Quantitative & Computational Biology Department, USC Dornsife College of Letters, Arts and Sciences, Los Angeles, CA, 90089, USA.
Leonard Davis School of Gerontology, University of Southern California, Los Angeles, CA, 90089, USA.
Sci Data. 2023 Oct 12;10(1):695. doi: 10.1038/s41597-023-02609-x.
The African turquoise killifish is an emerging vertebrate model organism with great potential for aging research due to its naturally short lifespan. Thus far, turquoise killifish aging 'omic' studies have examined a single organ, single sex and/or evaluated samples from non-reference strains. Here, we describe a resource dataset of ribosomal RNA-depleted RNA-seq libraries generated from the brain, heart, muscle, and spleen from both sexes, as well as young and old animals, in the reference GRZ turquoise killifish strain. We provide basic quality control steps and demonstrate the utility of our dataset by performing differential gene expression and gene ontology analyses by age and sex. Importantly, we show that age has a greater impact than sex on transcriptional landscapes across probed tissues. Finally, we confirm transcription of transposable elements (TEs), which are highly abundant and increase in expression with age in brain tissue. This dataset will be a useful resource for exploring gene and TE expression as a function of both age and sex in a powerful naturally short-lived vertebrate model.
非洲绿松石色的卵胎生鳉鱼是一种新兴的脊椎动物模式生物,由于其寿命自然较短,因此具有很大的衰老研究潜力。迄今为止,绿松石色卵胎生鳉鱼的衰老“组学”研究仅检查了单个器官、单个性别,并评估了非参考品系的样本。在这里,我们描述了一个核糖体 RNA 耗尽 RNA-seq 文库资源数据集,该数据集来自参考 GRZ 绿松石色卵胎生鳉鱼品系的雌雄两性以及幼鱼和老年鱼的大脑、心脏、肌肉和脾脏。我们提供了基本的质量控制步骤,并通过年龄和性别进行差异基因表达和基因本体分析来展示我们数据集的实用性。重要的是,我们表明年龄对所研究组织的转录图谱的影响大于性别。最后,我们证实了转座元件 (TEs) 的转录,这些元件在脑组织中含量丰富且随年龄增长而增加。该数据集将成为探索基因和 TE 表达的有用资源,可作为功能强大的自然寿命较短的脊椎动物模型中的年龄和性别的函数。