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A novel tissue-specific meta-analysis approach for gene expression predictions, initiated with a mammalian gene expression testis database

机译:从哺乳动物基因表达睾丸数据库开始的用于基因表达预测的新型组织特异性荟萃分析方法

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Background In the recent years, there has been a rise in gene expression profiling reports. Unfortunately, it has not been possible to make maximum use of available gene expression data. Many databases and programs can be used to derive the possible expression patterns of mammalian genes, based on existing data. However, these available resources have limitations. For example, it is not possible to obtain a list of genes that are expressed in certain conditions. To overcome such limitations, we have taken up a new strategy to predict gene expression patterns using available information, for one tissue at a time. Results The first step of this approach involved manual collection of maximum data derived from large-scale (genome-wide) gene expression studies, pertaining to mammalian testis. These data have been compiled into a M ammalian G ene Ex pression T estis- d ata b ase (MGEx-Tdb). This process resulted in a richer collection of gene expression data compared to other databases/resources, for multiple testicular conditions. The gene-lists collected this way in turn were exploited to derive a 'consensus' expression status for each gene, across studies. The expression information obtained from the newly developed database mostly agreed with results from multiple small-scale studies on selected genes. A comparative analysis showed that MGEx-Tdb can retrieve the gene expression information more efficiently than other commonly used databases. It has the ability to provide a clear expression status (transcribed or dormant) for most genes, in the testis tissue, under several specific physiological/experimental conditions and/or cell-types. Conclusions Manual compilation of gene expression data, which can be a painstaking process, followed by a consensus expression status determination for specific locations and conditions, can be a reliable way of making use of the existing data to predict gene expression patterns. MGEx-Tdb provides expression information for 14 different combinations of specific locations and conditions in humans (25,158 genes), 79 in mice (22,919 genes) and 23 in rats (14,108 genes). It is also the first system that can predict expression of genes with a 'reliability-score', which is calculated based on the extent of agreements and contradictions across gene-sets/studies. This new platform is publicly available at the following web address: http://resource.ibab.ac.in/MGEx-Tdb/ webcite
机译:背景技术近年来,基因表达谱分析报告有所增加。不幸的是,不可能最大程度地利用可用的基因表达数据。基于现有数据,许多数据库和程序可用于得出哺乳动物基因的可能表达模式。但是,这些可用资源有局限性。例如,不可能获得在某些条件下表达的基因的列表。为了克服这些局限性,我们采用了一种新策略来一次使用一个可用信息预测一个组织的基因表达模式。结果该方法的第一步涉及人工收集来自大规模(全基因组)基因表达研究的最大数据,涉及哺乳动物睾丸。这些数据已被汇编成哺乳动物基因表达数据库(MGEx-Tdb)。与其他数据库/资源​​相比,此过程可在多种睾丸情况下收集更丰富的基因表达数据。在整个研究中,依次利用这种方式收集的基因列表来得出每个基因的“共识”表达状态。从新开发的数据库中获得的表达信息与选定基因的多次小规模研究结果基本吻合。对比分析表明,MGEx-Tdb可以比其他常用数据库更有效地检索基因表达信息。它能够在几种特定的生理/实验条件和/或细胞类型下,为睾丸组织中的大多数基因提供清晰的表达状态(转录或休眠)。结论手动编译基因表达数据可能是一个艰苦的过程,然后确定特定位置和条件的共识表达状态,可能是利用现有数据预测基因表达模式的可靠方法。 MGEx-Tdb提供人类特定位置和条件的14种不同组合(25,158个基因),小鼠79种(22,919个基因)和23种大鼠(14,108个基因)的表达信息。这也是第一个可以预测“基因得分”的系统,“可靠性得分”是根据各个基因组/研究的共识和矛盾程度计算得出的。该新平台可通过以下网址公开获得:http://resource.ibab.ac.in/MGEx-Tdb/ webcite

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