Department of Biology, Institute of Agricultural Sciences, ETH Zurich, Universitätsstrasse 2, 8092 Zurich, Switzerland.
Plant Methods. 2013 Nov 19;9(1):45. doi: 10.1186/1746-4811-9-45.
Plant biomass consists primarily of carbohydrates derived from photosynthesis. Monitoring the assimilation of carbon via the Calvin-Benson cycle and its subsequent utilisation is fundamental to understanding plant growth. The use of stable and radioactive carbon isotopes, supplied to plants as CO2, allows the measurement of fluxes through the intermediates of primary photosynthetic metabolism, long-distance transport of sugars in the vasculature, and the synthesis of structural and storage components.
Here we describe the design of a system for supplying isotopically labelled CO2 to single leaves of Arabidopsis thaliana. We demonstrate that the system works well using short pulses of 14CO2 and that it can be used to produce robust qualitative and quantitative data about carbon export from source leaves to the sink tissues, such as the developing leaves and the roots. Time course experiments show the dynamics of carbon partitioning between storage as starch, local production of biomass, and export of carbon to sink tissues.
This isotope labelling method is relatively simple to establish and inexpensive to perform. Our use of 14CO2 helps establish the temporal and spatial allocation of assimilated carbon during plant growth, delivering data complementary to those obtained in recent studies using 13CO2 and MS-based metabolomics techniques. However, we emphasise that this labelling device could also be used effectively in combination with 13CO2 and MS-based techniques.
植物生物质主要由光合作用产生的碳水化合物组成。监测卡尔文-本森循环中碳的同化及其随后的利用,是理解植物生长的基础。使用稳定和放射性碳同位素,作为 CO2 供应给植物,可以测量初级光合作用代谢中间产物、在脉管系统中糖的远距离运输以及结构和储存成分的合成的通量。
在这里,我们描述了一种向拟南芥单个叶片供应同位素标记 CO2 的系统的设计。我们证明,该系统使用 14CO2 的短脉冲效果很好,并且可以用于产生关于源叶片到汇组织(如发育中的叶片和根)的碳输出的稳健定性和定量数据。时程实验显示了碳在淀粉储存、生物质局部产生和碳向汇组织输出之间的分配动态。
这种同位素标记方法相对简单,建立和执行成本低廉。我们使用 14CO2 有助于确定植物生长过程中同化碳的时间和空间分配,提供了与最近使用 13CO2 和基于 MS 的代谢组学技术获得的数据互补的数据。然而,我们强调,该标记装置也可以与 13CO2 和基于 MS 的技术有效结合使用。