State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing 100193, China.
Biology Department, Brookhaven National Laboratory, Upton, NY 11973, USA.
Sci Rep. 2016 Oct 10;6:35064. doi: 10.1038/srep35064.
Plant defense responses to pathogens involve massive transcriptional reprogramming. Recently, differential coexpression analysis has been developed to study the rewiring of gene networks through microarray data, which is becoming an important complement to traditional differential expression analysis. Using time-series microarray data of Arabidopsis thaliana infected with Pseudomonas syringae, we analyzed Arabidopsis defense responses to P. syringae through differential coexpression analysis. Overall, we found that differential coexpression was a common phenomenon of plant immunity. Genes that were frequently involved in differential coexpression tend to be related to plant immune responses. Importantly, many of those genes have similar average expression levels between normal plant growth and pathogen infection but have different coexpression partners. By integrating the Arabidopsis regulatory network into our analysis, we identified several transcription factors that may be regulators of differential coexpression during plant immune responses. We also observed extensive differential coexpression between genes within the same metabolic pathways. Several metabolic pathways, such as photosynthesis light reactions, exhibited significant changes in expression correlation between normal growth and pathogen infection. Taken together, differential coexpression analysis provides a new strategy for analyzing transcriptional data related to plant defense responses and new insights into the understanding of plant-pathogen interactions.
植物对病原体的防御反应涉及大规模的转录重编程。最近,差异共表达分析已被开发出来,通过微阵列数据研究基因网络的重新布线,这正在成为传统差异表达分析的重要补充。我们使用拟南芥感染丁香假单胞菌的时间序列微阵列数据,通过差异共表达分析来分析拟南芥对丁香假单胞菌的防御反应。总的来说,我们发现差异共表达是植物免疫的普遍现象。频繁参与差异共表达的基因往往与植物免疫反应有关。重要的是,许多这些基因在正常植物生长和病原体感染之间具有相似的平均表达水平,但具有不同的共表达伙伴。通过将拟南芥调控网络整合到我们的分析中,我们鉴定出了几个转录因子,它们可能是植物免疫反应中差异共表达的调节剂。我们还观察到同一代谢途径内的基因之间存在广泛的差异共表达。一些代谢途径,如光合作用光反应,在正常生长和病原体感染之间的表达相关性上发生了显著变化。总之,差异共表达分析为分析与植物防御反应相关的转录数据提供了一种新策略,并为理解植物-病原体相互作用提供了新的见解。