Regenerative Bioscience Center, University of Georgia, Athens, GA, USA.
Department of Animal and Dairy Science, College of Agricultural and Environmental Sciences, University of Georgia, Athens, GA, USA.
Sci Rep. 2017 Aug 22;7(1):9131. doi: 10.1038/s41598-017-09299-7.
RNA-Seq is a powerful tool in transcriptomic profiling of cells and tissues. We recently identified many more taste buds than previously appreciated in chickens using molecular markers to stain oral epithelial sheets of the palate, base of oral cavity, and posterior tongue. In this study, RNA-Seq was performed to understand the transcriptomic architecture of chicken gustatory tissues. Interestingly, taste sensation related genes and many more differentially expressed genes (DEGs) were found between the epithelium and mesenchyme in the base of oral cavity as compared to the palate and posterior tongue. Further RNA-Seq using specifically defined tissues of the base of oral cavity demonstrated that DEGs between gustatory (GE) and non-gustatory epithelium (NGE), and between GE and the underlying mesenchyme (GM) were enriched in multiple GO terms and KEGG pathways, including many biological processes. Well-known genes for taste sensation were highly expressed in the GE. Moreover, genes of signaling components important in organogenesis (Wnt, TGFβ/ BMP, FGF, Notch, SHH, Erbb) were differentially expressed between GE and GM. Combined with other features of chicken taste buds, e.g., uniquely patterned array and short turnover cycle, our data suggest that chicken gustatory tissue provides an ideal system for multidisciplinary studies, including organogenesis and regenerative medicine.
RNA-Seq 是细胞和组织转录组分析的强大工具。我们最近使用分子标记物对鸡的腭、口腔底部和舌后口腔上皮片进行染色,发现了比以前更多的味蕾。在这项研究中,进行了 RNA-Seq 以了解鸡味觉组织的转录组结构。有趣的是,与腭和舌后口腔相比,口腔底部的上皮和间充质之间的味觉相关基因和更多差异表达基因(DEG)。进一步使用口腔底部特定定义的组织进行 RNA-Seq 表明,味觉(GE)和非味觉上皮(NGE)之间以及 GE 和下方间充质(GM)之间的 DEG 在多个 GO 术语和 KEGG 途径中富集,包括许多生物学过程。味觉相关的知名基因在 GE 中高度表达。此外,在器官发生中起重要作用的信号成分的基因(Wnt、TGFβ/BMP、FGF、Notch、SHH、Erbb)在 GE 和 GM 之间表达不同。结合鸡味蕾的其他特征,例如独特的图案排列和短的周转周期,我们的数据表明鸡味觉组织为多学科研究提供了一个理想的系统,包括器官发生和再生医学。