Kruk Jerzy, Szymańska Renata
Department of Plant Physiology and Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Kraków, Poland.
Acta Biochim Pol. 2008;55(1):183-90. Epub 2008 Jan 24.
In the present study, xanthophyll composition of eight parasitic Cuscuta species under different light conditions was investigated. Neoxanthin was not detected in four of the eight species examined, while in others it occurred at the level of several percent of total xanthophylls. In C. gronovii and C. lupuliformis it was additionally found that the neoxanthin content was considerably stimulated by strong light. In dark-adapted plants, lutein epoxide level amounted to 10-22% of total xanthophylls in only three species, the highest being for C. lupuliformis, while in others it was below 3%, indicating that the lutein epoxide cycle is limited to only certain Cuscuta species. The obtained data also indicate that the presence of the lutein epoxide cycle and of neoxanthin is independent and variable among the Cuscuta species. The xanthophyll cycle carotenoids violaxanthin, antheraxanthin and zeaxanthin were identified in all the examined species and occurred at the level found in other higher plants. The xanthophyll and lutein epoxide cycle pigments showed typical response to high light stress. The obtained results also suggest that the ability of higher plants to synthesize lutein epoxide probably does not depend on the substrate specificity of zeaxanthin epoxidase but on the availability of lutein for the enzyme.
在本研究中,对8种寄生菟丝子属植物在不同光照条件下的叶黄素组成进行了研究。在所检测的8个物种中,有4个未检测到新黄质,而在其他物种中,新黄质的含量占总叶黄素的百分之几。在田野菟丝子和啤酒花菟丝子中还发现,强光会显著刺激新黄质的含量。在暗适应的植株中,仅3个物种的环氧叶黄素含量占总叶黄素的10%-22%,其中啤酒花菟丝子的含量最高,而在其他物种中,该含量低于3%,这表明环氧叶黄素循环仅局限于某些菟丝子属物种。所得数据还表明,环氧叶黄素循环和新黄质的存在在菟丝子属物种中是独立且可变的。在所有检测物种中均鉴定出叶黄素循环类胡萝卜素紫黄质、花药黄质和玉米黄质,其含量与其他高等植物中的水平相当。叶黄素和环氧叶黄素循环色素对高光胁迫表现出典型响应。所得结果还表明,高等植物合成环氧叶黄素的能力可能不取决于玉米黄质环氧化酶的底物特异性,而是取决于该酶可利用的叶黄素。