Gromova Marina, Guillermo Armel, Bayle Pierre-Alain, Bardet Michel
University of Grenoble Alpes, INAC-SCIB, LRM, 38000, Grenoble, France,
Eur Biophys J. 2015 Apr;44(3):121-9. doi: 10.1007/s00249-015-1007-z. Epub 2015 Feb 3.
An easy to implement and convenient method to measure the mean size of oil bodies (OBs) in plant seeds is proposed using a pulsed field gradient nuclear magnetic resonance (PFGNMR) approach. PFGNMR is a well-known technique used to study either free or restricted diffusion of molecules. As triacylglycerols (TAG) are confined in OBs, analysis of their diffusion properties is a well-suited experimental approach to determine OB sizes. In fact, at long diffusion time, TAG mean squared displacement is limited by the size of the domain where these molecules are confined. In order to access the OB size distribution, strong intensities of magnetic field gradients are generally required. In this work we demonstrate for the first time that a standard liquid-phase NMR probe equipped with a weak-intensity gradient coil can be used to determine the mean size of OBs. Average sizes were measured for several seeds, and OB diameters obtained by PFGNMR were fully consistent with previously published values obtained by microscopy techniques. Moreover, this approach provided evidence of TAG transfer through the network of interconnected OBs, which is dependent on the ability of adjacent membranes to open diffusion routes between OBs. The main advantage of the NMR method is that it does not require any sample preparation and experiments are performed with whole seeds directly introduced in a standard NMR tube.
提出了一种易于实施且便捷的方法,利用脉冲场梯度核磁共振(PFGNMR)方法测量植物种子中油体(OBs)的平均大小。PFGNMR是一种用于研究分子自由扩散或受限扩散的知名技术。由于三酰甘油(TAG)被限制在油体中,分析其扩散特性是确定油体大小的一种非常合适的实验方法。事实上,在长扩散时间下,TAG的均方位移受这些分子所在区域大小的限制。为了获得油体大小分布,通常需要强磁场梯度强度。在这项工作中,我们首次证明配备弱强度梯度线圈的标准液相NMR探头可用于确定油体的平均大小。测量了几种种子的平均大小,通过PFGNMR获得的油体直径与先前通过显微镜技术获得的已发表值完全一致。此外,该方法提供了TAG通过相互连接的油体网络转移的证据,这取决于相邻膜在油体之间打开扩散途径的能力。NMR方法的主要优点是不需要任何样品制备,实验直接用直接放入标准NMR管中的完整种子进行。