Institute of Biology, University of Graz, NAWI Graz, Schubertstraße 51, 8010 Graz, Austria.
Department of Plant and Environmental Sciences, Section of Crop Science, University of Copenhagen, Copenhagen, Denmark.
J Exp Bot. 2022 Sep 3;73(15):5170-5198. doi: 10.1093/jxb/erac215.
High-throughput profiling of key enzyme activities of carbon, nitrogen, and antioxidant metabolism is emerging as a valuable approach to integrate cell physiological phenotyping into a holistic functional phenomics approach. However, the analyses of the large datasets generated by this method represent a bottleneck, often keeping researchers from exploiting the full potential of their studies. We address these limitations through the exemplary application of a set of data evaluation and visualization tools within a case study. This includes the introduction of multivariate statistical analyses that can easily be implemented in similar studies, allowing researchers to extract more valuable information to identify enzymatic biosignatures. Through a literature meta-analysis, we demonstrate how enzyme activity profiling has already provided functional information on the mechanisms regulating plant development and response mechanisms to abiotic stress and pathogen attack. The high robustness of the distinct enzymatic biosignatures observed during developmental processes and under stress conditions underpins the enormous potential of enzyme activity profiling for future applications in both basic and applied research. Enzyme activity profiling will complement molecular -omics approaches to contribute to the mechanistic understanding required to narrow the genotype-to-phenotype knowledge gap and to identify predictive biomarkers for plant breeding to develop climate-resilient crops.
高通量分析碳、氮和抗氧化代谢关键酶活性正在成为一种将细胞生理表型整合到整体功能表型方法中的有价值的方法。然而,该方法生成的大型数据集的分析是一个瓶颈,这通常使研究人员无法充分发挥其研究的潜力。我们通过在案例研究中应用一组数据评估和可视化工具来解决这些限制。这包括引入多元统计分析,这些分析可以在类似的研究中轻松实施,使研究人员能够提取更有价值的信息来识别酶生物标志物。通过文献荟萃分析,我们展示了酶活性分析如何已经为调节植物发育和对非生物胁迫和病原体攻击的反应机制的功能信息提供了酶活性分析。在发育过程中和胁迫条件下观察到的不同酶生物标志物的高度稳健性,为酶活性分析在基础和应用研究中的未来应用提供了巨大的潜力。酶活性分析将补充分子组学方法,有助于缩小基因型到表型知识差距,并确定用于植物育种的预测生物标志物,以开发具有气候恢复力的作物。