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Frequency-based time-series gene expression recomposition using PRIISM

机译:使用PRIISM的基于频率的时序基因表达重组

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摘要

BackgroundCircadian rhythm pathways influence the expression patterns of as much as 31% of the Arabidopsis genome through complicated interaction pathways, and have been found to be significantly disrupted by biotic and abiotic stress treatments, complicating treatment-response gene discovery methods due to clock pattern mismatches in the fold change-based statistics. The PRIISM (Pattern Recomposition for the Isolation of Independent Signals in Microarray data) algorithm outlined in this paper is designed to separate pattern changes induced by different forces, including treatment-response pathways and circadian clock rhythm disruptions.
机译:背景昼夜节律途径通过复杂的相互作用途径影响多达31%的拟南芥基因组表达模式,并且已被生物和非生物胁迫处理严重破坏,由于时钟模式不匹配导致处理反应基因发现方法复杂化。基于倍数变化的统计信息。本文概述的PRIISM(微阵列数据中用于分离独立信号的模式重组)算法旨在分离由不同作用力引起的模式变化,包括治疗反应途径和昼夜节律律紊乱。

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