Marine Phytoplankter Fatty Acids

1968 ◽  
Vol 25 (8) ◽  
pp. 1603-1620 ◽  
Author(s):  
R. G. Ackman ◽  
C. S. Tocher ◽  
J. McLachlan

Twelve species of marine unicellular algae have been cultured under comparable conditions and the total fatty acids determined by gas–liquid chromatography. Some specific fatty acid relationships paralleling taxonomic groupings were detected but generally individual fatty acids within various algal classes showed large relative variations. The four Bacillariophyceae examined were notable for fatty acid compositions giving iodine values <150, whereas in eight other classes the iodine values were all approximately 200. It is suggested that 5,8,11,14,17-eicosapentaenoic acid, found to be a common algal longer-chain polyunsaturated fatty acid, is characteristically deposited in the lipids of filter-feeders ingesting unicellular algae.

1968 ◽  
Vol 25 (11) ◽  
pp. 2419-2426 ◽  
Author(s):  
P. M. Jangaard ◽  
P. J. Ke

The fatty acid compositions of six samples of depot fat taken from harp seals (Pagophilus groenlandica), ranging in age from 1 to 2 days to adult, and a sample of milk lipids, were determined by gas–liquid chromatography (GLC). Three depot fat samples taken from hooded seals (Cystophora cristata), a sample of milk lipids from this species, and commercial seal oils from 4 years' production were similarly analyzed.No significant differences could be found between the composition of the milk lipids and the depot fat of the harp seals at the different ages, other than slightly lower iodine values in the younger animals (avg 140.6 vs. 148.9). The lipid samples from hooded seals had low iodine values (107–127) and correspondingly lower concentration of highly unsaturated fatty acids. The ratio of the fatty acids 22:5ω3/22:6ω3 could be used to differentiate between depot fat from harp seals (ratio 0.51–0.74) and that from hooded seals (ratio 0.25–0.42) in the samples analyzed.Commercial oils, which consist essentially of oil from harp seals, were similar in composition to oil prepared from this species alone.No difference could be found in the iodine values or fatty acid compositions of samples taken from various parts of the animal or from samples representing a cross section of blubber.


2009 ◽  
Vol 4 (10) ◽  
pp. 1934578X0900401 ◽  
Author(s):  
Christel Brunschwig ◽  
François Xavier Collard ◽  
Jean-Pierre Bianchini ◽  
Phila Raharivelomanana

In order to establish a chemical fingerprint of vanilla diversity, thirty samples of V. planifolia J. W. Moore and V. tahitensis G. Jackson cured beans from seven producing countries were examined for their aroma and fatty acid contents. Both fatty acid and aroma compositions were found to vary between vanilla species and origins. Vanillin was found in higher amounts in V. planifolia (1.7-3.6% of dry matter) than in V. tahitensis (1.0-2.0%), and anisyl compounds were found in lower amounts in V. planifolia (0.05%) than in V. tahitensis (1.4%-2.1%). Ten common and long chain monounsaturated fatty acids (LCFA) were identified and were found to be characteristic of the vanilla origin. LCFA derived from secondary metabolites have discriminating compositions as they reach 5.9% and 15.8% of total fatty acids, respectively in V. tahitensis and V. planifolia. This study highlights the role of the curing method as vanilla cured beans of two different species cultivated in the same country were found to have quite similar fatty acid compositions.


2006 ◽  
Vol 76 (1) ◽  
pp. 18-21 ◽  
Author(s):  
Duo Li ◽  
Ting Yao ◽  
Sirithon Siriamornpun

