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Coexpression Analysis of Tomato Genes and Experimental Verification of Coordinated Expression of Genes Found in a Functionally Enriched Coexpression Module

机译:番茄基因的共表达分析和在功能丰富的共表达模块中发现的基因协调表达的实验验证

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摘要

Gene-to-gene coexpression analysis is a powerful approach to infer the function of uncharacterized genes. Here, we report comprehensive identification of coexpression gene modules of tomato (Solanum lycopersicum) and experimental verification of coordinated expression of module member genes. On the basis of the gene-to-gene correlation coefficient calculated from 67 microarray hybridization data points, we performed a network-based analysis. This facilitated the identification of 199 coexpression modules. A gene ontology annotation search revealed that 75 out of the 199 modules are enriched with genes associated with common functional categories. To verify the coexpression relationships between module member genes, we focused on one module enriched with genes associated with the flavonoid biosynthetic pathway. A non-enzyme, non-transcription factor gene encoding a zinc finger protein in this module was overexpressed in S. lycopersicum cultivar Micro-Tom, and expression levels of flavonoid pathway genes were investigated. Flavonoid pathway genes included in the module were up-regulated in the plant overexpressing the zinc finger gene. This result demonstrates that coexpression modules, at least the ones identified in this study, represent actual transcriptional coordination between genes, and can facilitate the inference of tomato gene function.
机译:基因间共表达分析是推断未表征基因功能的有力方法。在这里,我们报告番茄(Solanum lycopersicum)的共表达基因模块的全面鉴定和模块成员基因的协同表达的实验验证。基于从67个微阵列杂交数据点计算出的基因间相关系数,我们进行了基于网络的分析。这有助于识别199个共表达模块。基因本体注释搜索显示,在199个模块中,有75个模块富含与常见功能类别相关的基因。为了验证模块成员基因之间的共表达关系,我们集中于一个模块,该模块富含与类黄酮生物合成途径相关的基因。该模块中编码锌指蛋白的非酶非转录因子基因在番茄S. lycopersicum品种Micro-Tom中过表达,并研究了类黄酮途径基因的表达水平。该模块中包括的类黄酮途径基因在过表达锌指基因的植物中被上调。该结果表明,共表达模块,至少是在本研究中鉴定的那些,代表基因之间的实际转录协调,并且可以促进番茄基因功能的推断。

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