Guo Rui, He Meixia, Zhang Xiaoqing, Ji Xiuling, Wei Yunlin, Zhang Qi-Lin, Zhang Qi
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, China.
Front Microbiol. 2021 Sep 16;12:727105. doi: 10.3389/fmicb.2021.727105. eCollection 2021.
strain YM25235 is a cold-adapted oleaginous yeast strain that can grow at 15°C. It is capable of producing polyunsaturated fatty acids. Here, we used the Nanopore Platform to first assemble the strain YM25235 genome into a 23.71 Mb size containing 46 scaffolds and 8,472 predicted genes. To explore the molecular mechanism behind the low temperature response of strain YM25235, we analyzed the RNA transcriptomic data from low temperature (15°C) and normal temperature (30°C) groups using the next-generation deep sequencing technology (RNA-seq). We identified 1,300 differentially expressed genes (DEGs) by comparing the cultures grown at low temperature (15°C) and normal temperature (30°C) transcriptome libraries, including 553 significantly upregulated and 747 significantly downregulated DEGs. Gene ontology and pathway enrichment analysis revealed that DEGs were primarily related to metabolic processes, cellular processes, cellular organelles, and catalytic activity, whereas the overrepresented pathways included the MAPK signaling pathway, metabolic pathways, and amino sugar and nucleotide sugar metabolism. We validated the RNA-seq results by detecting the expression of 15 DEGs using qPCR. This study provides valuable information on the low temperature response of strain YM25235 for further research and broadens our understanding for the response of strain YM25235 to low temperature.
菌株YM25235是一种能够在15°C生长的冷适应性产油酵母菌株。它能够产生多不饱和脂肪酸。在此,我们使用纳米孔平台首次将菌株YM25235的基因组组装成一个大小为23.71 Mb的基因组,包含46个支架和8472个预测基因。为了探究菌株YM25235低温响应背后的分子机制,我们使用下一代深度测序技术(RNA-seq)分析了来自低温(15°C)和常温(30°C)组的RNA转录组数据。通过比较在低温(15°C)和常温(30°C)下生长的转录组文库,我们鉴定出1300个差异表达基因(DEG),其中包括553个显著上调和747个显著下调的DEG。基因本体和通路富集分析表明,DEG主要与代谢过程、细胞过程、细胞器和催化活性相关,而过度富集的通路包括MAPK信号通路、代谢通路以及氨基糖和核苷酸糖代谢。我们通过使用qPCR检测15个DEG的表达来验证RNA-seq结果。本研究为菌株YM25235的低温响应提供了有价值的信息以供进一步研究,并拓宽了我们对菌株YM25235低温响应的理解。