The Central Pennsylvania Research and Teaching Laboratory for Biofuels, Penn State Harrisburg, Middletown, Pennsylvania, United States of America.
PLoS One. 2021 Dec 20;16(12):e0260660. doi: 10.1371/journal.pone.0260660. eCollection 2021.
There has been significant interest in researching the pharmaceutical applications of Industrial hemp since its legalization three years ago. The crop is mostly dioecious and known for its production of phytocannabinoids, flavonoids, and terpenes. Although many scientific reports have showed gene expression analysis of hemp through OMICs approaches, unreliable reference genes for normalization of qRT-PCR data make it difficult to validate the OMICs data. Four software packages: geNorm, NormFinder, BestKeeper, and RefFinder were used to evaluate the differential gene expression patterns of 13 candidate reference genes under osmotic, heavy metal, hormonal, and UV stresses. EF-1α ranked as the most stable reference gene across all stresses, TUB was the most stable under osmotic stress, and TATA was the most stable under both heavy metal stress and hormonal stimuli. The expression patterns of two cannabinoid pathway genes, AAE1 and CBDAS, were used to validate the reliability of the selected reference genes. This work provides useful information for gene expression characterization in hemp and future research in the synthesis, transport, and accumulation of secondary metabolites.
自三年前大麻合法化以来,人们对研究其在制药方面的应用产生了浓厚的兴趣。该作物主要为雌雄异株,以其产生的植物大麻素、类黄酮和萜烯而闻名。尽管许多科学报告已经通过 OMICs 方法展示了大麻的基因表达分析,但用于 qRT-PCR 数据归一化的不可靠参考基因使得难以验证 OMICs 数据。使用了四个软件包:geNorm、NormFinder、BestKeeper 和 RefFinder,来评估在渗透、重金属、激素和 UV 应激下 13 个候选参考基因的差异基因表达模式。EF-1α 在所有应激条件下均被评为最稳定的参考基因,TUB 在渗透应激下最稳定,TATA 在重金属应激和激素刺激下最稳定。两种大麻素途径基因 AAE1 和 CBDAS 的表达模式用于验证所选参考基因的可靠性。这项工作为大麻的基因表达特征提供了有用的信息,并为未来研究次生代谢物的合成、运输和积累提供了参考。