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首页> 外文期刊>BMC Bioinformatics >HTRgene: a computational method to perform the integrated analysis of multiple heterogeneous time-series data: case analysis of cold and heat stress response signaling genes in Arabidopsis
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HTRgene: a computational method to perform the integrated analysis of multiple heterogeneous time-series data: case analysis of cold and heat stress response signaling genes in Arabidopsis

机译:HTRGENE:用于执行多种异构时间序列数据的综合分析的计算方法:拟南芥中冷和热应激响应信号基因的情况分析

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BACKGROUND:Integrated analysis that uses multiple sample gene expression data measured under the same stress can detect stress response genes more accurately than analysis of individual sample data. However, the integrated analysis is challenging since experimental conditions (strength of stress and the number of time points) are heterogeneous across multiple samples.RESULTS:HTRgene is a computational method to perform the integrated analysis of multiple heterogeneous time-series data measured under the same stress condition. The goal of HTRgene is to identify "response order preserving DEGs" that are defined as genes not only which are differentially expressed but also whose response order is preserved across multiple samples. The utility of HTRgene was demonstrated using 28 and 24 time-series sample gene expression data measured under cold and heat stress in Arabidopsis. HTRgene analysis successfully reproduced known biological mechanisms of cold and heat stress in Arabidopsis. Also, HTRgene showed higher accuracy in detecting the documented stress response genes than existing tools.CONCLUSIONS:HTRgene, a method to find the ordering of response time of genes that are commonly observed among multiple time-series samples, successfully integrated multiple heterogeneous time-series gene expression datasets. It can be applied to many research problems related to the integration of time series data analysis.
机译:背景技术使用在相同应力下测量的多个样品基因表达数据的综合分析可以比单个样本数据的分析更准确地检测应力响应基因。然而,综合分析是具有挑战性,因为实验条件(应力强度和时间点的数量)在多个样本中是异构的。结果:HTRGENE是执行在相同下测量的多个异构时序数据的集成分析的计算方法压力条件。 HTRGENE的目标是识别被定义为不仅差异表达的基因的“响应令”,该基因也被跨越多个样本保留了响应顺序。使用28和24次级序列样本基因表达数据证明了恒生的效用,在拟南芥中的冷热胁迫下测量。 HTRGENE分析成功地复制了拟南芥冷热胁迫的已知生物机制。此外,HTRGENE在检测文档的应力响应基因上显示比现有工具更高的准确性。结论:HTRGENE,用于在多个时间序列样本中常见的基因响应时间的排序的方法,成功集成了多个异构时序序列基因表达数据集。它可以应用于与时间序列数据分析的集成相关的许多研究问题。

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