Plant Evolutionary Cell Biology, Faculty of Biology, Ludwig-Maximilians-Universität München, Planegg-Martinsried, Germany.
Theoretical Biophysics, Institute of Biology, Humboldt-Universität zu Berlin, Berlin, Germany.
Plant Cell Environ. 2023 Feb;46(2):464-478. doi: 10.1111/pce.14483. Epub 2022 Nov 14.
Cold acclimation is a multigenic process by which many plant species increase their freezing tolerance. Stabilization of photosynthesis and carbohydrate metabolism plays a crucial role in cold acclimation. To study regulation of primary and secondary metabolism during cold acclimation of Arabidopsis thaliana, metabolic mutants with deficiencies in either starch or flavonoid metabolism were exposed to 4°C. Photosynthesis was determined together with amounts of carbohydrates, anthocyanins, organic acids and enzyme activities of the central carbohydrate metabolism. Starch deficiency was found to significantly delay soluble sugar accumulation during cold acclimation, while starch overaccumulation did not affect accumulation dynamics but resulted in lower total amounts of \sucrose and glucose. Anthocyanin amounts were lowered in both starch deficient and overaccumulating mutants. Vice versa, flavonoid deficiency did not result in a changed starch amount, which suggested a unidirectional signalling link between starch and flavonoid metabolism. Mathematical modelling of carbon metabolism indicated kinetics of sucrose biosynthesis to be limiting for carbon partitioning in leaf tissue during cold exposure. Together with cold-induced dynamics of citrate, fumarate and malate amounts, this provided evidence for a central role of sucrose phosphate synthase activity in carbon partitioning between biosynthetic and dissimilatory pathways which stabilizes photosynthesis and metabolism at low temperature.
冷驯化是一个多基因过程,许多植物物种通过这个过程提高其抗冻能力。光合作用和碳水化合物代谢的稳定在冷驯化中起着至关重要的作用。为了研究拟南芥冷驯化过程中初级和次级代谢的调节,研究人员将缺乏淀粉或类黄酮代谢的代谢突变体暴露在 4°C 下。测定了光合作用以及碳水化合物、花青素、有机酸和中心碳水化合物代谢的酶活性的含量。研究发现,淀粉缺乏会显著延迟冷驯化过程中可溶性糖的积累,而淀粉过量积累不会影响积累动态,但会导致蔗糖和葡萄糖的总量降低。在淀粉缺乏和过量积累的突变体中,花青素含量均降低。相反,类黄酮缺乏不会导致淀粉含量发生变化,这表明淀粉和类黄酮代谢之间存在单向信号联系。碳代谢的数学模型表明,在低温暴露期间,蔗糖生物合成的动力学可能限制了叶片组织中碳的分配。结合低温诱导的柠檬酸、富马酸和苹果酸含量的动态变化,这为蔗糖磷酸合酶活性在生物合成和异化途径之间的碳分配中发挥核心作用提供了证据,从而在低温下稳定光合作用和代谢。