Suzui Nobuo, Yin Yong-Gen, Ishii Satomi, Sekimoto Hitoshi, Kawachi Naoki
Takasaki Advanced Radiation Research Institute, National Institutes for Quantum and Radiological Science and Technology, Takasaki, Japan.
Takasaki Advanced Radiation Research Institute, National Institutes for Quantum and Radiological Science and Technology, 1233 Watanuki, Takasaki, Gunma 370-1292 Japan.
Plant Methods. 2017 May 18;13:40. doi: 10.1186/s13007-017-0188-0. eCollection 2017.
Positron imaging can be used to non-destructively visualize the dynamics of a positron-emitting radionuclide in vivo, and is therefore a tool for understanding the mechanisms of nutrient transport in intact plants. The transport of zinc, which is one of the most important nutrient elements for plants, has so far been visualized by positron imaging using Zn (half-life: 9.2 h), which is manufactured in the limited number of facilities that have a cyclotron. In contrast, the positron-emitting radionuclide Zn (half-life: 244 days) is commercially available worldwide. In this study, we examined the possibility of conducting positron imaging of zinc in intact plants using Zn.
By administering Zn and imaging over a long time, clear serial images of Zn distributions from the root to the panicle of dwarf rice plants were successfully obtained.
Non-destructive visualization of zinc dynamics in plants was achieved using commercially available Zn and a positron imaging system, demonstrating that zinc dynamics can be visualized even in facilities without a cyclotron.
正电子成像可用于在体内无损可视化发射正电子的放射性核素的动态,因此是理解完整植物中养分运输机制的一种工具。锌是植物最重要的营养元素之一,迄今为止,锌的运输已通过使用锌(半衰期:9.2小时)的正电子成像进行可视化,而锌是在少数拥有回旋加速器的设施中制造的。相比之下,发射正电子的放射性核素锌(半衰期:244天)在全球范围内均可商业获得。在本研究中,我们研究了使用锌对完整植物中的锌进行正电子成像的可能性。
通过施用锌并进行长时间成像,成功获得了矮秆水稻植株从根部到穗部的锌分布的清晰系列图像。
使用市售的锌和正电子成像系统实现了植物中锌动态的无损可视化,表明即使在没有回旋加速器的设施中也可以可视化锌动态。