State Key Laboratory of Crop Stress Biology for Arid Areas, College of Horticulture, Northwest A&F University, Yangling, Shaanxi, China.
J Pineal Res. 2014 Oct;57(3):291-307. doi: 10.1111/jpi.12169. Epub 2014 Sep 12.
Despite the relationship between melatonin and aging, the overall changes and regulation of proteome profiling by long-term melatonin exposure during leaf senescence is not well understood. In this study, leaf senescence in Malus hupehensis plants was delayed when exogenous melatonin was regularly applied to the roots for 2 months compared with natural leaf senescence. Proteins of samples 0 and 50 day for both treatments were extracted and labeled with TMT regents before being examined via NanoLC-MS/MS. The proteomics data showed that 622 and 309 proteins were altered by senescence and melatonin, respectively. Our GO analysis by Blast2GO revealed that most of the altered proteins that are involved in major metabolic processes exhibited hydrolase activity and were mainly located in the plastids. These proteins were classified into several senescence-related functional categories, including degradation of macromolecules, redox and stress responses, transport, photosynthesis, development, and other regulatory proteins. We found that melatonin treatment led to the downregulation of proteins that are normally upregulated during senescence. The melatonin-related delay in senescence might have occurred due to the altering of proteins involved in processes associated with senescence. And as well, there are many unknown regulatory proteins possibly being involved in the melatonin's function. This study is the first to demonstrate changes at the proteome level in response to exogenous melatonin in plants. Our findings provide a set of informative and fundamental data about the role of melatonin in apple leaf senescence.
尽管褪黑素与衰老之间存在关联,但长期暴露于褪黑素对叶片衰老过程中蛋白质组谱的整体变化和调控机制仍知之甚少。本研究中,与自然衰老相比,外源褪黑素持续 2 个月施加于根系可延缓苹果属平邑甜茶叶片衰老。分别提取两种处理方式下 0 天和 50 天的叶片样本蛋白质,并使用 TMT 试剂进行标记,然后通过纳升液相色谱-串联质谱法进行检测。蛋白质组学数据显示,衰老和褪黑素分别使 622 种和 309 种蛋白质发生改变。通过 Blast2GO 进行的 GO 分析表明,大多数涉及主要代谢过程的改变蛋白具有水解酶活性,主要位于质体中。这些蛋白质被分类为几个与衰老相关的功能类别,包括大分子的降解、氧化还原和应激反应、运输、光合作用、发育和其他调节蛋白。我们发现,褪黑素处理导致通常在衰老过程中上调的蛋白质下调。褪黑素相关的衰老延迟可能是由于与衰老相关的过程中涉及的蛋白质发生改变所致。并且,可能有许多未知的调节蛋白参与了褪黑素的功能。本研究首次证明了外源褪黑素在植物体内引起的蛋白质组水平的变化。我们的研究结果为褪黑素在苹果叶片衰老中的作用提供了一组信息丰富且基础的数据。