Jiangxi Key Laboratory of Bioprocess Engineering and Co-Innovation Center for In-vitro Diagnostic Reagents and Devices of Jiangxi Province, College of Life Sciences, Jiangxi Science & Technology Normal University, Nanchang, 330013, China.
BMC Microbiol. 2018 Feb 14;18(1):12. doi: 10.1186/s12866-018-1158-z.
The gene expression profile and metabolic pathways of Aspergillus oryzae underlying the anatomical and morphological differentiation across different growth stages have not been fully characterized. The rapid development of next-generation sequencing technologies provides advanced knowledge of the genomic organization of A. oryzae.
In this study, we characterized the growth and development of A. oryzae at different growth stages, including the adaptive phase, logarithmic phase, and stationary phase. Our results revealed that A. oryzae undergoes physiological and morphological differentiation across the different stages. RNA-seq was employed to analyze the three stages of A. oryzae, which generated more than 27 million high-quality reads per sample. The analysis of differential gene expression showed more genes expressed differentially upon transition from the adaptive phase to the logarithmic and stationary phases, while relatively steady trend was observed during the transition from the logarithmic phase to the stationary phase. GO classification of the differentially expressed genes among different growth stages revealed that most of these genes were enriched for single-organism process, metabolic process, and catalytic activity. These genes were then subjected to a clustering analysis. The results showed that the cluster with the majority of genes with increased expression upon transition from the adaptive phase to the logarithmic phase, and steady expression from the logarithmic phase to the stationary phase was mainly involved in the carbohydrate and amino acid metabolism.
Our results provide a foundation for identifying developmentally important genes and understanding the biological processes across various growth stages.
曲霉(Aspergillus oryzae)在不同生长阶段的解剖和形态分化的基因表达谱和代谢途径尚未得到充分描述。下一代测序技术的快速发展为曲霉的基因组组织提供了先进的知识。
在这项研究中,我们描述了曲霉在不同生长阶段的生长和发育,包括适应阶段、对数阶段和静止阶段。我们的结果表明,曲霉在不同阶段经历生理和形态分化。我们使用 RNA-seq 分析了曲霉的三个阶段,每个样本产生了超过 2700 万个高质量的读数。差异基因表达分析表明,在从适应阶段到对数和静止阶段的转变过程中,更多的基因表达差异,而在从对数阶段到静止阶段的转变过程中,观察到相对稳定的趋势。在不同生长阶段差异表达基因的 GO 分类表明,这些基因中的大多数富集于单一生物过程、代谢过程和催化活性。然后对这些差异表达基因进行聚类分析。结果表明,在从适应阶段到对数阶段的转变过程中,大多数基因表达增加,而从对数阶段到静止阶段的表达则相对稳定,主要涉及碳水化合物和氨基酸代谢。
我们的研究结果为鉴定发育重要基因和理解不同生长阶段的生物学过程提供了基础。