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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Analysis of Maize (Zea mays) Kernel Density and Volume Using Microcomputed Tomography and Single-Kernel Near-Infrared Spectroscopy
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Analysis of Maize (Zea mays) Kernel Density and Volume Using Microcomputed Tomography and Single-Kernel Near-Infrared Spectroscopy

机译:使用微计算机断层扫描和单核近红外光谱分析玉米(Zea mays)玉米密度和体积

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摘要

Maize kernel density affects milling quality of the grain. Kernel density of bulk samples can be predicted by near-infrared reflectance (NIR) spectroscopy, but no accurate method to measure individual kernel density has been reported. This study demonstrates that individual kernel density and volume are accurately measured using X-ray microcomputed tomography (μCT). Kernel density was significantly correlated with kernel volume, air space within the kernel, and protein content. Embryo density and volume did not influence overall kernel density. Partial least-squares (PLS) regression of μCT traits with single-kernel NIR spectra gave stable predictive models for kernel density (R~2 = 0.78, SEP = 0.034 g/cm~3) and volume (R~2 = 0.86, SEP = 2.88 cm ). Density and volume predictions were accurate for data collected over ] 0 months based on kernel weights calculated from predicted density and volume (R2 = 0.83, SEP = 24.78 mg). Kernel density was significantly correlated with bulk test weight (r = 0.80), suggesting that selection of dense kernels can translate to improved agronomic performance.
机译:玉米籽粒密度影响谷物的碾磨质量。可以通过近红外反射(NIR)光谱预测散装样品的籽粒密度,但尚未报道测量单个籽粒密度的准确方法。这项研究表明,使用X射线微计算机断层扫描(μCT)可以准确地测量单个籽粒的密度和体积。籽粒密度与籽粒体积,籽粒中的空气空间和蛋白质含量显着相关。胚的密度和体积不影响总体籽粒密度。单核NIR光谱对μCT特性的偏最小二乘(PLS)回归给出了稳定的内核密度(R〜2 = 0.78,SEP = 0.034 g / cm〜3)和体积(R〜2 = 0.86,SEP)的预测模型= 2.88厘米)。基于从预测的密度和体积计算的籽粒重量(R2 = 0.83,SEP = 24.78 mg),对于0个月以上收集的数据,密度和体积预测是准确的。籽粒密度与总重(r = 0.80)显着相关,表明选择高密度籽粒可以转化为改良的农艺性能。

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