首页> 外文期刊>BioMed research international >Horizontally Transferred Genetic Elements in the Tsetse Fly Genome: An Alignment-Free Clustering Approach Using Batch Learning Self-Organising Map (BLSOM)
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Horizontally Transferred Genetic Elements in the Tsetse Fly Genome: An Alignment-Free Clustering Approach Using Batch Learning Self-Organising Map (BLSOM)

机译:在TSetse Fly Genome中水平转移的遗传元素:使用批量学习自组织地图(BLSOM)的无序聚类方法

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摘要

Tsetse flies (Glossina spp.) are the priniary vectors of trypanosomes, which can cause human and animal African trypanosomiasis in Sub-Saharan African countries. The objective of this study was to explore the genome of Glossina morsitans morsitans for evidence of horizontal gene transfer (HGT) from microorganisms. We employed an alignment-free clustering method, that is, batch learning self-organising map (BLSOM), in which sequence fragments are clustered based on the similarity of oligonucleotide frequencies independently of sequence homology. After an initial scan of HGT events using BLSOM, we identified 3.8% of the tsetse fly genome as HGT candidates. The predicted donors of these HGT candidates included known symbionts, such as Wolbachia, as well as bacteria that have not previously been associated with the tsetse fly. We detected HGT candidates from diverse bacteria such as Bacillus and Flavobacteria, suggesting a past association between these taxa. Functional annotation revealed that the HGT candidates encoded loci in various functional pathways, such as metabolic and antibiotic biosynthesis pathways. These findings provide a basis for understanding the coevolutionary history of the tsetse fly and its microbes and establish the effectiveness of BLSOM for the detection of HGT events.
机译:Tsetse苍蝇(Glossina spp。)是颞蛋白酶体的润态载体,这可能导致撒哈拉以南非洲国家的人和动物非洲锥虫病。本研究的目的是探讨Glossina Morsitans Morsitans的基因组,用于微生物的水平基因转移(HGT)的证据。我们采用了一种对准的聚类方法,即批量学习自组织地图(BLSOM),其中序列片段基于独立于序列同源性的寡核苷酸频率的相似性聚集。使用BLSOM初始扫描HGT事件后,我们确定了3.8%的TSetse Fly Genome作为HGT候选者。这些HGT候选者的预测供体包括已知的共生,例如Wolbachia,以及之前没有与TSetse飞行相关联的细菌。我们检测了来自不同细菌的HGT候选者,如芽孢杆菌和黄酮杆菌,这表明这些分类群之间的过去关联。功能诠释表明,HGT候选候选各种功能途径中的基因座,例如代谢和抗生素生物合成途径。这些调查结果为了解TSetse飞行的共同历史和其微生物的共同历史提供了基础,并建立了Blsom对HGT事件检测的有效性。

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