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利用正电子发射放射性示踪剂探索植物代谢物的转运。

Exploring the transport of plant metabolites using positron emitting radiotracers.

作者信息

Kiser Matthew R, Reid Chantal D, Crowell Alexander S, Phillips Richard P, Howell Calvin R

出版信息

HFSP J. 2008 Aug;2(4):189-204. doi: 10.2976/1.2921207. Epub 2008 Jul 8.

Abstract

Short-lived positron-emitting radiotracer techniques provide time-dependent data that are critical for developing models of metabolite transport and resource distribution in plants and their microenvironments. Until recently these techniques were applied to measure radiotracer accumulation in coarse regions along transport pathways. The recent application of positron emission tomography (PET) techniques to plant research allows for detailed quantification of real-time metabolite dynamics on previously unexplored spatial scales. PET provides dynamic information with millimeter-scale resolution on labeled carbon, nitrogen, and water transport over a small plant-size field of view. Because details at the millimeter scale may not be required for all regions of interest, hybrid detection systems that combine high-resolution imaging with other radiotracer counting technologies offer the versatility needed to pursue wide-ranging plant physiological and ecological research. In this perspective we describe a recently developed hybrid detection system at Duke University that provides researchers with the flexibility required to carry out measurements of the dynamic responses of whole plants to environmental change using short-lived radiotracers. Following a brief historical development of radiotracer applications to plant research, the role of radiotracers is presented in the context of various applications at the leaf to the whole-plant level that integrates cellular and subcellular signals andor controls.

摘要

短寿命正电子发射放射性示踪技术可提供随时间变化的数据,这些数据对于建立植物及其微环境中代谢物运输和资源分配模型至关重要。直到最近,这些技术还用于测量沿运输途径的粗略区域中的放射性示踪剂积累。正电子发射断层扫描(PET)技术最近在植物研究中的应用使得能够在以前未探索的空间尺度上对实时代谢物动态进行详细量化。PET在小植株大小的视野范围内,以毫米级分辨率提供有关标记碳、氮和水运输的动态信息。由于并非所有感兴趣的区域都需要毫米级的细节,因此将高分辨率成像与其他放射性示踪剂计数技术相结合的混合检测系统提供了开展广泛的植物生理和生态研究所需的多功能性。在这篇综述中,我们描述了杜克大学最近开发的一种混合检测系统,该系统为研究人员提供了利用短寿命放射性示踪剂测量整株植物对环境变化的动态响应所需的灵活性。在简要回顾放射性示踪剂在植物研究中的应用历史发展之后,我们将在从叶片到整株植物水平的各种应用背景下介绍放射性示踪剂的作用,这些应用整合了细胞和亚细胞信号及/或调控。

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