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首页> 外文期刊>BMC Genomics >Prediction of plant-derived xenomiRs from plant miRNA sequences using random forest and one-dimensional convolutional neural network models
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Prediction of plant-derived xenomiRs from plant miRNA sequences using random forest and one-dimensional convolutional neural network models

机译:使用随机森林和一维卷积神经网络模型从植物miRNA序列预测植物来源的xenomiRs

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An increasing number of studies reported that exogenous miRNAs (xenomiRs) can be detected in animal bodies, however, some others reported negative results. Some attributed this divergence to the selective absorption of plant-derived xenomiRs by animals. Here, we analyzed 166 plant-derived xenomiRs reported in our previous study and 942 non-xenomiRs extracted from miRNA expression profiles of four species of commonly consumed plants. Employing statistics analysis and cluster analysis, our study revealed the potential sequence specificity of plant-derived xenomiRs. Furthermore, a random forest model and a one-dimensional convolutional neural network model were trained using miRNA sequence features and raw miRNA sequences respectively and then employed to predict unlabeled plant miRNAs in miRBase. A total of 241 possible plant-derived xenomiRs were predicted by both models. Finally, the potential functions of these possible plant-derived xenomiRs along with our previously reported ones in human body were analyzed. Our study, for the first time, presents the systematic plant-derived xenomiR sequences analysis and provides evidence for selective absorption of plant miRNA by human body, which could facilitate the future investigation about the mechanisms underlying the transference of plant-derived xenomiR.
机译:越来越多的研究报告说,可以在动物体内检测到外源性miRNA(xenomiRs),但是,另一些报告了阴性结果。一些人将这种差异归因于动物对植物来源的异种受体的选择性吸收。在这里,我们分析了我们先前研究中报道的166种植物来源的xenomiRs,以及从四种常用植物的miRNA表达谱中提取的942种非xenomiRs。通过统计分析和聚类分析,我们的研究揭示了植物来源的xenomiRs的潜在序列特异性。此外,分别使用miRNA序列特征和原始miRNA序列训练了随机森林模型和一维卷积神经网络模型,然后将其用于预测miRBase中未标记的植物miRNA。两种模型共预测了241种可能的植物来源的xenomiR。最后,分析了这些可能的植物来源的xenomiRs以及我们先前报道的在人体中的潜在功能。我们的研究首次提出了系统的植物来源的xenomiR序列分析,并为人体选择性吸收植物miRNA提供了证据,这可能有助于进一步研究植物来源的xenomiR转移的潜在机制。

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