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使用近红外反射光谱法(NIRS)测定活体黄粉虫幼虫(L.)中的水分和蛋白质含量。

Determination of Moisture and Protein Content in Living Mealworm Larvae ( L.) Using Near-Infrared Reflectance Spectroscopy (NIRS).

作者信息

Kröncke Nina, Benning Rainer

机构信息

Institute of Food Technology and Bioprocess Engineering, University of Applied Sciences Bremerhaven, An der Karlstadt 8, 27568 Bremerhaven, Germany.

出版信息

Insects. 2022 Jun 20;13(6):560. doi: 10.3390/insects13060560.

Abstract

Yellow mealworm larvae ( L.) are a sustainable source of protein for food and feed. This study represents a new approach in analyzing changes in the nutritional composition of mealworm larvae using near-infrared reflectance spectroscopy (NIRS) combined with multivariate analysis. The moisture and protein content of living larvae were scanned with a near-infrared spectrometer using wavelengths from 1100 to 2100 nm. Different feeding groups with varying moisture sources and amount and the difference between low (50%) and high (75%) humidity were tested, and the influence on larval moisture and protein content was measured. A calibration was developed, with modified partial least squares as the regression method. The NIR spectra were influenced by the moisture and protein content of the larvae, because the absorbance values of the larval groups differed greatly. The coefficient of the determination of calibration (R) and prediction (R) were over 0.98 for moisture and over 0.94 for protein content. The moisture source and content also had a significant influence on the weight gain of the larvae. Consequently, significant differences in protein content could be determined, depending on the water supply available. With respect to wet weight, the larvae moisture content varied from 60 to 74% and protein content from 16 to 24%. This investigation revealed that with non-invasive NIRS online monitoring, the composition of insects can be continuously recorded and evaluated so that specific feeding can be carried out in the course of larval development and composition.

摘要

黄粉虫幼虫是一种可持续的食物和饲料蛋白质来源。本研究采用近红外反射光谱法(NIRS)结合多变量分析,代表了一种分析黄粉虫幼虫营养成分变化的新方法。使用波长为1100至2100nm的近红外光谱仪对活体幼虫的水分和蛋白质含量进行扫描。测试了不同水分来源、数量的不同饲养组以及低湿度(50%)和高湿度(75%)之间的差异,并测量了对幼虫水分和蛋白质含量的影响。采用改进的偏最小二乘法作为回归方法建立了校准模型。近红外光谱受幼虫水分和蛋白质含量的影响,因为幼虫组的吸光度值差异很大。校准决定系数(R)和预测决定系数(R)对于水分含量超过0.98,对于蛋白质含量超过0.94。水分来源和含量对幼虫的体重增加也有显著影响。因此,根据可用的供水情况,可以确定蛋白质含量的显著差异。以湿重计,幼虫的水分含量在60%至74%之间,蛋白质含量在16%至24%之间。这项研究表明,通过非侵入性近红外光谱在线监测,可以连续记录和评估昆虫的成分,从而在幼虫发育和成分形成过程中进行特定的饲养。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/616b/9224910/4f7009a748a0/insects-13-00560-g001.jpg

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