Shi Chao, Yin Jian, Liu Zhe, Wu Jian-Xin, Zhao Qi, Ren Jian, Yao Nan
State Key Laboratory of Biocontrol, Guangdong Key Laboratory of Plant Resources, Department of Biological Science and Technology, School of Life Sciences, Sun Yat-sen University Guangzhou, China.
Front Plant Sci. 2015 Mar 25;6:186. doi: 10.3389/fpls.2015.00186. eCollection 2015.
The phytohormone salicylic acid (SA) affects plant development and defense responses. Recent studies revealed that SA also participates in the regulation of sphingolipid metabolism, but the details of this regulation remain to beexplored. Here, we use in silico Flux Balance Analysis (FBA) with published microarray data to construct a whole-cell simulation model, including 23 pathways, 259 reactions, and 172 metabolites, to predict the alterations in flux of major sphingolipid species after treatment with exogenous SA. This model predicts significant changes in fluxes of certain sphingolipid species after SA treatment, changes that likely trigger downstream physiological and phenotypic effects. To validate the simulation, we used (15)N-labeled metabolic turnover analysis to measure sphingolipid contents and turnover rate in Arabidopsis thaliana seedlings treated with SA or the SA analog benzothiadiazole (BTH). The results show that both SA and BTH affect sphingolipid metabolism, altering the concentrations of certain species and also changing the optimal flux distribution and turnover rate of sphingolipids. Our strategy allows us to estimate sphingolipid fluxes on a short time scale and gives us a systemic view of the effect of SA on sphingolipid homeostasis.
植物激素水杨酸(SA)影响植物发育和防御反应。最近的研究表明,SA也参与鞘脂代谢的调节,但其调节细节仍有待探索。在这里,我们利用已发表的微阵列数据进行计算机通量平衡分析(FBA),构建了一个全细胞模拟模型,该模型包括23条途径、259个反应和172种代谢物,以预测用外源SA处理后主要鞘脂种类通量的变化。该模型预测SA处理后某些鞘脂种类通量会发生显著变化,这些变化可能会触发下游的生理和表型效应。为了验证模拟结果,我们使用了¹⁵N标记的代谢周转分析来测量用SA或SA类似物苯并噻二唑(BTH)处理的拟南芥幼苗中鞘脂的含量和周转率。结果表明,SA和BTH都影响鞘脂代谢,改变了某些种类的浓度,也改变了鞘脂的最佳通量分布和周转率。我们的策略使我们能够在短时间尺度上估计鞘脂通量,并让我们对SA对鞘脂稳态的影响有一个系统的认识。