Effect of Moisture Content, Grinding, and Extraction Technologies on Crude Fat Assay

Devanand L. Luthria, Kirk Noel, D. Vinjamoori
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引用次数: 4

Abstract

Conventional breeding as well as transgenic approaches constantly strives to make improvements to quality traits such as increasing the percentage of oil and/or modifying the oil composition. One of the key challenges faced by the industry is obtaining accurate, cost-effective, and rapid analysis of oilseeds/grains with enhanced quality traits such as total crude fat (oil) content or a modified oil composition. Reliable crude fat analysis is of paramount importance to oilseed businesses because monetary assessment in the trade of such seeds is based on total oil values. Although several different primary and secondary technologies are available to determine crude fat content in oilseeds, there are significant variations in the results reported by different procedures. A comparative evaluation of different grinders (Mega-grinder, Knifetec, Cyclotec, Cemotec, Mikro mill, UDY grinder, Brinkmann-Retsch grinding mill) and commonly performed crude fat extraction methodologies [accelerated solvent extractor (ASE), supercritical fluid extraction (SFE), Ankom batch extraction, automated Soxtec extraction and classical Butt-tube] on the determination of total crude fat content in soybean seeds is presented. The results clearly suggest a need for harmonization of official primary reference methods across different organizations (e.g., AOCS, AOAC, AACC, ISO, DGF). This is vital for the development of rugged calibrations for nondestructive, high-throughput secondary procedures involving near infrared transmittance, near infrared reflectance/imaging, and nuclear magnetic resonance spectroscopy. Strategies aimed at harmonization of methods will aid in the development of successful business opportunities and obtaining fair trade value for the quality-enhanced traits in the global market. Recommendations for developing secondary calibrations and performing interlaboratory studies are also presented.
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水分含量、研磨和提取技术对粗脂肪测定的影响
传统育种和转基因方法不断努力改进质量性状,如增加油的百分比和/或改变油的组成。该行业面临的主要挑战之一是获得准确、经济、快速的油籽/谷物分析,并提高质量特征,如总粗脂肪(油)含量或改性油成分。可靠的粗脂肪分析对油籽企业至关重要,因为油籽贸易中的货币评估是基于油品总价值。虽然有几种不同的一级和二级技术可用于测定油籽中的粗脂肪含量,但不同程序报告的结果存在显着差异。对不同的研磨机(Mega-grinder、Knifetec、Cyclotec、Cemotec、Mikro磨机、UDY磨机、Brinkmann-Retsch磨机)和常用的粗脂肪提取方法(加速溶剂萃取(ASE)、超临界流体萃取(SFE)、Ankom分批萃取、Soxtec自动萃取和经典的buttt管)在测定大豆种子中总粗脂肪含量方面进行了比较评估。结果清楚地表明,需要协调不同组织(例如,AOCS, AOAC, AACC, ISO, DGF)的官方主要参考方法。这对于非破坏性、高通量二级程序(包括近红外透射率、近红外反射/成像和核磁共振波谱)的坚固校准的发展至关重要。旨在统一方法的战略将有助于开发成功的商业机会,并在全球市场上为提高质量的特性获得公平的贸易价值。还提出了发展二次校准和进行实验室间研究的建议。
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