in the A. marina. These lncRNAs exhibited distinct features compared to messenger RNAs, including larger exons, lower guanine-cytosine contents, lower expression levels, and higher tissue specificities. Moreover, we identified thousands of tissue-specific lncRNAs across the examined tissues and further found that these tissue-specific lncRNAs were significantly enriched in biological processes related to the major functions of their corresponding tissues. For instance, leaf-specific lncRNAs showed prominent enrichment in photosynthesis, oxidation-reduction processes, and light harvesting. By providing a comprehensive dataset and functional annotations for A. marina lncRNAs, this study offers a valuable overview of lncRNAs in A. marina and lays the fundamental foundation for further functional exploring of them.
海桑,以其对包括高盐度、潮汐和缺氧土壤在内的挑战性海岸环境的显著适应性而闻名,在保护海岸生态系统方面发挥着关键作用。长非编码 RNA(lncRNA)在植物的各种自然过程中,如发育中,已经成为重要的参与者。然而,海桑中的 lncRNA 仍然很大程度上未知和未被描述。在这里,我们利用来自根、叶和种子等多种组织的转录组数据集来检测和描述海桑的 lncRNA。综合分析后,我们最终在海桑中鉴定出 6333 个 lncRNA。这些 lncRNA 与信使 RNA 相比具有不同的特征,包括更大的外显子、更低的鸟嘌呤-胞嘧啶含量、更低的表达水平和更高的组织特异性。此外,我们在检测的组织中鉴定了数千个组织特异性 lncRNA,并进一步发现这些组织特异性 lncRNA 在与其相应组织主要功能相关的生物学过程中显著富集。例如,叶特异性 lncRNA 在光合作用、氧化还原过程和光捕获中表现出明显的富集。本研究为海桑 lncRNA 提供了一个全面的数据集和功能注释,为进一步探索其功能奠定了基础。