Van Buuren Marianne Louise, Guidi Lucia, Fornalè Silvia, Ghetti Francesca, Franceschetti Marina, Soldatini Gian Franco, Bagni Nello
Dipartimento di Biologia Evoluzionistica Sperimentale e Centro Interdipartimentale per le Biotecnologie, Università di Bologna, via Irnerio 42, 40126 Bologna, Italy.
Dipartimento di Chimica e Biotecnologie Agrarie, Università di Pisa, 56124 Pisa, Italy.
New Phytol. 2002 Dec;156(3):389-398. doi: 10.1046/j.1469-8137.2002.00539.x.
• Polyamines have been suggested to counteract oxidative damage in plants. Here, we present a detailed analysis of polyamine accumulation and its relationship to photosynthetic parameters in two tobacco (Nicotiana tabacum) cultivars (ozone-sensitive Bel W3 and ozone-tolerant Bel B) after a single ozone pulse and after a 1-month exposure in the open air. • Free putrescine accumulated in undamaged tissue of both cultivars, whereas putrescine conjugated to soluble and cell-wall bound components accumulated predominantly in tissue undergoing cell death in Bel W3 plants. Accumulation was caused by a redirection of the conjugation pathway, as well as by a transient increase in arginine decarboxylase and ornithine decarboxylase specific activity. This increase seemed to be regulated at post-transcriptional level. • Measurements of chlorophyll content and fluorescence showed that, in addition to visible necrotic lesions, Bel W3 plants suffered considerable photosynthetic damage in other parts of the leaf. • Accumulation of conjugated putrescine is part of the ozone-induced programmed cell death response in Bel W3 plants. Ozone-induced synthesis of free putrescine is not correlated with ozone-resistance in Bel B plants, which are apparently impaired in signal transduction pathways that are necessary to control the cellular redox state. However, Bel B plants are able to perceive ozone stress and to induce a series of defense mechanisms without activating hypersensitive cell death.
• 多胺被认为可以对抗植物中的氧化损伤。在此,我们详细分析了两个烟草(Nicotiana tabacum)品种(对臭氧敏感的Bel W3和耐臭氧的Bel B)在单次臭氧脉冲处理后以及在露天环境中暴露1个月后多胺的积累情况及其与光合参数的关系。
• 游离腐胺在两个品种未受损的组织中积累,而与可溶性和细胞壁结合成分结合的腐胺主要在Bel W3植株中正在经历细胞死亡的组织中积累。积累是由共轭途径的重新定向以及精氨酸脱羧酶和鸟氨酸脱羧酶比活性的短暂增加引起的。这种增加似乎在转录后水平受到调控。
• 叶绿素含量和荧光测量表明,除了可见的坏死病斑外,Bel W3植株叶片的其他部位也遭受了相当大的光合损伤。
• 结合态腐胺的积累是Bel W3植株中臭氧诱导的程序性细胞死亡反应的一部分。臭氧诱导的游离腐胺合成与Bel B植株的耐臭氧性无关,Bel B植株在控制细胞氧化还原状态所需的信号转导途径中显然存在缺陷。然而,Bel B植株能够感知臭氧胁迫并诱导一系列防御机制,而不激活超敏细胞死亡。