YU Fu-kuan,SUN Jun-ming,HAN Fen-xia,et al.Comparison of Three Rapid Gas Chromatograph(GC)Methods for Determination of Fatty Acid Components in Soybean Seeds[J].Soybean Science,2011,30(04):626-631.[doi:10.11861/j.issn.1000-9841.2011.04.0626]
大豆籽粒中脂肪酸组分快速检测方法的比较分析
- Title:
- Comparison of Three Rapid Gas Chromatograph(GC)Methods for Determination of Fatty Acid Components in Soybean Seeds
- 文章编号:
- 1000-9841(2011)04-0626-06
- 分类号:
- S565.1
- 文献标志码:
- A
- 摘要:
- 选取脂肪酸组分含量具有显著差异的5份大豆种质为材料,采用索氏抽提法、改良的籽粒直接甲酯化法和豆粉直接甲酯化法3种方法处理样品,利用气相色谱(GC)技术分析大豆5种脂肪酸棕榈酸、硬脂酸、油酸、亚油酸和亚麻酸的组分含量,并对3种样品处理方法进行比较分析。结果显示籽粒直接甲酯化法简便快捷,适用于低世代的单籽粒或半籽粒的样品量较少情况下测定大豆脂肪酸组成;豆粉直接甲酯化法适合大量样品的快速检测,可以避免长时间加热对脂肪酸组分的影响,测定结果相对准确;索氏抽提法适合样品量大,检测精度高,但样品前处理需要进行油份抽提,费工费时。精密度检测结果显示,改良的籽粒直接甲酯化法和豆粉直接甲酯化法与索氏抽提法在检测精度上没有显著差异,可以用于大豆籽粒的快速脂肪酸含量鉴定。
- Abstract:
- Five kinds of fatty acid components including palmitic acid,stearic acid,oleic acid,linoleic acid,linolenic acid,were analyzed by the gas chromatograph(GC)method,and three sample handling methods,including Soxhlet extraction,improved seed-methyl esterification and powder-methyl esterification methods,were compared in the five soybean varieties in order to reveal the differentiation among them.The results showed that the seed-methyl esterification method is simple and fast,which is suitable for the determination of single or half of seed in the low generation.The powder-methyl esterification method is relative accurate,which is good to the quick measurement of a great amount of soybean sample and can avoid decomposing the fatty acid components by the heating for long time.The Soxhlet extraction method has an advantage on the precision of analysis,but needs a great quantity of samples,the long time-consuming and lots of work.The test of precision showed that there was no significant different among the three kinds of methods,which demonstrated that both of the improved seed-methyl esterification and the powder-methyl esterification methods can be useful for determining the fatty acid components in soybean seeds.
参考文献/References:
[1]Panthee D R,Pantalone V R,Saxton A M.Modifier QTL for fatty acids composition in soybean oil[J].Euphytica,2006,152:67-73. [2]郑永战,盖钧镒,赵团结,等.中国大豆栽培和野生资源脂肪性状的变异特点研究[J].中国农业科学,2003,41(5):1283-1290.(Zheng Y Z,Gai J Y,Zhao T J,et al.A study on variability of fat-related traits in cultivated and wild soybean germplasm in China[J].Scientia Agricultura Sinica,2003,41(5):1283-1290.) [3]刘兴媛,胡传璞,季玉玲.中国大豆种质资源的脂肪酸组成分析[J].作物品种资源,1998(2):40-42.(Liu X Y,Hu C P,Ji Y L.Analysis of the fatty acid components of soybean seeds in China[J].Crop Germplasm and Resources,1998(2):40-42.) [4]徐杰,胡国华,张大勇,等.大豆籽粒发育过程中脂肪酸组分的累积动态[J].作物学报,2006,32(11):1759-1763.(Xu J,Hu G H,Zhang D Y,et al.Dynamic accumulation of fatty acids in grain maturing process of soybean[J].Acta Agronomica Sinica,2006,32(11):1759-1763.) [5]胡超越,王振民.大豆油脂脂肪酸含量与主要农艺性状的遗传相关及通径分析[J].大豆科学,2006,25(1):18-21.(Hu C Y,Wang Z M.Genetic correlation and path-coefficient of important oil fatty acid content with the major agronomic characters in soybean[J].Soybean Science,2006,25(1):18-21.) [6]何志鸿,姚振纯,林红.黑龙江省大豆化学品质生态地理分布Ⅰ.野生大豆化学品质生态地理分布[J].东北农学院学报,1988,19(3):237-245.