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筛选甜瓜逆转录定量实时PCR分析中用于标准化的合适内参基因。

Screening suitable reference genes for normalization in reverse transcription quantitative real-time PCR analysis in melon.

作者信息

Kong Qiusheng, Yuan Jingxian, Niu Penghui, Xie Junjun, Jiang Wei, Huang Yuan, Bie Zhilong

机构信息

Key Laboratory of Horticultural Plant Biology, Ministry of Education/College of Horticulture and Forestry, Huazhong Agricultural University, Wuhan, P. R. China.

出版信息

PLoS One. 2014 Jan 27;9(1):e87197. doi: 10.1371/journal.pone.0087197. eCollection 2014.

Abstract

Melon (Cucumis melo. L) is not only an economically important cucurbitaceous crop but also an attractive model for studying many biological characteristics. Screening appropriate reference genes is essential to reverse transcription quantitative real-time PCR (RT-qPCR), which is key to many studies involving gene expression analysis. In this study, 14 candidate reference genes were selected, and the variations in their expression in roots and leaves of plants subjected to biotic stress, abiotic stress, and plant growth regulator treatment were assessed by RT-qPCR. The stability of the expression of the selected genes was determined and ranked using geNorm and NormFinder. geNorm identified the two most stable genes for each set of conditions: CmADP and CmUBIep across all samples, CmUBIep and CmRPL in roots, CmRAN and CmACT in leaves, CmADP and CmRPL under abiotic stress conditions, CmTUA and CmACT under biotic stress conditions, and CmRAN and CmACT under plant growth regulator treatments. NormFinder determined CmRPL to be the best reference gene in roots and under biotic stress conditions and CmADP under the other experimental conditions. CmUBC2 and CmPP2A were not found to be suitable under many experimental conditions. The catalase family genes CmCAT1, CmCAT2, and CmCAT3 were identified in melon genome and used as target genes to validate the reliability of identified reference genes. The catalase family genes showed the most upregulation 3 days after inoculation with Fusarium wilt in roots, after which they were downregulated. Their levels of expression were significantly overestimated when the unsuitable reference gene was used for normalization. These results not only provide guidelines for the selection of reference genes for gene expression analyses in melons but may also provide valuable information for studying the functions of catalase family genes in stress responses.

摘要

甜瓜(Cucumis melo. L)不仅是一种具有重要经济价值的葫芦科作物,也是研究许多生物学特性的理想模式植物。筛选合适的内参基因对于逆转录定量实时PCR(RT-qPCR)至关重要,而RT-qPCR是许多涉及基因表达分析研究的关键。本研究选取了14个候选内参基因,通过RT-qPCR评估它们在受到生物胁迫、非生物胁迫和植物生长调节剂处理的植物根和叶中的表达变化。使用geNorm和NormFinder确定并排序所选基因表达的稳定性。geNorm为每组条件鉴定出两个最稳定的基因:在所有样品中为CmADP和CmUBIep,在根中为CmUBIep和CmRPL,在叶中为CmRAN和CmACT,在非生物胁迫条件下为CmADP和CmRPL,在生物胁迫条件下为CmTUA和CmACT,在植物生长调节剂处理下为CmRAN和CmACT。NormFinder确定CmRPL是根中和生物胁迫条件下的最佳内参基因,而在其他实验条件下为CmADP。在许多实验条件下未发现CmUBC2和CmPP2A适合作为内参基因。在甜瓜基因组中鉴定出过氧化氢酶家族基因CmCAT1、CmCAT2和CmCAT3,并将其用作靶基因以验证所鉴定内参基因的可靠性。接种枯萎病菌后3天,根中过氧化氢酶家族基因的上调最为明显,之后下调。当使用不合适的内参基因进行标准化时,它们的表达水平被显著高估。这些结果不仅为甜瓜基因表达分析中内参基因的选择提供了指导,还可能为研究过氧化氢酶家族基因在胁迫反应中的功能提供有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e10/3903635/5a61286c613d/pone.0087197.g001.jpg

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