Liu Yong-Nan, Lu Xiao-Xiao, Ren Ang, Shi Liang, Jiang Ai-Liang, Yu Han-Shou, Zhao Ming-Wen
Key Laboratory of Microbiological Engineering of Agricultural Environment, Ministry of Agriculture, Microbiology Department, College of Life Sciences, Nanjing Agricultural University, Jiangsu, Nanjing, People's Republic of China.
Int J Med Mushrooms. 2017;19(11):1029-1040. doi: 10.1615/IntJMedMushrooms.2017024487.
Ganoderma lucidum has been considered an emerging model species for studying how environmental factors regulate the growth, development, and secondary metabolism of Basidiomycetes. Heat stress, which is one of the most important environmental abiotic stresses, seriously affects the growth, development, and yield of microorganisms. Understanding the response to heat stress has gradually become a hotspot in microorganism research. But suitable reference genes for expression analysis under heat stress have not been reported in G. lucidum. In this study, we systematically identified 11 candidate reference genes that were measured using reverse transcriptase quantitative polymerase chain reaction, and the gene expression stability was analyzed under heat stress conditions using geNorm and NormFinder. The results show that 5 reference genes-CYP and TIF, followed by UCE2, ACTIN, and UBQ1-are the most stable genes under our experimental conditions. Moreover, the relative expression levels of 3 heat stress response genes (hsp17.4, hsp70, and hsp90) were analyzed under heat stress conditions with different normalization strategies. The results show that use of a gene with unstable expression (SAND) as the reference gene leads to biased data and misinterpretations of the target gene expression level under heat stress.
灵芝已被视为一种新兴的模式物种,用于研究环境因素如何调节担子菌的生长、发育和次级代谢。热应激作为最重要的环境非生物胁迫之一,严重影响微生物的生长、发育和产量。了解对热应激的反应已逐渐成为微生物研究的热点。但在灵芝中,尚未有关于热应激下表达分析的合适内参基因的报道。在本研究中,我们系统地鉴定了11个候选内参基因,通过逆转录定量聚合酶链反应进行测定,并使用geNorm和NormFinder在热应激条件下分析基因表达稳定性。结果表明,在我们的实验条件下,5个内参基因——CYP和TIF,其次是UCE2、ACTIN和UBQ1——是最稳定的基因。此外,在热应激条件下,使用不同的标准化策略分析了3个热应激反应基因(hsp17.4、hsp70和hsp90)的相对表达水平。结果表明,使用表达不稳定的基因(SAND)作为内参基因会导致数据偏差以及对热应激下目标基因表达水平的错误解读。