ICAR-Central Plantation Crops Research Institute, Kasaragod, India.
ICAR- Central Plantation Crops Research Institute Research Centre, Jalpaiguri, India.
J Sci Food Agric. 2023 Jan 15;103(1):370-379. doi: 10.1002/jsfa.12150. Epub 2022 Aug 13.
Cocos nucifera (L.) is an important plantation crop with immense but untapped nutraceutical potential. Despite its bioactive potential, the biochemical features of testa oils of various coconut genotypes are poorly understood. Hence, in this study, the physicochemical characteristics of testa oils extracted from six coconut genotypes - namely West Coast Tall (WCT), Federated Malay States Tall (FMST), Chowghat Orange Dwarf (COD), Malayan Yellow Dwarf (MYD), and two Dwarf × Dwarf (D × D hybrids) viz., Cameroon Red Dwarf (CRD) × Ganga Bondam Green Dwarf (GBGD) and MYD × Chowghat Green Dwarf (CGD) - were analyzed.
The proportion of testa in the nuts (fruits) (1.29-3.42%), the proportion of oil in the testa (40.97-50.56%), and biochemical components in testa oils - namely proxidant elements Fe (34.17-62.48 ppm) and Cu (1.63-2.77 ppm), and the total phenolic content (6.84-8.67 mg GAE/100 g), and phytosterol content (54.66-137.73 mg CE/100 g) varied depending on the coconut genotypes. The saturated fatty acid content of testa oils (67.75 to 78.78%) was lower in comparison with that of coconut kernel oils. Similarly, the lauric acid (26.66-32.04%), myristic (18.31-19.60%), and palmitic acid (13.43-15.71%,) content of testa oils varied significantly in comparison with the coconut kernel oils (32-51%, 17-21% and 6.9-14%, respectively). Liquid chromatography-mass spectrometry (LC-MS) analysis revealed the presence of 18 phenolic acids in coconut testa oil. Multivariate analysis revealed the biochemical attributes that defined the principal components loadings. Hierarchical clustering analysis of the genotypes showed two distinct clusters.
This study reveals the genotypic variations in the nutritionally important biochemical components of coconut testa oils. The relatively high concentration of polyunsaturated fatty acids (PUFA) and polyphenol content in testa oils warrant further investigation to explore their nutraceutical potential. © 2022 Society of Chemical Industry.
可可椰子(L.)是一种重要的种植作物,具有巨大但未开发的营养潜力。尽管具有生物活性潜力,但各种椰子基因型种皮油的生化特征知之甚少。因此,在这项研究中,从六个椰子基因型中提取的种皮油的理化特性 - 即西海岸高(WCT)、马来联邦高(FMST)、乔格特橙矮(COD)、马来黄矮(MYD)和两个矮 × 矮(D × D 杂种),即喀麦隆红矮(CRD)×冈加邦丹绿矮(GBGD)和 MYD ×乔格特绿矮(CGD) - 进行了分析。
坚果(果实)中种皮的比例(1.29-3.42%)、种皮中油的比例(40.97-50.56%)以及种皮油中的生化成分 - 即氧化剂元素 Fe(34.17-62.48ppm)和 Cu(1.63-2.77ppm),总酚含量(6.84-8.67mgGAE/100g)和植物甾醇含量(54.66-137.73mgCE/100g)因椰子基因型而异。与椰子仁油相比,种皮油的饱和脂肪酸含量(67.75 至 78.78%)较低。同样,种皮油中的月桂酸(26.66-32.04%)、肉豆蔻酸(18.31-19.60%)和棕榈酸(13.43-15.71%)含量与椰子仁油(32-51%,17-21%和 6.9-14%,分别)相比差异显著。液相色谱-质谱(LC-MS)分析表明,椰子种皮油中存在 18 种酚酸。多元分析显示了定义主成分载荷的生化属性。基因型的层次聚类分析显示出两个不同的聚类。
本研究揭示了椰子种皮油中营养重要的生化成分的基因型变异。种皮油中较高浓度的多不饱和脂肪酸(PUFA)和多酚含量值得进一步研究,以探索其营养潜力。© 2022 化学工业协会。