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Metabolites as predictive biomarkers for Trypanosoma cruzi exposure in triatomine bugs

机译:代谢产物作为Tryiatomine虫子中的rypanoSoma Cruzi暴露的预测生物标志物

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摘要

Trypanosoma cruzi, the causative agent of Chagas disease (American trypanosomiasis), colonizes the intestinal tract of triatomines. Triatomine bugs act as vectors in the life cycle of the parasite and transmit infective parasite stages to animals and humans. Contact of the vector with T. cruzi alters its intestinal microbial composition, which may also affect the associated metabolic patterns of the insect. Earlier studies suggest that the complexity of the triatomine fecal metabolome may play a role in vector competence for different T. cruzi strains. Using high-resolution mass spectrometry and supervised machine learning, we aimed to detect differences in the intestinal metabolome of the triatomine Rhodnius prolixus and predict whether the insect had been exposed to T. cruzi or not based solely upon their metabolic profile. We were able to predict the exposure status of R. prolixus to T. cruzi with accuracies of 93.6%, 94.2% and 91.8% using logistic regression, a random forest classifier and a gradient boosting machine model, respectively. We extracted the most important features in producing the models and identified the major metabolites which assist in positive classification. This work highlights the complex interactions between triatomine vector and parasite including effects on the metabolic signature of the insect.
机译:曲盼瘤Cruzi,Chagas疾病(美国锥虫病)的致病剂,殖民植物的三角瘤的肠道。 Triatomine虫子作为寄生虫生命周期中的载体,并将感染性寄生虫阶段传递给动物和人类。载体与T.Cruzi的接触改变其肠道微生物组合物,其也可能影响昆虫的相关代谢模式。早期的研究表明,Tratiatomine Feecal代谢物的复杂性可能在不同T.Cruzi菌株中发挥载体能力中的作用。使用高分辨率质谱和监督机器学习,我们旨在检测三角菌罗丹乌斯的肠道代谢物的差异,并预测昆虫是否已暴露于克鲁齐或不完全基于其代谢型材。我们能够预测使用Logistic回归,随机林分类器和梯度升压机模型的高精度为93.6%,94.2%和91.8%的精度为ruixus至T.Cruzi的暴露状态。我们提取了生产模型中最重要的特征,并确定了有助于肯定分类的主要代谢产物。这项工作突出了三角瘤载体和寄生虫之间的复杂相互作用,包括对昆虫代谢特征的影响。

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