Exploring Phylogenetic Relationships between Hundreds of Plant Fatty Acids Synthesized by Thousands of Plants. more details ...

Delta notation: 20:0

Other Names: Arachic acid; Arachidic acid; Icosanoic acid; NSC 93983; n-Eicosanic acid; n-Eicosanoic acid

Formula: C20 H40 O2

Mass: 312.53

IUPAC name: icosanoic acid

Eicosanoic acid
Structure drawn at OPSIN (opsin.ch.cam.uk)

External Database IDs:
CAS registry: 506-30-9
SOFA Mol: M_119
Lipid Maps: LMFA01010020
PubChem: 10467
ChEBI:

inchi: InChI=1/C20H40O2/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-19-20(21)22/h2-19H2,1H3,(H,21,22)/f/h21H

stdinchi: InChI=1S/C20H40O2/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-19-20(21)22/h2-19H2,1H3,(H,21,22)

stdinchikey: VKOBVWXKNCXXDE-UHFFFAOYSA-N

smiles: C(CCCCCCCCCCCCCCCCCCC)(=O)O


Results

Displaying datapoints 2601 - 2650 of 5933 in total
PlantSort off PublicationSort off ValueSort off UnitSort off
Lycium barbarum Fatty acids of some Solanaceae seed oil Tsevegsueren, N.; Aitzetmueller, K.; Bruehl, L. National University of Mongolia - Scientific Journal Chemistry (1999) 2 56-61 0.5 GLC-Area-%
Hippophae rhamnoides Unpublished unpublished results MRI Proben Xin, 1995 (1996) 0.5 GLC-Area-%
Hippophae rhamnoides Unpublished unpublished results MRI Fettextr. Xin (1998) 0.5 GLC-Area-%
Oenothera serrulata New sources of γ-linolenic acid Wolf, R. B.; Kleiman, R.; England, R. E. Journal of the American Oil Chemists' Society (1983) 60 1858-1860 0.5 GLC-Area-%
Afzelia cuanzensis NEW TROPICAL SEED OILS .4. COMPONENT ACIDS OF LEGUMINOUS AND OTHER SEED OILS INCLUDING USEFUL SOURCES OF CREPENYNIC AND DEHYDROCREPENYNIC ACID Gunstone, F. D.; Hammonds, T. W.; Steward, S. R.; Corneliu.Ja, Journal of the Science of Food and Agriculture (1972) 23 53-60 0.5 GLC-Area-%
Lepidium latifolium Search for new industrial oils. XIII. Oils from 102 species of cruciferae Miller, R. W.; Earle, F. R.; Wolff, I. A.; Jones, Q. Journal of the American Oil Chemists' Society (1965) 42 817-821 0.5 GLC-Area-%
Hicksbeachia pinnatifolia The fatty acid composition of the seed oils of proteaceae: A chemotaxonomic study Vickery, J. R. Phytochemistry (1971) 10 123-130 0.5 GLC-Area-%
Cephalocroton pueschelii VEGETABLE OILS .9. APPLICATION OF REVERSED-PHASE CHROMATOGRAPHY TO ANALYSIS OF SEED OILS Gunstone, F. D.; Sykes, P. J. Journal of the Science of Food and Agriculture (1961) 12 115-& 0.5 GLC-Area-%
Brassica alboglabra Survey of seed oils for use as diesel fuels Kalayasiri, P.; Jeyashoke, N.; Krisnangkura, K. Journal of the American Oil Chemists Society (1996) 73 471-474 0.5 GLC-Area-%
Plantago media Identification and Distribution of Oxygenated Fatty Acids in Plantago Seed Lipids Smith, Mark A.; Zhang, Haixia; Purves, Randy W. Journal of the American Oil Chemists' Society (2014) 91 1313-1322 0.5 weight-%
Angelica sylvestris DETERMINATION OF PETROSELINIC ACID IN THE APIACEAE SEED OILS Ucciani, E.; Mallet, G.; Chevolleau, S. Revue Francaise Des Corps Gras (1991) 38 109-115 0.5 GLC-Area-%
Citrullus sp. Unpublished results Aitzetmueller, K. et al. Unpublished (1997) 0.5 GLC-Area-%
Aristolochia elegans FATTY-ACID COMPOSITION OF SOME OILS FROM SENEGALESE SEEDS Miralles, J.; Pares, Y. Revue Francaise Des Corps Gras (1980) 27 393-396 0.5 GLC-Area-%
Pharbitis purpurea (L.) Voigt 牵牛子脂肪油超临界CO_2萃取及气相_质谱测定_李澎灏 . GC-MS Analysis and CO2 Supercritical Fluid Extraction of Fatty Oil of Semen Pharbtidis LI Penghao; Chen Zhende CHINA PHARMACY (2003) 14(7) 431-432 0.5 weight-%
