Hooijmaijers C A M
School of Biological Sciences, University of Auckland, Auckland, New Zealand.
Planta. 2008 May;227(6):1301-10. doi: 10.1007/s00425-008-0702-8. Epub 2008 Feb 16.
This study tests the hypothesis that red-leaved gametophytes of the liverwort Jamesoniella colorata (Lehm.) Schiffn., which are found in relatively dry habitats, are more desiccation tolerant than their green counterparts, which are found in moister environments, through superior photoprotective systems. The potential role of red foliar pigments in relation to water deficits is investigated by measuring cell water-relations, oxidative damage and photosynthetic responses. The presence of red pigments, or other cellular constituents, did not affect cell water-relations during dehydration and thus appear not to be involved in cell osmotic regulation. During drying, both colour morphs showed a similar non-photochemical quenching activity and did not experience significant oxidative damage, as measured by the amounts of ascorbate, malondialdehyde and photosynthetic pigments. However, the levels of oxidative damage increased directly upon rewetting the gametophytes, especially in low light conditions (25 micromol m(-2) s(-1)). The efficiency of photosystem II only recovered partially after severe water deficits in both phenotypes. However, the red gametophytes recovered faster and more completely from mild water deficits than did the greens. Moreover, they experienced significantly less photobleaching after rehydration in low light. It is suggested that red pigments and/or carotenoids in these gametophytes improve desiccation tolerance by alleviating photooxidative damage.
在相对干燥生境中发现的红叶苔类植物彩色拟复叉苔(Jamesoniella colorata (Lehm.) Schiffn.)的配子体,通过更优的光保护系统,比在更潮湿环境中发现的绿色配子体更耐干燥。通过测量细胞水分关系、氧化损伤和光合反应,研究了红色叶色素与水分亏缺相关的潜在作用。红色色素或其他细胞成分的存在在脱水过程中并未影响细胞水分关系,因此似乎不参与细胞渗透调节。在干燥过程中,两种颜色形态表现出相似的非光化学猝灭活性,并且通过抗坏血酸、丙二醛和光合色素的含量测量,未经历显著的氧化损伤。然而,配子体重新湿润后氧化损伤水平直接增加,尤其是在低光照条件下(25微摩尔·米-2·秒-1)。在两种表型中,严重水分亏缺后光系统II的效率仅部分恢复。然而,红色配子体从轻度水分亏缺中恢复得比绿色配子体更快、更完全。此外,在低光照下复水后,它们经历的光漂白明显更少。研究表明,这些配子体中的红色色素和/或类胡萝卜素通过减轻光氧化损伤来提高耐干燥性。