López-Carbonell M, Moret A, Nadal M
Assistant Professor.
Associate Professors, Unit of Plant Physiology, Faculty of Biology, University of Barcelona, Avda. Diagonal 645, E-08028 Barcelona, Spain.
Plant Dis. 1998 Aug;82(8):914-918. doi: 10.1094/PDIS.1998.82.8.914.
Ultrastructural alterations in epidermal and mesophyll cells and variations in endogenous zeatin riboside (ZR) concentrations were studied in leaves of Hedera helix, Pelargonium zonale, Pru-nus avium, and Rubus ulmifolius infected by Colletotrichum trichellum, Puccinia pelargonii-zonalis, Cercospora circumscissa, and Phragmidium violaceum, respectively. Infected tissues showed a marked increase in vesicles, myelin-like structures, and electron-dense bodies associated with plasma membranes. The main changes to the chloroplast included thylakoid swelling and disruption of the chloroplast envelope. The ZR content of the green islands was always higher than that of the yellow, senescent parts of the same leaves; the highest levels of ZR were observed in the green areas of infected Prunus avium (462.2 pmol g fresh weight [FW]) and Rubus ulmifolius (441.6 pmol g FW), followed by Pelargonium zonale (263.8 pmol g FW) and Hedera helix (219.8 pmol g FW); the yellow zones of the same leaves had lower ZR contents (78.3, 73.9, 73.6, and 18.1 pmol g FW, respectively). The green islands had almost the same ZR content as the controls (green healthy leaves). These results suggest a relationship between ultrastructural alterations and ZR content of these plant species (blackberry, cherry, English ivy, geranium) in reacting to this type of biotic stress and could confirm the role of cytokinins as senescence-delaying hormones.
分别对感染了炭疽菌、天竺葵柄锈菌、轮纹尾孢菌和紫堇叶层锈菌的常春藤、天竺葵、甜樱桃和黑莓叶片的表皮和叶肉细胞超微结构变化以及内源玉米素核苷(ZR)浓度变化进行了研究。受感染组织中,与质膜相关的囊泡、髓鞘样结构和电子致密体显著增加。叶绿体的主要变化包括类囊体肿胀和叶绿体包膜破坏。绿色岛屿的ZR含量始终高于同一片叶子的黄色衰老部分;在受感染甜樱桃(462.2 pmol g鲜重[FW])和黑莓(441.6 pmol g FW)的绿色区域中观察到最高水平的ZR,其次是天竺葵(263.8 pmol g FW)和常春藤(219.8 pmol g FW);同一片叶子的黄色区域ZR含量较低(分别为78.3、73.9、73.6和18.1 pmol g FW)。绿色岛屿的ZR含量与对照(绿色健康叶片)几乎相同。这些结果表明,这些植物物种(黑莓、樱桃、常春藤、天竺葵)在应对此类生物胁迫时,超微结构变化与ZR含量之间存在关联,并可能证实细胞分裂素作为延缓衰老激素的作用。