首页> 外文期刊>Frontiers in Plant Science >Non-matrix Matched Glass Disk Calibration Standards Improve XRF Micronutrient Analysis of Wheat Grain across Five Laboratories in India
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Non-matrix Matched Glass Disk Calibration Standards Improve XRF Micronutrient Analysis of Wheat Grain across Five Laboratories in India

机译:非矩阵匹配的玻璃盘校准标准改善了印度五个实验室小麦谷物的XRF微量营养素分析

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Within the HarvestPlus program there are many collaborators currently using X-Ray Fluorescence (XRF) spectroscopy to measure Fe and Zn in their target crops. In India, five HarvestPlus wheat collaborators have laboratories that conduct this analysis and their throughput has increased significantly. The benefits of using XRF are its ease of use, minimal sample preparation and high throughput analysis. The lack of commercially available calibration standards has led to a need for alternative calibration arrangements for many of the instruments. Consequently, the majority of instruments have either been installed with an electronic transfer of an original grain calibration set developed by a preferred lab, or a locally supplied calibration. Unfortunately, neither of these methods has been entirely successful. The electronic transfer is unable to account for small variations between the instruments, whereas the use of a locally provided calibration set is heavily reliant on the accuracy of the reference analysis method, which is particularly difficult to achieve when analyzing low levels of micronutrient. Consequently, we have developed a calibration method that uses non-matrix matched glass disks. Here we present the validation of this method and show this calibration approach can improve the reproducibility and accuracy of whole grain wheat analysis on 5 different XRF instruments across the HarvestPlus breeding program.
机译:在HarvestPlus程序中,目前有许多协作者使用X射线荧光(XRF)光谱法测量其目标作物中的Fe和Zn。在印度,五个HarvestPlus小麦合作者有实验室进行这种分析,其吞吐量显着增加。使用XRF的益处是其易用性,最小的样品制备和高通量分析。缺乏市售的校准标准导致了许多仪器的替代校准布置。因此,大多数仪器都安装了由优选实验室开发的原始晶粒校准组的电子传输,或者本地提供的校准。不幸的是,这些方法都没有完全成功。电子转移无法考虑仪器之间的小变化,而使用本地提供的校准集是依赖于参考分析方法的准确性的严重依赖性,这在分析低水平的微量营养素时特别难以实现。因此,我们开发了一种使用非矩阵匹配的玻璃磁盘的校准方法。在这里,我们展示了这种方法的验证,并显示了这种校准方法可以提高全麦小麦分析的再现性和准确性,在HarvestPlus繁殖计划上的5种不同的XRF仪器上的再现性和准确性。

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