Limnological Institute of Siberian Branch of Russian Academy of Sciences, 3, Ulan-Batorskaya St., P.O. Box 278, Irkutsk 664033, Russia.
Eur Biophys J. 2013 Jul;42(7):587-90. doi: 10.1007/s00249-013-0913-1. Epub 2013 May 25.
Diatom algae realize highly intriguing processes of biosynthesis of siliceous structures in living cells under moderate conditions. Investigation of diatom physiology is complicated by frustule (siliceous exoskeleton). Frustules consist of valves and girdle bands which are adhered to each other by means of organic substances. Removal of the frustule from the lipid membrane of diatom cells would open new possibilities for study of silicon metabolism in diatoms. We found that submillimeter laser irradiation produced by a free-electron laser causes splitting of diatom frustules without destruction of cell content. This finding opens the way to direct study of diatom cell membrane and to isolation of cell organelles, including silica deposition vesicles. We suppose that the dissection action of the submillimeter irradiation results from unusual ultrasonic waves produced by the short (30-100 ps) but high-power (1 MW) terahertz laser impulses at 5.6 MHz frequency.
硅藻在温和条件下的活细胞中实现了令人着迷的硅质结构生物合成过程。对硅藻生理学的研究受到了硅外壳(硅质外壳)的阻碍。硅外壳由通过有机物质彼此附着的瓣和环带组成。将硅外壳从硅藻细胞的脂膜中去除将为研究硅藻中的硅代谢开辟新的可能性。我们发现,自由电子激光产生的亚毫米激光照射会导致硅藻硅外壳分裂,而不会破坏细胞内容物。这一发现为直接研究硅藻细胞膜和分离细胞器(包括硅沉积囊泡)开辟了道路。我们假设,亚毫米辐射的分解作用是由 30-100 ps 但功率为 1 MW 的太赫兹激光脉冲在 5.6 MHz 频率下产生的不寻常超声波引起的。