Institute of Biology, Department of Plant Biotechnology, University of Stuttgart, 70569, Stuttgart, Germany.
New Phytol. 2013 May;198(3):777-787. doi: 10.1111/nph.12201. Epub 2013 Mar 14.
Accessions of Arabidopsis thaliana originating from climatically different habitats show different levels of cold acclimation when exposed to low temperatures. The central carbohydrate metabolism plays a crucial role during this acclimation. Subcellular distribution of carbohydrates over the compartments cytosol, vacuole and plastids, and putative interactions of the compartments, are analyzed in three differentially cold-tolerant accessions of Arabidopsis thaliana, originating from the Iberian Peninsula (C24), Russia (Rschew) and Scandinavia (Tenela), respectively. Subcellular carbohydrate concentrations were determined by applying the nonaqueous fractionation technique. Mathematical modeling and steady-state simulation was used to analyse the metabolic homeostasis during cold exposure. In all accessions, the initial response to cold exposure was a significant increase of plastidial and cytosolic sucrose concentrations. Raffinose accumulated in all cellular compartments of cold-tolerant accessions with a delay of 3 d, indicating that raffinose accumulation is a long-term component of cold acclimation. Minimal rates of metabolite transport permitting steady-state simulations of metabolite concentrations correlated with cold tolerance, indicating an important role of subcellular re-distribution of metabolites during cold acclimation. A highly regulated interplay of enzymatic reactions and intracellular transport processes appears to be a prerequisite for maintaining carbohydrate homeostasis during cold exposure and allowing cold acclimation in Arabidopsis thaliana.
来自气候不同生境的拟南芥品系在低温下表现出不同程度的冷驯化。在这种驯化过程中,中心碳水化合物代谢起着至关重要的作用。在分别来自伊比利亚半岛(C24)、俄罗斯(Rschew)和斯堪的纳维亚(Tenela)的三个具有不同耐寒性的拟南芥品系中,分析了碳水化合物在细胞质、液泡和质体等区室中的亚细胞分布,以及区室之间的潜在相互作用。通过应用非水部分分离技术来确定亚细胞碳水化合物浓度。使用数学建模和稳态模拟来分析冷暴露期间的代谢动态平衡。在所有品系中,冷暴露的初始反应是质体和细胞质中蔗糖浓度的显著增加。在所有耐寒品系的所有细胞区室中,棉子糖都有 3 天的延迟积累,这表明棉子糖的积累是冷驯化的长期组成部分。允许对代谢物浓度进行稳态模拟的最小代谢物转运速率与耐寒性相关,这表明在冷驯化过程中,代谢物的亚细胞再分布起着重要作用。酶反应和细胞内运输过程的高度调控相互作用似乎是在冷暴露期间维持碳水化合物动态平衡并允许拟南芥进行冷驯化的前提。