Abbasi Ali-Reza, Saur Alexandra, Hennig Peter, Tschiersch Henning, Hajirezaei Mohammad, Hofius Daniel, Sonnewald Uwe, Voll Lars M
Friedrich-Alexander-Universität Erlangen-Nürnberg, Lehrstuhl für Biochemie, Staudtstr. 5, 91058 Erlangen, Germany.
Plant Cell Environ. 2009 Feb;32(2):144-57. doi: 10.1111/j.1365-3040.2008.01907.x. Epub 2008 Nov 13.
alpha-Tocopherol constitutes the major lipophilic antioxidant in thylakoid membranes, which cooperates with the soluble antioxidant system to alleviate oxidative stress caused by reactive oxygen species (ROS) during oxygenic photosynthesis. Tocopherol accumulates during leaf senescence, indicating the necessity for increased redox buffer capacity in senescent leaves, and tocopherol deficiency has been shown to restrict sugar export from source leaves by inducing callose plugging in the vasculature. We have generated tocopherol-deficient tobacco plants that contain as few as 1% of wild-type (WT) tocopherol in leaves by silencing homogentisate phytyltransferase (HPT). Employing HPT : RNAi plants, we have assessed the importance of tocopherol during leaf senescence and for sugar export. Irrespective of whorl position, the content of free sugars and starch was lower in HPT : RNAi leaves than in WT during the vegetative phase, and no accumulation of callose or a reduction in sugar exudation compared to WT was evident. Based on our observations, we discuss lipid peroxidation as a potential modulator of tocopherol-mediated signalling. Furthermore, senescence was accelerated in lower leaves of HPT transgenics, as indicated by elevated GS1 and reduced rbcS transcript amounts. Oxidative stress was increased in virescent lower source leaves, suggesting that the lack of tocopherol triggers premature senescence.
α-生育酚是类囊体膜中的主要亲脂性抗氧化剂,它与可溶性抗氧化系统协同作用,以减轻光合放氧过程中由活性氧(ROS)引起的氧化应激。生育酚在叶片衰老过程中积累,这表明衰老叶片中增加氧化还原缓冲能力的必要性,并且已经表明生育酚缺乏会通过诱导维管系统中的胼胝质堵塞来限制源叶中的糖分输出。我们通过沉默尿黑酸植基转移酶(HPT),培育出了叶片中生育酚含量低至野生型(WT)1%的生育酚缺陷型烟草植株。利用HPT:RNAi植株,我们评估了生育酚在叶片衰老过程中以及对糖分输出的重要性。在营养生长阶段,无论轮生位置如何,HPT:RNAi叶片中的游离糖和淀粉含量均低于WT,并且与WT相比,没有明显的胼胝质积累或糖分渗出减少。基于我们的观察结果,我们讨论了脂质过氧化作为生育酚介导信号传导的潜在调节因子。此外,HPT转基因植株下部叶片的衰老加速,这表现为GS1升高和rbcS转录本量减少。绿色下部源叶中的氧化应激增加,这表明生育酚的缺乏会引发过早衰老。