Department of Applied Chemistry, College of Science, National Chiao Tung University , 1001 Ta Hsueh Rd., Hsinchu 30010, Taiwan.
Department of Chemistry, Faculty of Science, Josai University , Sakado 350-0295, Japan.
J Phys Chem B. 2017 Feb 9;121(5):915-922. doi: 10.1021/acs.jpcb.6b10204. Epub 2017 Jan 26.
Well-packed thylakoids known as grana are one of the major functional sites for photosynthesis in algae and plants. Their highly ordered structures can be considered as a few hundred nanometer-sized particles having distinct scattering cross sections from other various macromolecular organizations inside plant cells. With this background we show that elastic light scattering imaging and microspectroscopy is an important tool for investigating structure and organization of grana inside a single chloroplast in plant cells. We have demonstrated this noninvasive method to identify the distribution of grana in intact fresh leaf of robust and rapidly growing Egaria densa, which is also known as Anachris and among the most popular aquarium plants. The scattering efficiency spectra of their individual grana fairly resemble cooperative absorption spectra of porphyrins and carotenoids. We found that the electronic structure of the stacked thylakoids shows granum size-dependence, indicating that size of grana is one of the critical parameters in the regulation of the photochemical functions in the thylakoid.
结构良好的类囊体被称为基粒,是藻类和植物光合作用的主要功能部位之一。它们高度有序的结构可以被认为是几百纳米大小的颗粒,具有与植物细胞内其他各种大分子组织明显不同的散射截面。基于这一背景,我们表明弹性光散射成像和微光谱学是研究植物细胞中单个叶绿体中基粒结构和组织的重要工具。我们已经证明了这种非侵入性方法可以识别在强健且快速生长的大薸(Egaria densa)完整新鲜叶片中的基粒分布,大薸也被称为水蕹菜,是最受欢迎的水族馆植物之一。它们单个基粒的散射效率谱与卟啉和类胡萝卜素的协同吸收光谱相当相似。我们发现,堆叠类囊体的电子结构表现出与基粒大小相关的特性,这表明基粒的大小是调节类囊体光化学功能的关键参数之一。