(He Z H,Yao Z C,Lin H.Study on ecology-geographical distribution divisions of soybean chemical quality in Heilongjiang province Ⅰ.The ecology-geographical distribution of chemical quality of Glycine soja?[J].Journal of Northeast Agricultural College,1988,19(3):237-245.) [7]吕景良,邵荣春,吴百灵,等.东北地区大豆品种资源脂肪酸组成的分析研究[J].作物学报,1990,16(4):349-351.(Lv J L,Shao R C,Wu B L,et al.Studies on the fatty acid composition of soybean germplasm resources in northeast China[J].Acta Agronomica Sinica,1990,16(4):349-351.) [8]李爱萍,王曙明,胡明祥,等.大豆不同杂交组合F2油分含量分布及其遗传变异[J].中国油料,1992(2):12-13.(Li A P,Wang S M,Hu M X.Genetic variation of soybean content of different F2 populations[J].Chinese Journal of Oil Crop Sciences,1992(2):12-13.) [9]Spencer M M,Landau-Ellis D,Meyer E J,et al.Molecular markers associated with linolenic acid content in soybean[J].Journal of the American Oil Chemists’ Society,2004,8:559-562. [10]Robert G,Upchurch,Martha E Ramirez.Gene expression profiles of soybeans with mid-oleic acid seed phenotype[J].Journal of the American Oil Chemists’ Society,2010,87:857-864. [11]Richard F Wilson,Burton J W,Brim C A.Progress in the selection for altered fatty acid composition in soybean[J].Crop Science,1981,21:788-791. [12]Martin B A,Rinne R W.Relationship between fatty acid composition of vegetative and reproductive structures of six soybean genotypes[J].Crop Science,1985,25:1055-1058. [14]王宁惠.油菜籽中脂肪酸含量的气相色谱分析[J].青海农林科技,2006(4):35-36.(Wang N H.Analysis of fatty acid components by gas chromatography in rape seeds[J].Science and Technology of Qinghai Agriculture and Forestry,2006(4):35-36.) [15]师治贤,刘梅,胡凤祖,等.青藏茶子种子中的脂肪酸含量分析[J].西北植物学报,2004,4(1):149-151.(Shi Z X,Liu M,Hu F Z,et al.Analysis on fatty acids in seeds of Ribes Qingzang[J].Acta Botanica Boreali-Occidentalia Sinica,2004,24(1):149-151.) [16]王晓燕,张彩英,贾晓艳.河北省大豆品种脂肪酸组成与含量分析[J].河北农业大学学报,2007,30(2):15-18.(Wang X Y,Zhang C Y,Jia X Y.Analysis of fatty acids com position and content in soybean varieties in Hebei province[J].Journal of Hebei Agricultural University,2007,30(2):15-18.) [17]崔昌浩,田晶,徐龙权.气相色谱法在检测细胞脂肪酸及菌种鉴定中的应用[J].大连轻工业学院学报,2007,26(2):104-107.(Cui C H,Tian J,Xu L Q.Application of gas chromatography in identification of bacteria by analyzing fatty acid in cells[J].Journal of Dalian Institute of Light Industry,2007,26(2):104-107.) [18]孙君明,韩粉霞,闫淑荣,等.傅里叶近红外反射光谱法快速测定大豆脂肪酸含量[J].光谱学与光谱学分析,2008,28(6):1290-1295.(Sun J M,Han F X,Yan S H,et al.Rapid determination of fatty acids in soybeans[Glycine max(L.)Merr.]by FT-Near-Infrared Reflectance Spectroscopy[J].Spectroscopy and Spectral Analysis,2008,28(6):1290-1295.) [19]柴玉华,谭克竹.基于近红外分析技术检测大豆脂肪酸含量的研究[J].农业工程报,2007,23(1):238-241.(Cai Y H,Tan K Z.Measurement of soybean fatty acid content by infrared spectroscopy[J].Transaction of the Chinese Society of Agricultural Engineering,2007,23(1):238-241.) [20]张颖君,高慧敏,蒋春志,等.大豆种子脂肪酸含量的快速测定[J].大豆科学,2008,27(5):859-862.(Zhang Y J,Gao H M,Jiang C Z,et al.Fast Analysis on fatty acids of soybean seed by gas chromatography[J].Soybean Science,2008,27(5):859-862.)
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备注/Memo
基金项目:转基因重大专项资助项目(2008ZX08004-003,2008ZX08004-004);国家高技术研究发展计划(863计划)资助项目(2006AA100104);国家科技支撑计划资助项目(2006BAD13B05,2006BAD01A04);国家自然科学基金资助项目(30000107);中央公益性科研院所基本科研业务费资助项目(2060302)。