Shewry Peter R, Corol Delia I, Jones Huw D, Beale Michael H, Ward Jane L
Department of Plant and Biology and Crop Science, Rothamsted Research, West Common, Harpenden, Hertfordshire, UK.
Mol Nutr Food Res. 2017 Jul;61(7). doi: 10.1002/mnfr.201600807. Epub 2017 Feb 24.
The application of high-throughput 1H nuclear magnetic resonance (1H-NMR) of unpurified extracts to determine genetic diversity and the contents of polar components in grain of wheat.
Milled whole wheat grain was extracted with 80:20 D O:CD OD containing 0.05% d -trimethylsilylpropionate. 1H-NMR spectra were acquired under automation at 300°K using an Avance Spectrometer operating at 600.0528 MHz. Regions for individual metabolites were identified by comparison to a library of known standards run under identical conditions. The individual 1H-NMR peaks or levels of known metabolites were then compared by Principal Component Analysis using SIMCA-P software.
High-throughput 1H-NMR is an excellent tool to compare the extent of genetic diversity within and between wheat species, and to quantify specific components (including glycine betaine, choline, and asparagine) in individual genotypes. It can also be used to monitor changes in composition related to environmental factors and to support comparisons of the substantial equivalence of transgenic lines.
应用未经纯化的提取物的高通量¹H核磁共振(¹H-NMR)技术来测定小麦籽粒的遗传多样性和极性成分含量。
用含有0.05% d -三甲基硅烷基丙酸酯的80:20 D₂O:CD₃OD对磨碎的全麦籽粒进行提取。使用在600.0528 MHz运行的Avance光谱仪在300°K下自动采集¹H-NMR光谱。通过与在相同条件下运行的已知标准品库进行比较来确定各个代谢物的区域。然后使用SIMCA-P软件通过主成分分析比较已知代谢物的各个¹H-NMR峰或水平。
高通量¹H-NMR是比较小麦物种内部和之间遗传多样性程度以及量化各个基因型中特定成分(包括甘氨酸甜菜碱、胆碱和天冬酰胺)的出色工具。它还可用于监测与环境因素相关的成分变化,并支持对转基因品系实质等同性的比较。