Arctium minus Unpublished unpublished results MRI (1996) 0.5 GLC-Area-%
Clematis fruticosa Unpublished unpublished results MRI (1996) 0.5 GLC-Area-%
Trachycarpus fortunei (Hook.) H. Wendl. 气相色谱_质谱法分析棕榈果脂肪酸组成_沈丹玉 . Analysis of Fatty Acid Composition in Oil Palm Fruit by Chromatography-Mass Spectrometry Shen Danyu; Tang Fubin; Zhong Donglian; Ni Zhanglin; Qu Minghua; Mo Runhong  Journal of the Chinese Cereals and Oils Association (2012) 27(1) 111-113 0.5 weight-%
Pinus brutia Fatty acids of the seeds from pine species of the Ponderosa-Banksiana and Halepensis sections. The peculiar taxonomic position of Pinus pinaster Wolff, Robert L.; Comps, Bernard; Deluc, Laurent G.; Marpeau, Anne M. Journal of the American Oil Chemists' Society (1998,1) 75 45-50 0.5 GLC-Area-%
Alnus glutinosa COMPOSITION OF NEW SEED OILS Lotti, G.; Paradossi, C.; Marchini, F. Agrochimica (1991) 35 58-68 0.5 GLC-Area-%
Brassica campestris VEGETABLE-OILS AS RAW-MATERIALS OF INDUSTRY - A CONTRIBUTION OF AGRICULTURE TO SECURE THE RAW-MATERIALS Dambroth, M.; Kluding, H.; Seehuber, R. Fette Seifen Anstrichmittel (1982) 84 173-178 0.5 GLC-Area-%
Haplophyllum sp. Unpublished unpublished results MRI (1998) 0.5 GLC-Area-%
Quercus cerris austriaca Characterization of Turkish Quercus L. taxa based on fatty acid compositions of the acorns Özcan, T. JAOCS, Journal of the American Oil Chemists' Society (2007) 84 653-662 0.5 GLC-Area-%
Myosotis sylvatica gamma-Linolenic and stearidonic acids in Mongolian Boraginaceae Tsevegsuren, N.; Aitzetmuller, K. Journal of the American Oil Chemists Society (1996) 73 1681-1684 0.5 GLC-Area-%
Abutilon ellisii CYCLOPROPENOIC FATTY-ACIDS OF MALVACEAE SEED OILS BY GAS-LIQUID-CHROMATOGRAPHY Gaydou, E. M.; Ramanoelina, A. R. P. Fette Seifen Anstrichmittel (1984) 86 82-84 0.5 GLC-Area-%
Dysoxylum reticulatum Fatty acid composition of seed oils of the meliaceae, including one genus rich in cis-vaccenic acid Kleiman, R.; Payne-Wahl, K. L. Journal of the American Oil Chemists' Society (1984) 61 1836-1838 0.5 GLC-Area-%
Quercus cerris cerris Characterization of Turkish Quercus L. taxa based on fatty acid compositions of the acorns Özcan, T. JAOCS, Journal of the American Oil Chemists' Society (2007) 84 653-662 0.5 GLC-Area-%
Plantago major Identification and Distribution of Oxygenated Fatty Acids in Plantago Seed Lipids Smith, Mark A.; Zhang, Haixia; Purves, Randy W. Journal of the American Oil Chemists' Society (2014) 91 1313-1322 0.5 weight-%
Quercus vulcanica Characterization of Turkish Quercus L. taxa based on fatty acid compositions of the acorns Özcan, T. JAOCS, Journal of the American Oil Chemists' Society (2007) 84 653-662 0.5 GLC-Area-%
Quercus petraea Characterization of Turkish Quercus L. taxa based on fatty acid compositions of the acorns Özcan, T. JAOCS, Journal of the American Oil Chemists' Society (2007) 84 653-662 0.5 GLC-Area-%
Myosotis scorpioides Book: Manual of Gas-liquid Chromatography of Organic Acids (in Russian) Gorjaev, M. I. Evdakova, N. A. Book: Spravočnik po gazožidkostnoj chromatografii organičeskich kislot (1977) Nauka Alma-Ata None 0.5 GLC-Area-%
Pinus halepensis Fatty acids of the seeds from pine species of the Ponderosa-Banksiana and Halepensis sections. The peculiar taxonomic position of Pinus pinaster Wolff, Robert L.; Comps, Bernard; Deluc, Laurent G.; Marpeau, Anne M. Journal of the American Oil Chemists' Society (1998,1) 75 45-50 0.5 GLC-Area-%
