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In silico analysis indicates a similar gene expression pattern between human brain and testis

机译:计算机分析表明人脑与睾丸之间的基因表达模式相似

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Objectives: Previous data has reported similarity between human brain and testis gene expression patterns. Brain is the most important tissue in human speciation. Hence, it means that human testis could also play a crucial role in human speciation if these two tissues exhibit similar gene expression patterns. However, previous reports were based on only limited and scattered data. Determining the large scale anatomy of gene expression patterns of various human tissues could draw a more convincing conclusion, and better our understanding of the correlation/inter-correlation among different tissues. Furthermore, it could also provide a clue for evolutionary study. Methods: To obtain gene expression information for large-scale data analysis, expression data of 760 Unigenes in seventeen human tissues (liver, lung, testis, brain, ovary, uterus, colon, stomach, heart, eye, kidney, spleen, gall bladder, breast, thymus, prostate and pancreas) were retrieved by DDD (differential digital display) analysis, and this expression data was subjected to clustering analysis. These Unigenes represent a wide range of genes classified according to their characterization and function. Results: Among the 17 tissues, the highest similarity in gene expression patterns was between human brain and testis, based on DDD and clustering analysis. Genes contributing to the similarity include ribosomal protein (RP) genes as well as genes involved in transcription, translation and cell division. Conclusions: Present results provide evidence to support the proposal that human testis and brain share the highest similarity of gene expression patterns. The implications of the similarity regarding that both brain and testis contributed to human speciation are discussed.
机译:目的:以前的数据报道了人脑和睾丸基因表达模式之间的相似性。大脑是人类物种形成过程中最重要的组织。因此,这意味着如果这两个组织表现出相似的基因表达模式,那么人类的睾丸也可能在人类物种形成中发挥关键作用。但是,以前的报告仅基于有限且分散的数据。确定各种人体组织的基因表达模式的大规模解剖可以得出更有说服力的结论,并且可以更好地理解不同组织之间的相关性/相互相关性。此外,它还可以为进化研究提供线索。方法:为了获得基因表达信息以进行大规模数据分析,分析760种Unigenes在十七种人体组织(肝,肺,睾丸,脑,卵巢,子宫,结肠,胃,心脏,眼睛,肾脏,脾脏,胆囊中)的表达数据通过DDD(差分数字显示)分析检索乳腺,胸腺,胸腺,前列腺和胰腺),并对表达数据进行聚类分析。这些Unigenes代表根据其特征和功能分类的各种基因。结果:根据DDD和聚类分析,在17种组织中,基因表达模式的最高相似性是人脑和睾丸之间。促成相似性的基因包括核糖体蛋白(RP)基因以及参与转录,翻译和细胞分裂的基因。结论:目前的结果提供了证据支持人类睾丸和大脑共享基因表达模式的最高相似性这一提议。讨论了大脑和睾丸对人类物种形成的相似性。

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