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Consensus by Democracy. Using Meta-Analyses of Microarray and Genomic Data to Model the Cold Acclimation Signaling Pathway in Arabidopsis

机译:民主共识。使用微阵列和基因组数据的荟萃分析来模拟拟南芥中的冷驯化信号通路

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摘要

The whole-genome response of Arabidopsis (Arabidopsis thaliana) exposed to different types and durations of abiotic stress has now been described by a wealth of publicly available microarray data. When combined with studies of how gene expression is affected in mutant and transgenic Arabidopsis with altered ability to transduce the low temperature signal, these data can be used to test the interactions between various low temperature-associated transcription factors and their regulons. We quantized a collection of Affymetrix microarray data so that each gene in a particular regulon could vote on whether a cis-element found in its promoter conferred induction (+1), repression (−1), or no transcriptional change (0) during cold stress. By statistically comparing these election results with the voting behavior of all genes on the same gene chip, we verified the bioactivity of novel cis-elements and defined whether they were inductive or repressive. Using in silico mutagenesis we identified functional binding consensus variants for the transcription factors studied. Our results suggest that the previously identified ICEr1 (induction of CBF expression region 1) consensus does not correlate with cold gene induction, while the ICEr3/ICEr4 consensuses identified using our algorithms are present in regulons of genes that were induced coordinate with observed ICE1 transcript accumulation and temporally preceding genes containing the dehydration response element. Statistical analysis of overlap and cis-element enrichment in the ICE1, CBF2, ZAT12, HOS9, and PHYA regulons enabled us to construct a regulatory network supported by multiple lines of evidence that can be used for future hypothesis testing.
机译:现已公开的大量微阵列数据描述了暴露于不同类型和持续时间的非生物胁迫下拟南芥(Arabidopsis thaliana)的全基因组反应。当结合研究基因表达在突变体和转基因拟南芥中如何影响低温信号转导能力的改变时,这些数据可用于测试各种低温相关转录因子与其调控因子之间的相互作用。我们对Affymetrix微阵列数据进行了量化,以使特定调控区中的每个基因都可以投票决定在其启动子中发现的顺式元件是否在寒冷时赋予诱导(+1),抑制(-1)或无转录变化(0)强调。通过统计比较这些选举结果与同一基因芯片上所有基因的投票行为,我们验证了新型顺式元件的生物活性,并确定了它们是诱导型还是抑制型。使用计算机诱变,我们确定了研究的转录因子的功能性结合共有变异体。我们的结果表明,先前确定的ICEr1(CBF表达区1的诱导)共有与冷基因诱导没有关联,而使用我们的算法确定的ICEr3 / ICEr4共有存在于被诱导与观察到的ICE1转录物积累相协调的基因的规则中以及含有脱水反应元件的暂时在先基因。 ICE1,CBF2,ZAT12,HOS9和PHYA规则中重叠和顺式富集的统计分析使我们能够构建由多条证据支持的监管网络,这些证据可用于将来的假设检验。

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