Guvatova Zulfiia G, Fedorova Maria S, Vershinina Yulia S, Pudova Elena A, Lipatova Anastasiya V, Volodin Vsevolod V, Gladysh Natalya S, Tokarev Artemiy T, Kornev Alexey B, Pavlov Vladislav S, Bakhtogarimov Ildar R, Krysanov Evgeny Y, Moskalev Alexey A, Krasnov George S, Kudryavtseva Anna V
Center for Precision Genome Editing and Genetic Technologies for Biomedicine Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Institute of Problems of Chemical Physics of Russian Academy of Sciences, 142432 Chernogolovka, Russia.
Life (Basel). 2021 Feb 11;11(2):137. doi: 10.3390/life11020137.
is a genus of small annual killifish found in Africa. Due to the relatively short lifespan, as well as easy breeding and care, fish are becoming widely used as a vertebrate model system. Studying the genome and transcriptome of these fish is essential for advancing the field. In this study, we performed de novo transcriptome assembly of brain tissues from using Trinity. Annotation of 104,271 potential genes (with transcripts longer than 500 bp) was carried out; for 24,967 genes (53,654 transcripts), in which at least one GO annotation was derived. We also analyzed the effect of a long-term food supplement with Torin 2, second-generation ATP-competitive inhibitor of mTOR, on the gene expression changes in brain tissue of adult . Overall, 1491 genes in females and 249 genes in males were differently expressed under Torin 2-supplemented diet. According to the Gene Set Enrichment Analysis (GSEA), the majority of identified genes were predominantly involved in the regulation of metabolic process, dendritic spine maintenance, circadian rhythms, retrotransposition, and immune response. Thus, we have provided the first transcriptome assembly and assessed the differential gene expression in response to exposure to Torin 2, which allow a better understanding of molecular changes in the brain tissues of adult fish in the mTOR pathway inhibition.
是一种在非洲发现的小型一年生鳉鱼属。由于寿命相对较短,以及易于繁殖和照料,这种鱼正被广泛用作脊椎动物模型系统。研究这些鱼的基因组和转录组对于推动该领域发展至关重要。在本研究中,我们使用Trinity对[鱼的名称]的脑组织进行了从头转录组组装。对104,271个潜在基因(转录本长度超过500 bp)进行了注释;对于24,967个基因(53,654个转录本),其中至少有一个GO注释。我们还分析了长期添加第二代mTOR的ATP竞争性抑制剂Torin 2对成年[鱼的名称]脑组织基因表达变化的影响。总体而言,在添加Torin 2的饮食条件下,雌性中有1491个基因和雄性中有249个基因表达存在差异。根据基因集富集分析(GSEA),大多数鉴定出的基因主要参与代谢过程的调节、树突棘维持、昼夜节律、逆转座和免疫反应。因此,我们提供了首个转录组组装,并评估了暴露于Torin 2后的差异基因表达,这有助于更好地理解mTOR通路抑制下成年鱼脑组织中的分子变化。