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Fully-Automated High-Throughput NMR System for Screening of Haploid Kernels of Maize (Corn) by Measurement of Oil Content

机译:全自动高通量核磁共振系统用于通过测量油含量筛选玉米(玉米)单倍体仁

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摘要

One of the modern crop breeding techniques uses doubled haploid plants that contain an identical pair of chromosomes in order to accelerate the breeding process. Rapid haploid identification method is critical for large-scale selections of double haploids. The conventional methods based on the color of the endosperm and embryo seeds are slow, manual and prone to error. On the other hand, there exists a significant difference between diploid and haploid seeds generated by high oil inducer, which makes it possible to use oil content to identify the haploid. This paper describes a fully-automated high-throughput NMR screening system for maize haploid kernel identification. The system is comprised of a sampler unit to select a single kernel to feed for measurement of NMR and weight, and a kernel sorter to distribute the kernel according to the measurement result. Tests of the system show a consistent accuracy of 94% with an average screening time of 4 seconds per kernel. Field test result is described and the directions for future improvement are discussed.
机译:现代农作物育种技术之一是使用加倍的单倍体植物,其中包含相同的一对染色体,以加快育种过程。快速单倍体鉴定方法对于大规模选择双单倍体至关重要。基于胚乳和胚种颜色的常规方法缓慢,手动且容易出错。另一方面,由高油诱导剂产生的二倍体和单倍体种子之间存在显着差异,这使得可以利用含油量来鉴定单倍体。本文介绍了一种用于玉米单倍体仁鉴定的全自动高通量NMR筛选系统。该系统由一个采样器单元和一个内核分选器组成,该采样器单元选择一个内核以供进行NMR和重量的测量,以根据测量结果分配内核。该系统的测试显示出94%的稳定精度,每个内核平均筛选时间为4秒。描述了现场测试结果,并讨论了未来的改进方向。

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