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May 28, 2026Applied Food Research0 citationsOpen Access

Comprehensive analytical characterization of seed oils from novel Chinese soybean cultivars: Implications for nutritional evaluation and industrial utilization

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SKSameh A. KormaLLLi LiPLPengzhan Liu

Key Points

  • This study aims to characterize the oil composition of new soybean cultivars for nutritional evaluation and industrial use.
  • Conducted a comprehensive analysis of oil composition from four soybean cultivars in southern China.
  • Identified 141 triacylglycerol species using ultra-performance liquid chromatography-electrospray ionization-quadrupole-time-of-flight mass spectrometry.
  • Utilized thermal analysis and infrared spectroscopy to evaluate melting points and chemical structure.
  • Oil contents varied between cultivars, with 23.09% in YXL2 and 18.61% in 016-1.
  • Linoleic acid accounted for 51.51-56.15% of total fatty acids, primarily at the sn -2 position of triacylglycerols.
  • YXL2 was highlighted for superior oil yield and polyunsaturated fatty acid distribution.

Abstract

Soybean seeds are an important source of vegetable oils, and characterizing their oil composition is essential for evaluating nutritional quality and industrial potential. In this study, seed oils from four newly developed soybean cultivars (YXL2, HN20, 016-1, and HX3P) grown in southern China were comprehensively analyzed. Significant differences were observed in proximate composition, with oil contents ranging from 18.61% (016-1) to 23.09% (YXL2). Linoleic acid was the predominant fatty acid, accounting for 51.51-56.15% of total fatty acids, and was primarily located at the sn -2 position of triacylglycerols. A total of 141 triacylglycerol species were identified using ultra-performance liquid chromatography-electrospray ionization-quadrupole-time-of-flight mass spectrometry. The most abundant species were oleic-linoleic-linolenic (O-L-Ln), linoleic-linoleic-linoleic (L-L-L), and stearic-linolenic-linolenic (S-Ln-Ln), representing 8.48% (016-1) to 9.44% (YXL2) of total triacylglycerols. Thermal analysis showed that all soybean oils melted in the low-melting-point region, while infrared spectroscopy revealed stronger absorption intensities at ∼3009 cm -1 , corresponding to the -C=C-H ( cis ) stretching vibration, in YXL2 and HX3P oils, correlating with their higher degrees of unsaturation. Based on its superior oil yield and favorable polyunsaturated fatty acid distribution, YXL2 was identified as the most suitable cultivar for industrial oil production, while 016-1 offered a unique high-protein, high-omega-3 profile. This study provides the first comprehensive analytical characterization of these Chinese soybean cultivars, offering valuable insights for oil authentication and their targeted utilization in vegetable oil refining, functional food formulations, and high-protein ingredient production.

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Cite This Study

Korma et al. (2026) studied this question.

synapsesocial.com/papers/6a17daf83fad632b0f9d7dcfhttps://doi.org/10.1016/j.afres.2026.102198
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