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利用顺式调控信息预测玉米中保守和可变的热激和冷激响应。

Prediction of conserved and variable heat and cold stress response in maize using cis-regulatory information.

机构信息

Department of Plant and Microbial Biology, University of Minnesota, Saint Paul, Minnesota 55108, USA.

School of Agriculture and Food Sciences, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Plant Cell. 2022 Jan 20;34(1):514-534. doi: 10.1093/plcell/koab267.

Abstract

Changes in gene expression are important for responses to abiotic stress. Transcriptome profiling of heat- or cold-stressed maize genotypes identifies many changes in transcript abundance. We used comparisons of expression responses in multiple genotypes to identify alleles with variable responses to heat or cold stress and to distinguish examples of cis- or trans-regulatory variation for stress-responsive expression changes. We used motifs enriched near the transcription start sites (TSSs) for thermal stress-responsive genes to develop predictive models of gene expression responses. Prediction accuracies can be improved by focusing only on motifs within unmethylated regions near the TSS and vary for genes with different dynamic responses to stress. Models trained on expression responses in a single genotype and promoter sequences provided lower performance when applied to other genotypes but this could be improved by using models trained on data from all three genotypes tested. The analysis of genes with cis-regulatory variation provides evidence for structural variants that result in presence/absence of transcription factor binding sites in creating variable responses. This study provides insights into cis-regulatory motifs for heat- and cold-responsive gene expression and defines a framework for developing models to predict expression responses across multiple genotypes.

摘要

基因表达的变化对于非生物胁迫的响应很重要。对热或冷胁迫的玉米基因型进行转录组分析,可以鉴定出许多转录丰度的变化。我们使用多个基因型的表达响应比较,来鉴定对热或冷胁迫有不同响应的等位基因,并区分与胁迫响应表达变化有关的顺式或反式调控变异的例子。我们使用富含在热应激响应基因转录起始位点(TSS)附近的基序来开发基因表达响应的预测模型。通过仅关注 TSS 附近未甲基化区域内的基序,可以提高预测精度,并且对于对胁迫具有不同动态响应的基因,预测精度也会有所不同。在单个基因型和启动子序列上训练的模型在应用于其他基因型时性能较低,但通过使用在所有三个测试基因型的数据上训练的模型可以得到改善。对具有顺式调控变异的基因的分析为导致转录因子结合位点存在/缺失的结构变异提供了证据,从而产生了可变的响应。这项研究为热和冷响应基因表达的顺式调控基序提供了深入的了解,并为开发跨多个基因型预测表达响应的模型定义了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3609/8773969/1faf033ffbb9/koab267f8.jpg

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