Key Laboratory of Brewing Microbiome and Enzymatic Molecular Engineering, China General Chamber of Commerce (BTBU), Beijing 100048, China.
Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology and Business University (BTBU), Beijing 100048, China.
Genes (Basel). 2022 Dec 11;13(12):2341. doi: 10.3390/genes13122341.
Ethyl acetate is an important flavor element that is a vital component of . To date, the transcription factors that can help identify the molecular mechanisms involved in the synthesis of ethyl acetate have not been studied. In the present study, we sequenced and assembled the strain YF1503 transcriptomes to identify transcription factors. We identified 307 transcription factors in YF1503 using high-throughput RNA sequencing. Some transcription factors, such as C2H2, bHLH, MYB, and bZIP, were up-regulated, and these might play a role in ethyl acetate synthesis. According to the trend of ethyl acetate content, heat map results and STEM, twelve genes were selected for verification of expression levels using quantitative real-time PCR. This dynamic transcriptome analysis presents fundamental information on the transcription factors and pathways that are involved in the synthesis of ethyl acetate in aroma-producing yeast. Of significant interest is the discovery of the roles of various transcription factor genes in the synthesis of ethyl acetate.
乙酸乙酯是一种重要的风味物质,是 的重要组成部分。迄今为止,能够帮助识别参与乙酸乙酯合成的分子机制的转录因子尚未被研究。在本研究中,我们对 菌株 YF1503 的转录组进行了测序和组装,以鉴定转录因子。我们使用高通量 RNA 测序在 YF1503 中鉴定了 307 个转录因子。一些转录因子,如 C2H2、bHLH、MYB 和 bZIP,被上调,这些可能在乙酸乙酯合成中发挥作用。根据乙酸乙酯含量的趋势、热图结果和 STEM,选择了十二个基因使用定量实时 PCR 来验证表达水平。该动态转录组分析为产生香气的酵母中乙酸乙酯合成涉及的转录因子和途径提供了基础信息。特别有趣的是发现了各种转录因子基因在乙酸乙酯合成中的作用。