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MeSH-Informed Enrichment Analysis and MeSH-Guided Semantic Similarity Among Functional Terms and Gene Products in Chicken

机译:鸡功能术语和基因产物的MeSH信息富集分析和MeSH指导的语义相似性

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摘要

Biomedical vocabularies and ontologies aid in recapitulating biological knowledge. The annotation of gene products is mainly accelerated by Gene Ontology (GO), and more recently by Medical Subject Headings (MeSH). Here, we report a suite of MeSH packages for chicken in Bioconductor, and illustrate some features of different MeSH-based analyses, including MeSH-informed enrichment analysis and MeSH-guided semantic similarity among terms and gene products, using two lists of chicken genes available in public repositories. The two published datasets that were employed represent (i) differentially expressed genes, and (ii) candidate genes under selective sweep or epistatic selection. The comparison of MeSH with GO overrepresentation analyses suggested not only that MeSH supports the findings obtained from GO analysis, but also that MeSH is able to further enrich the representation of biological knowledge and often provide more interpretable results. Based on the hierarchical structures of MeSH and GO, we computed semantic similarities among vocabularies, as well as semantic similarities among selected genes. These yielded the similarity levels between significant functional terms, and the annotation of each gene yielded the measures of gene similarity. Our findings show the benefits of using MeSH as an alternative choice of annotation in order to draw biological inferences from a list of genes of interest. We argue that the use of MeSH in conjunction with GO will be instrumental in facilitating the understanding of the genetic basis of complex traits.
机译:生物医学词汇和本体论有助于概括生物学知识。基因产物的注释主要由基因本体论(GO)加速,最近由医学主题词(MeSH)加速。在这里,我们报告了一套用于生物导体中的鸡肉的MeSH软件包套件,并使用两个可用的鸡基因清单,说明了基于MeSH的不同分析的一些功能,包括基于MeSH的富集分析以及术语和基因产物之间由MeSH指导的语义相似性。在公共存储库中。使用的两个已公开的数据集代表(i)差异表达的基因,和(ii)在选择性扫描或上位选择下的候选基因。 MeSH与GO过量表达分析的比较不仅表明MeSH支持从GO分析中获得的发现,而且还表明MeSH能够进一步丰富生物学知识的表达并经常提供更可解释的结果。基于MeSH和GO的层次结构,我们计算了词汇之间的语义相似度以及选定基因之间的语义相似度。这些产生重要功能术语之间的相似性水平,并且每个基因的注释产生了基因相似性的量度。我们的研究结果表明,使用MeSH作为注释的替代选择的好处是可以从感兴趣的基因列表中得出生物学推断。我们认为将MeSH与GO结合使用将有助于促进对复杂性状遗传基础的理解。

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