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Gene Ontology Based Clustering Analysis for Functionally Linked Genes and Cross-Species Comparison for SSR Biomarkers

机译:基于基因本体的功能链接基因聚类分析和SSR生物标记物的种间比较

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Molecular biomarkers are important and commonly used as classification features for detecting function performances of target genes and distinguishing characteristics of different species or strains. As expeditious development in Next Generation Sequencing technologies, whole genome sequencing delivers a comprehensive view and new insights for novel species. However, utilization of whole genome sequences to discover genetic biomarkers for specific functional gene groups still possess many challenges. To solve this problem, we utilized Gene Ontology definitions and Ensembl orthologous information to decide a set of associated functional genes according to user's query keywords. Then, previously assembled NGS contigs were matched against the selected gene set from model species, and an SSR searching algorithm and a cross-species comparison mechanism were performed to reveal potential polymorphic SSR biomarkers. Each identified SSR would be annotated and classified by important attributes, such as lengths, genetic locations, fundamental repeat patterns, tolerant rates of retrieved SSRs. The developed system could identify novel SSR biomarkers for a specified functional gene group regarding conserved and unique features between the query and the target model species, and which could facilitate biologists in finding potential markers for elucidating biological functions and distinguishable features of a novel species.
机译:分子生物标志物是重要的,并且通常用作分类特征,以检测靶基因的功能表现并区分不同物种或菌株的特征。随着下一代测序技术的飞速发展,全基因组测序为新型物种提供了全面的视野和新见解。然而,利用全基因组序列来发现特定功能基因组的遗传生物标记仍然面临许多挑战。为了解决这个问题,我们利用基因本体的定义和Ensembl直系同源信息,根据用户的查询关键词来决定一组相关的功能基因。然后,将先前组装的NGS重叠群与从模型物种中选择的基因集进行匹配,并进行SSR搜索算法和跨物种比较机制以揭示潜在的多态性SSR生物标记。每个已识别的SSR都将通过重要的属性进行注释和分类,这些重要属性包括长度,遗传位置,基本重复模式,检索到的SSR的耐受率。所开发的系统可以针对查询和目标模型物种之间的保守和独特特征,为指定功能基因组识别新的SSR生物标记,这可以帮助生物学家寻找阐明新物种的生物学功能和可区分特征的潜在标记。

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