Marazzi Lauren, Kohli Priya, Eastman Deborah
Department of Biology, Connecticut College, United States.
Department of Math and Statistics, Connecticut College, United States.
Data Brief. 2020 Aug 4;32:106126. doi: 10.1016/j.dib.2020.106126. eCollection 2020 Oct.
Animal nutrition and toxin deterrence rely on the ability to taste, which occurs through columnar taste cells clustered within taste buds. Taste buds in mammals are located within specialized tissues, called papillae. However, taste buds in fish and amphibians, such as axolotls (), are not housed in papillae, rather they are embedded within the pharyngeal epithelium. This simplified tissue level organization, along with the ability of cultured oropharyngeal explants from early embryos to produce taste buds on the same time-line as embryos, make the axolotl an excellent model to identify molecules specifically involved in taste bud cell differentiation. We performed de novo transcriptomic analysis on RNA sequences from three different stages of oropharyngeal explants: stages 37/38, 39, and 41. RNA-seq data from 17 total samples representing these stages were pooled to generate a de novo assembly of the transcriptome using a Trinity pipeline. From 27.9Gb of raw sequences, we identified 21,244 transcripts. To our knowledge, this is the first published assembly of axolotl oropharyngeal endoderm explants. This data and transcriptome assembly relate to the research article "Transcriptome Analysis of Axolotl Oropharyngeal Explants During Taste Bud Differentiation Stages" (Kohli et al. 2020). This RNA-seq data and transcriptome assembly provide information on genes expressed in the oropharyngeal endoderm and will be valuable in the identification of taste bud development genes.
动物的营养摄取和毒素防御依赖于味觉能力,这一过程通过聚集在味蕾中的柱状味觉细胞来实现。哺乳动物的味蕾位于称为乳头的特殊组织内。然而,鱼类和两栖动物(如蝾螈)的味蕾并不位于乳头中,而是嵌入在咽部上皮组织内。这种简化的组织水平结构,以及早期胚胎培养的口咽外植体能够在与胚胎相同的时间线上产生味蕾的能力,使得蝾螈成为识别味觉细胞分化中特定分子的优秀模型。我们对来自口咽外植体三个不同阶段(37/38期、39期和41期)的RNA序列进行了从头转录组分析。将代表这些阶段的17个样本的RNA-seq数据汇集起来,使用Trinity管道生成转录组的从头组装。从27.9Gb的原始序列中,我们鉴定出21,244个转录本。据我们所知,这是首次发表的蝾螈口咽内胚层外植体的组装结果。这些数据和转录组组装与研究论文《蝾螈口咽外植体在味蕾分化阶段的转录组分析》(Kohli等人,2020年)相关。这些RNA-seq数据和转录组组装提供了口咽内胚层中表达基因的信息,将对识别味蕾发育基因具有重要价值。