Department of Dermatology, West China Hospital, Sichuan University, Chengdu, China.
Med Mycol. 2012 Nov;50(8):835-42. doi: 10.3109/13693786.2012.678398. Epub 2012 May 7.
Penicillium marneffei is a dimorphic fungus that responds to changes in temperature. We performed a comparative analysis of gene expression in mycelial- and yeast-phase P. marneffei cells using high-throughput DNA microarrays. A total of 1,884 differentially expressed genes with annotations in the gene ontology (GO) database were identified between P. marneffei mycelial and yeast cells. These differentially expressed genes mainly belong to 18 categories in the organism's ontology, including reproduction, immunity, metabolism, signaling, etc. Bioinformatics suggests that these differentially expressed genes may help explain the resistance to adverse environments and the virulence of P. marneffei. Nine genes from the results of the DNA microarray experiment were selected for further analysis with real-time quantitative PCR to validate the differential expression. Our data provide a global description of the transcriptional response accompanying adaptation to high temperature in yeast.
马尔尼菲青霉是一种温度依赖性双相真菌。我们使用高通量 DNA 微阵列对马尔尼菲青霉菌丝相和酵母相细胞中的基因表达进行了比较分析。在青霉菌丝相与酵母细胞之间共鉴定出 1884 个具有基因本体论 (GO) 数据库注释的差异表达基因。这些差异表达基因主要属于生物体本体论的 18 个类别,包括生殖、免疫、代谢、信号等。生物信息学表明,这些差异表达基因可能有助于解释青霉菌对不利环境的抗性和毒力。从 DNA 微阵列实验的结果中选择了 9 个基因进行实时定量 PCR 分析,以验证差异表达。我们的数据提供了一个全局描述,说明了酵母适应高温时伴随的转录反应。