Research Infrastructure for Marine Biological Resources Department, Stazione Zoologica Anton Dohrn, Via Acton 55, 80133 Napoli, Italy.
Department of Integrative Marine Ecology, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Napoli, Italy.
Int J Mol Sci. 2024 Jul 23;25(15):8005. doi: 10.3390/ijms25158005.
Epitranscriptomics is considered as a new regulatory step in eukaryotes for developmental processes and stress responses. The aim of this study was, for the first time, to identify RNA methyltransferase (writers) and demethylase (erasers) in four investigated species, i.e., the dinoflagellates and , the diatom , and the green alga . As query sequences for the enzymatic classes of interest, we selected those ones that were previously detected in marine plants, evaluating their expression upon nutrient starvation stress exposure. The hypothesis was that upon stress exposure, the activation/deactivation of specific writers and erasers may occur. In microalgae, we found almost all plant writers and erasers (ALKBH9B, ALKBH10B, MTB, and FIP37), except for three writers (MTA, VIRILIZER, and HAKAI). A sequence similarity search by scanning the corresponding genomes confirmed their presence. Thus, we concluded that the three writer sequences were lacking from the studied transcriptomes probably because they were not expressed in those experimental conditions, rather than a real lack of these genes from their genomes. This study showed that some of them were expressed only in specific culturing conditions. We also investigated their expression in other culturing conditions (i.e., nitrogen depletion, phosphate depletion, and Zinc addition at two different concentrations) in , giving new insights into their possible roles in regulating gene expression upon stress.
表观转录组学被认为是真核生物在发育过程和应激反应中的一个新的调控步骤。本研究的目的是首次在四个研究物种中鉴定 RNA 甲基转移酶(writer)和去甲基化酶(eraser),即双鞭甲藻和,硅藻和绿藻。作为感兴趣的酶类的查询序列,我们选择了那些先前在海洋植物中检测到的序列,评估它们在营养饥饿应激暴露时的表达情况。假设是在应激暴露时,特定的 writer 和 eraser 可能会被激活/失活。在微藻中,我们发现了几乎所有的植物 writer 和 eraser(ALKBH9B、ALKBH10B、MTB 和 FIP37),除了三个 writer(MTA、VIRILIZER 和 HAKAI)。通过扫描相应基因组进行序列相似性搜索证实了它们的存在。因此,我们得出结论,这三个 writer 序列在研究的转录组中缺失可能是因为它们在这些实验条件下没有表达,而不是它们的基因组中真的缺少这些基因。本研究表明,其中一些仅在特定的培养条件下表达。我们还研究了它们在其他培养条件(即氮饥饿、磷饥饿和锌添加在两个不同的浓度)中的表达,在中,为它们在应激时调节基因表达的可能作用提供了新的见解。