Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, Shandong, 266101, China.
Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Datun Road, Chaoyang District, Beijing, 100101, China.
Sci Rep. 2017 Sep 21;7(1):12126. doi: 10.1038/s41598-017-11615-0.
Leaf senescence in plants is a coordinated process that involves remobilization of nutrients from senescing leaves to sink tissues. The molecular events associated with nutrient remobilization are however not well understood. In this study the tobacco system with a source-sink relationship between different leaf positions was used in analyzing the spatiotemporal changes of 76 metabolites from leaves at 3 different stalk positions and 8 developmental stages. The metabolomic data was then compared with RNA-seq data from the same samples to analyze the activities of the metabolic pathways that are important for nutrient remobilization. Integrative analyses on metabolites accumulation and expression changes of enzyme-encoding genes in corresponding metabolic pathways indicated a significant up-regulation of the tricarboxylic acid cycle and related metabolism of sugars, amino acids and fatty acids, suggesting the importance of energy metabolism during leaf senescence. Other changes of the metabolism during tobacco leaf senescence include increased activities of the GS/GOGAT cycle which is responsible for nitrogen recycling, and increased accumulation of nicotine. The results also suggested that a number of compounds seemed to be transported from senescing leaves at lower positions to sink leaves at upper positions. Some of these metabolites could play a role in nutrient remobilization.
植物叶片衰老是一个协调的过程,涉及将营养物质从衰老的叶片再转移到汇组织中。然而,与养分再转移相关的分子事件还不是很清楚。在这项研究中,利用烟草系统中不同叶位之间的源库关系,分析了来自 3 个不同茎位和 8 个发育阶段的 76 种代谢物的时空变化。然后将代谢组学数据与来自相同样本的 RNA-seq 数据进行比较,以分析对养分再转移重要的代谢途径的活性。对相应代谢途径中代谢物积累和酶编码基因表达变化的综合分析表明,三羧酸循环和相关的糖、氨基酸和脂肪酸代谢显著上调,表明在叶片衰老过程中能量代谢的重要性。烟草叶片衰老过程中的其他代谢变化包括谷氨酰胺合成酶/谷氨酸草酰乙酸转氨酶(GS/GOGAT)循环的活性增加,该循环负责氮的再循环,以及尼古丁的积累增加。结果还表明,一些化合物似乎从较低位置的衰老叶片运输到较高位置的汇叶片。其中一些代谢物可能在养分再转移中发挥作用。