Kumagai M H, Keller Y, Bouvier F, Clary D, Camara B
Biosource Technologies, Vacaville, CA 95688, USA.
Plant J. 1998 May;14(3):305-15. doi: 10.1046/j.1365-313x.1998.00128.x.
The biosynthesis of leaf carotenoids in Nicotiana benthamiana was altered by forced re-routing of the pathway to the synthesis of capsanthin, a non-native chromoplast-specific xanthophyll, using an RNA viral vector containing capsanthin-capsorubin synthase (Ccs) cDNA. The cDNA encoding Ccs was placed under the transcriptional control of a tobamovirus subgenomic promoter. Leaves from transfected plants expressing Ccs developed an orange phenotype and accumulated high levels of capsanthin (up to 36% of total carotenoids). This phenomenon was associated with thylakoid membrane distortion and reduction of grana stacking. In contrast to the situation prevailing in chromoplasts, capsanthin was not esterified and its increased level was balanced by a concomitant decrease of the major leaf xanthophylls, suggesting an autoregulatory control of chloroplast carotenoid composition. Capsanthin was exclusively recruited into the trimeric and monomeric light-harvesting complexes of photosystem II (PSII) and shown to significantly contribute to the light-harvesting capacity. On a chlorophyll basis, the concentrations of PSI and PSII reaction centres were not modified. This demonstration that higher plant antenna complexes can accommodate non-native carotenoids provides compelling evidence for functional remodelling of photosynthetic membranes toward a better photoreactivity by rational design of the incorporated carotenoid structures.
利用含有辣椒红素 - 辣椒玉红素合酶(Ccs)cDNA的RNA病毒载体,通过强制将叶类胡萝卜素生物合成途径重新导向合成辣椒红素(一种非天然的质体特异性叶黄素),改变了本氏烟草中叶类胡萝卜素的生物合成。编码Ccs的cDNA置于烟草花叶病毒亚基因组启动子的转录控制之下。表达Ccs的转基因植物叶片呈现橙色表型,并积累了高水平的辣椒红素(高达总类胡萝卜素的36%)。这种现象与类囊体膜扭曲和基粒堆积减少有关。与质体中的情况不同,辣椒红素未被酯化,其含量的增加与主要叶叶黄素的相应减少相平衡,这表明叶绿体类胡萝卜素组成存在自动调节控制。辣椒红素专门被整合到光系统II(PSII)的三聚体和单体捕光复合物中,并显示出对捕光能力有显著贡献。以叶绿素为基础,PSI和PSII反应中心的浓度没有改变。这一证明,即高等植物天线复合物可以容纳非天然类胡萝卜素,为通过合理设计掺入的类胡萝卜素结构使光合膜功能重塑以实现更好的光反应性提供了有力证据。