Fagus sp. Unpublished unpublished results MRI (1998) 0.5 GLC-Area-%
Carthamus tinctorius Unpublished unpublished results MRI Bundesforschungsanstalt Muenster (1982) 0.5 GLC-Area-%
Vicia cracca Compositions of seed fatty acids in some ViciaL. taxa from Turkey Emre, İrfan; Şahin, Ahmet; Yilmaz, Ökkeş; Genç, Hasan; Bahşi, Muammer Acta Botanica Gallica (2011) 158 493-498 0.5 weight-%
Sesamum indicum Analysis of edible fats Pardun, H. Book: Analyse der Nahrungsfette. (1976) 16 376pp.-376pp. 0.5 GLC-Area-%
Acacia planifrons Chemical composition of acacia seeds Banerji, R.; Chowdhury, A. R.; Misra, G.; Nigam, S. K. Journal of the American Oil Chemists' Society (1988) 65 1959-1960 0.5 GLC-Area-%
Senebiera coronopus Search for new industrial oils. XIII. Oils from 102 species of cruciferae Miller, R. W.; Earle, F. R.; Wolff, I. A.; Jones, Q. Journal of the American Oil Chemists' Society (1965) 42 817-821 0.5 GLC-Area-%
Hippophae neurocarpa Unpublished unpublished results MRI Fett extr. Xin (1998) 0.5 GLC-Area-%
Kitaibela vitifolia Cyclopropene fatty acids of selected seed oils from bombacaceae, malvaceae, and sterculiaceae Bohannon, M. B.; Kleiman, R. Lipids (1978) 13 270-273 0.5 GLC-Area-%
Linum usitatissimum Fatty acid profiles of 80 vegetable oils with regard to their nutritional potential Dubois, V.; Breton, S.; Linder, M.; Fanni, J.; Parmentier, M. European Journal of Lipid Science and Technology (2007) 109 710-732 0.5 GLC-Area-%
Carthamus tinctorius Unpublished unpublished results MRI Bundesforschungsanstalt Muenster (1998) 0.5 GLC-Area-%
Pinus brutia General characteristics of Pinus spp. seed fatty acid compositions, and importance of Delta 5-olefinic acids in the taxonomy and phylogeny of the genus Wolff, R. L.; Pedrono, F.; Pasquier, E.; Marpeau, A. M. Lipids (2000) 35 1-22 0.5 GLC-Area-%
Pinus halepensis General characteristics of Pinus spp. seed fatty acid compositions, and importance of Delta 5-olefinic acids in the taxonomy and phylogeny of the genus Wolff, R. L.; Pedrono, F.; Pasquier, E.; Marpeau, A. M. Lipids (2000) 35 1-22 0.5 GLC-Area-%
Calodendrum capense Unpublished unpublished results MRI Bundesforschungsanstalt Muenster (1996) 0.5 GLC-Area-%
Brassica nigra Fette und Lipoide (Lipids). pp 1-180. Berlin, Heidelberg: Springer Berlin Heidelberg Wissebach H. Book (1969) None None 0.5 GLC-Area-%
Irvingia gabonensis THE CHARACTERISTICS INDEXES AND THE MAJOR FATTY-ACID COMPONENTS OF OILS FROM THE LESS COMMON OILSEEDS 1. PENTACLETHRA-MACROPHYLLA AND IRVINGIA-GABONENSIS Onwuka, N. D.; Peczak, R.; Babuchowski, A. Rivista Italiana delle Sostanze Grasse (1984) 61 569-572 0.5 GLC-Area-%
Astelia nervosa SEED FATS OF ASTELIA AND COLLOSPERMUM FAMILY LILIACEAE Morice, I. M. Journal of the Science of Food and Agriculture (1967) 18 343-& 0.5 GLC-Area-%
Knautia orientalis Unpublished unpublished results MRI (1997) 0.5 GLC-Area-%
Argania spinosa Positional analysis and determination of triacylglycerol structure of Argania spinosa seed oil Maurin, R.; Fellat-Zarrouck, K.; Ksir, M. Journal of the American Oil Chemists' Society (1992) 69 141-145 0.5 GLC-Area-%
Cucurbita moschata Duchesne ex Poir. GC_MS法分析南瓜籽油脂肪酸组成_吴国欣 . Analysis of Fatty Acid Composition of Pumpkin Seed Oil by GC-MS Method Guoxin Wu; Yongxing Li; Miyun Chen; Yanfei Hong CHINESE TRADITIONAL AND HERBAL DRUGS (2003) 34(12) 1079-1080 0.5 weight-%