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首页> 外文期刊>Physiology and Molecular Biology of Plants >Screening internal controls for expression analyses involving numerous treatments by combining statistical methods with reference gene selection tools
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Screening internal controls for expression analyses involving numerous treatments by combining statistical methods with reference gene selection tools

机译:通过将统计方法与参考基因选择工具组合筛选涉及许多治疗的表达分析筛选内部控制

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摘要

Real-time PCR is always the method of choice for expression analyses involving comparison of a large number of treatments. It is also the favored method for final confirmation of transcript levels followed by high throughput methods such as RNA sequencing and microarray. Our analysis comprised 16 different permutation and combinations of treatments involving four different Agrobacterium strains and three time intervals in the model plant Arabidopsis thaliana. The routinely used reference genes for biotic stress analyses in plants showed variations in expression across some of our treatments. In this report, we describe how we narrowed down to the best reference gene out of 17 candidate genes. Though we initiated our reference gene selection process using common tools such as geNorm, Normfinder and BestKeeper, we faced situations where these software-selected candidate genes did not completely satisfy all the criteria of a stable reference gene. With our novel approach of combining simple statistical methods such as t test, ANOVA and post hoc analyses, along with the routine software-based analyses, we could perform precise evaluation and we identified two genes, UBQ10 and PPR as the best reference genes for normalizing mRNA levels in the context of 16 different conditions of Agrobacterium infection. Our study emphasizes the usefulness of applying statistical analyses along with the reference gene selection software for reference gene identification in experiments involving the comparison of a large number of treatments.
机译:实时PCR始终是表达分析的选择方法,涉及大量治疗的比较。它也是最终确认转录物水平的有利方法,然后是高通量方法,例如RNA测序和微阵列。我们的分析包括16种不同排列和治疗组合,涉及四种不同的农杆菌菌株和模型植物拟南芥的三次时间间隔。植物中的生物应激分析的常用参考基因​​显示出在我们一些治疗中表达的变化。在本报告中,我们描述了我们如何将其缩小到17个候选基因中的最佳参考基因。虽然我们使用诸如Genorm,Normfinder和Bestkeeper等常用工具启动了我们的参考基因选择过程,但是我们面临这些软件选择的候选基因并未完全满足稳定参考基因的所有标准的情况。通过我们的新方法,即结合简单的统计方法,如T检验,ANOVA和后HOC分析,以及常规的基于软件的分析,我们可以进行精确评估,我们确定了两个基因,UBQ10和PPR作为最佳参考基因进行标准化16种不同条件的土壤杆菌感染情况的mRNA水平。我们的研究强调了应用统计分析以及参考基因选择软件的有用性,以便在涉及大量治疗的实验中进行参考基因鉴定。

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