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基于转录组序列数据的党参基因表达研究中内参基因的选择和验证。

Selection and Validation of Reference Genes for Gene Expression Studies in Codonopsis pilosula Based on Transcriptome Sequence Data.

机构信息

Institute of soil and water conservation, CAS & MWR, Yangling, 712100, P. R. China.

College of Landscape Architecture, Zhejiang Agriculture & Forestry University, Hangzhou, 311300, P. R. China.

出版信息

Sci Rep. 2020 Jan 28;10(1):1362. doi: 10.1038/s41598-020-58328-5.

Abstract

Relative gene expression analyses by RT-qPCR (reverse transcription-quantitative PCR) are highly dependent on the reference genes in normalizing the expression data of target genes. Therefore, inappropriate endogenous control genes will lead to inaccurate target gene expression profiles, and the selection and validation of suitable internal reference genes becomes essential. In this study, we retrieved the commonly used reference genes in transcriptome datasets of Codonopsis pilosula by RNA-Seq (unpublished data), and selected 15 candidate reference genes according to the coefficient of variation (CV) and fold change (FC) value of gene expression. The expression levels of candidate reference genes, which is at different growth stages, undergoing cold stress and drought stress, was determined by RT-qPCR. The expression stability of these genes was evaluated using software packages and algorithms including ΔCt, geNorm, NormFinder and Bestkeeper. Then appropriate reference genes were screened and validated by target gene-UDGPase (UDP glucose pyrophosphorylase). The optimal RGs combinations of C. pilosula, including PP2A59γ, CPY20-1, UBCE32, RPL5B and UBC18 for developmental stage, RPL5B, RPL13 and PP2A59γ for cold treatment, RPL13 and PP2A59γ for drought treatment, were found and proposed as reference genes for future work. This paper laid foundations for both the selection of reference genes and exploration in metabolic mechanism of C. pilosula.

摘要

通过 RT-qPCR(逆转录定量 PCR)进行相对基因表达分析高度依赖于正常化靶基因表达数据的内参基因。因此,不合适的内参基因将导致不准确的靶基因表达谱,选择和验证合适的内参基因变得至关重要。在本研究中,我们通过 RNA-Seq(未发表数据)检索了党参转录组数据集常用的内参基因,并根据基因表达的变异系数 (CV) 和倍数变化 (FC) 值选择了 15 个候选内参基因。通过 RT-qPCR 确定候选内参基因在不同生长阶段、冷胁迫和干旱胁迫下的表达水平。使用软件包和算法(包括 ΔCt、geNorm、NormFinder 和 BestKeeper)评估这些基因的表达稳定性。然后通过目标基因-UDGPase(UDP 葡萄糖焦磷酸化酶)筛选和验证合适的参考基因。筛选并验证了党参的最佳 RG 组合,包括发育阶段的 PP2A59γ、CPY20-1、UBCE32、RPL5B 和 UBC18,冷处理的 RPL5B、RPL13 和 PP2A59γ,干旱处理的 RPL13 和 PP2A59γ,并提出作为未来工作的参考基因。本文为党参参考基因的选择和代谢机制的探索奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e5a/6987187/c9618fb1e229/41598_2020_58328_Fig1_HTML.jpg

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