Determination of the Fatty Acid Composition in Tree Peony Seeds Using Near-Infrared Spectroscopy

被引:29
作者
Cui Huliang [1 ]
Cheng Fangyun [1 ]
Peng Liping [1 ]
机构
[1] Beijing Forestry Univ, Landscape Architecture Coll, Natl Flower Engn Res Ctr, Beijing 100083, Peoples R China
关键词
Tree peony seed; NIR; Fatty acid; Oil use; BRASSICA-NAPUS L; NONDESTRUCTIVE DETERMINATION; SINGLE SEEDS; OIL CONTENT;
D O I
10.1007/s11746-016-2839-0
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Tree peonies (Paeonia Sect Moutan DC) are an emerging oil crop because of their high oil and alpha-linolenic acid (ALA) content. This research was to investigate the potential use of near infrared reflectance spectroscopy (NIRS) for estimating the major fatty acids contents, such as palmitic acid (C16:0), oleic acid (C18:1), linoleic acid (C18:2) and linolenic acid (C18:3) in tree peonies. A total of 115 small seed samples and 447 single seeds were selected to calibrate the predictive models. NIRS absorbance spectra were collected using a Fourier transform near infrared (FT-NIR) spectrometer for the small seed samples, and acousto-optic tunable filter-near infrared (AOTF-NIR) for the single seed samples. Statistical analysis was performed with partial least squares (PLS). For the husked samples, C18:3, C18:1 and C18:2 showed the highest correlation coefficient of validation (R (v); = 0.9756, 0.9467 and 0.8485, respectively) and the ratio of performance to deviation (RPD; = 3.58, 1.91 and 2.17, respectively); however, C16:0 did not reach expectations (R (v) = 0.7783, RPD = 1.32). For intact samples, C18:3 showed the best prediction (R (v) = 0.9096, RPD = 3.14), followed by C18:2 (R (v) = 0.8479, RPD = 1.96). The results for C18:1 were poor (R (v) = 0.7237, RPD = 1.70). For single seeds, only the results for C18:3 (R = 0.9150, RPD = 1.73) were good in the husked seed samples. It was concluded that NIRS can be used to rapidly assess the content of the major fatty acids in small samples.
引用
收藏
页码:943 / 952
页数:10
相关论文
共 21 条
[1]  
Cheng FY, 2005, CHINESE FLARE MUDAN, P77
[2]   Further research on chemotaxonomy of paeonol and analogs in Paeonia (Ranunculaceae) [J].
Guo, Bao-Lin ;
Hong, De-Yuan ;
Xiao, Pei-Gen .
JOURNAL OF SYSTEMATICS AND EVOLUTION, 2008, 46 (05) :724-729
[3]  
Han J-G, 2014, CEREALS OILS, V27, P21, DOI DOI 10.1016/J.ULTS0NCH.2013.12.012
[4]   Non-destructive analysis of rapeseed quality by NIRS of small seed samples and single seeds [J].
Hom, Nang Hseng ;
Becker, Heiko C. ;
Moellers, Christian .
EUPHYTICA, 2007, 153 (1-2) :27-34
[5]   Rapid and Nondestructive Discrimination of Hybrid Maize Seed Purity Using Near Infrared Spectroscopy [J].
Huang Yan-yan ;
Zhu Li-wei ;
Li Jun-hui ;
Wang Jian-hua ;
Sun Bao-qi ;
Sun Qun .
SPECTROSCOPY AND SPECTRAL ANALYSIS, 2011, 31 (03) :661-664
[6]   A feasibility study on non-destructive determination of oil content in palm fruits by visible-near infrared spectroscopy [J].
Kasemsumran, Sumaporn ;
Thanapase, Warunee ;
Punsuvon, Vittaya ;
Ozaki, Yukihiro .
JOURNAL OF NEAR INFRARED SPECTROSCOPY, 2012, 20 (06) :687-694
[7]   Measurement of soybean fatty acids by near-infrared spectroscopy: Linear and nonlinear calibration methods [J].
Kovalenko, Igor V. ;
Rippke, Glen R. ;
Hurburgh, Charles R. .
JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 2006, 83 (05) :421-427
[8]  
Kovalenko IV, 2005, DETERMINATION AMINO
[9]  
Li JJ., 2011, TREE PEONY CHINA, P17
[10]   Systematic qualitative and quantitative assessment of fatty acids in the seeds of 60 tree peony (Paeonia section Moutan DC.) cultivars by GC-MS [J].
Li, Shan-Shan ;
Yuan, Ru-Yu ;
Chen, Li-Guang ;
Wang, Liang-Sheng ;
Hao, Xiang-Hong ;
Wang, Li-Jin ;
Zheng, Xu-Chen ;
Du, Hui .
FOOD CHEMISTRY, 2015, 173 :133-140