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A Novel Dynamic Impact Approach (DIA) for Functional Analysis of Time-Course Omics Studies: Validation Using the Bovine Mammary Transcriptome

机译:一种新型的动态冲击方法(DIA),用于时间课程组学的功能分析:使用牛乳腺转录组进行验证

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摘要

The overrepresented approach (ORA) is the most widely-accepted method for functional analysis of microarray datasets. The ORA is computationally-efficient and robust; however, it suffers from the inability of comparing results from multiple gene lists particularly with time-course experiments or those involving multiple treatments. To overcome such limitation a novel method termed Dynamic Impact Approach (DIA) is proposed. The DIA provides an estimate of the biological impact of the experimental conditions and the direction of the impact. The impact is obtained by combining the proportion of differentially expressed genes (DEG) with the log2 mean fold change and mean –log P-value of genes associated with the biological term. The direction of the impact is calculated as the difference of the impact of up-regulated DEG and down-regulated DEG associated with the biological term. The DIA was validated using microarray data from a time-course experiment of bovine mammary gland across the lactation cycle. Several annotation databases were analyzed with DIA and compared to the same analysis performed by the ORA. The DIA highlighted that during lactation both BTA6 and BTA14 were the most impacted chromosomes; among Uniprot tissues those related with lactating mammary gland were the most positively-impacted; within KEGG pathways ‘Galactose metabolism’ and several metabolism categories related to lipid synthesis were among the most impacted and induced; within Gene Ontology “lactose biosynthesis” among Biological processes and “Lactose synthase activity” and “Stearoyl-CoA 9-desaturase activity” among Molecular processes were the most impacted and induced. With the exception of the terms ‘Milk’, ‘Milk protein’ and ‘Mammary gland’ among Uniprot tissues and SP_PIR_Keyword, the use of ORA failed to capture as significantly-enriched (i.e., biologically relevant) any term known to be associated with lactating mammary gland. Results indicate the DIA is a biologically-sound approach for analysis of time-course experiments. This tool represents an alternative to ORA for functional analysis.
机译:过度代表方法(ORA)是最广泛接受的微阵列数据集功能分析方法。 ORA计算效率高且健壮;然而,它不能比较多个基因列表的结果,特别是在时程实验或涉及多种治疗的实验中。为了克服这种限制,提出了一种称为动态影响法(DIA)的新颖方法。 DIA提供了对实验条件的生物学影响以及影响方向的估计。通过将差异表达基因(DEG)的比例与与生物学术语相关的基因的log2平均倍数变化和均值–log P值相结合来获得影响。影响的方向计算为与生物学术语相关的上调DEG和下调DEG的影响之差。使用来自整个泌乳周期的牛乳腺的时程实验的微阵列数据验证了DIA。使用DIA分析了多个注释数据库,并将其与ORA进行的相同分析进行了比较。 DIA强调在哺乳期间,BTA6和BTA14都是受影响最大的染色体。在Uniprot组织中,与哺乳期乳腺相关的组织受到的影响最大。在KEGG途径中,“半乳糖代谢”以及与脂质合成相关的几种代谢类别受到的影响最大。在基因本体论中,生物过程中的“乳糖生物合成”和分子过程中的“乳糖合酶活性”和“硬脂酰-CoA 9-去饱和酶活性”受到的影响最大。除了Uniprot组织和SP_PIR_Keyword中的“牛奶”,“牛奶蛋白”和“乳腺”这两个术语外,使用ORA未能捕获任何已知与泌乳有关的术语作为显着富集的(即生物学相关的)乳腺。结果表明,DIA是分析时程实验的生物学方法。该工具代表了ORA的功能分析替代方案。

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