The total lipid content of eight species of nuts available in Hangzhou ranged from 49.5 g/100 g weight in Cannabis sativa to 75.4 g/100 g in walnut. The predominant content of lipid is triacylglycerol, ranging from 91.1% in Cannabis sativa to 98.4% in macadamia. There were two polyunsaturated fatty acids (PUFA) in all nuts analyzed; 18:2n-6 and 18:3n-3. The content of 18:3n-3 ranging from 0.2% in almond to 15.2% in Cannabis sativa, 18:2n-6 ranged from 2.5% in macadamia to 61.6% in pine nut. The proportion of total PUFA in analyzed eight nut species ranging from 2.8% in macadamia to 71.7% in walnut (p < 0.001). Monounsaturated fatty acid composition ranged from 18.0% in Cannabis sativa to 82.6% in macadamia (p < 0.001). The proportion of saturated fatty acid ranged from 7.4% in filbert to 14.7% of total fatty acids in macadamia (p < 0.001). No C20 fatty acids were detected in any of the samples in the present study. The lipids content and fatty acid compositions in analyzed samples were varied between nut species. Cannabis sativa and walnut contained relatively high 18:3n-3, consumption of several these nuts each day can contribute to n-3 PUFA intake, especially for the vegetarian population.


1966 ◽  
Vol 44 (2) ◽  
pp. 179-185 ◽  
Author(s):  
B. L. Walker ◽  
V. F. Lishchenko

Lipids, extracted from the adrenals, brain, erythrocytes, heart, kidney, liver, plasma, and spleen of normal healthy female mink, were transesterified with 1% sulphuric acid in methanol, and the resulting methyl esters were analyzed by gas–liquid chromatography after purification by thin-layer chromatography. All of the tissues examined contained higher concentrations of unsaturated than of saturated acids, the highest levels of unsaturated acids occurring in the lipids of heart, adrenals, and plasma, and of the essential fatty acids (ω6 series, with six carbon atoms after last double bond) in plasma, erythrocyte, and kidney lipids. The fatty acid compositions of mink tissues resemble those reported in the literature for the rat; detailed comparisons are not possible because of the known influence of dietary factors on tissue fatty acids.


1970 ◽  
Vol 27 (10) ◽  
pp. 1669-1683 ◽  
Author(s):  
R. G. Ackman ◽  
C. A. Eaton

Annual surveys of commercial herring oils produced in summer and fall off southwestern Nova Scotia and in winter and spring off southwestern Newfoundland showed iodine values (IV) mostly within the range 135 to 105 in both locations for the years 1965–70. Two systematic trends in IV with season were detected. The first extended uniformly over the whole of each fishery season and was limited to no more than ± 5 IV units. It is believed to represent the influence of long-term average environmental conditions that may vary from year to year and that establish the basic fatty acid compositions of the fish entering the fishery. The second was observed as a seasonal decline, over 2–3 months, of 20 IV units in the Nova Scotia fishery, and of 10 IV units in the Newfoundland fishery. It is proposed that this short-term effect follows from an increase in the relative proportion of the low-density, long-chain, monoethylenic fatty acids characteristic of clupeid oils that could decrease residual fat density at a time of general fat depletion and corresponding density increase for the fish as a whole.Free fatty acids (FFA) in freshly produced oils were also examined. In both fisheries % FFA seldom exceeded 1 and under optimum conditions the % FFA were consistently about 0.2–0.3. Annual seasonal % FFA effects were apparently restricted to an increase in April in the Newfoundland fishery associated with high IV oils of a pink colour denoting heavy spring feeding.


1972 ◽  
Vol 29 (1) ◽  
pp. 113-115 ◽  
Author(s):  
R. E. Worthington ◽  
T. S. Boggess Jr. ◽  
E. K. Heaton

Representative samples of channel catfish (Ictalurus punctatus Rafinesque) were obtained from five processing plants and analyzed by gas–liquid chromatography for fatty acid composition of muscle tissues. Twenty-three fatty acids were measured. The saturated fatty acids comprised 26.5%, monoenes 48.1%, dienes 13.0%, trienes 3.1%, tetraenes 3.6%, pentaenes 1.3%, and hexaenes 1.9% of total fatty acids. Fatty acid composition varied significantly (P <.01) among fish obtained from the same plant, and in addition, significant variation associated with processing plant was observed for some fatty acids.


1963 ◽  
Vol 41 (1) ◽  
pp. 43-49 ◽  
Author(s):  
B. M. Craig ◽  
C. G. Youngs ◽  
Joyce L. Beare ◽  
J. A. Campbell

The fatty acid compositions of liver, skin, abdominal fat, and residual degutted carcass from each of five rats fed diets containing corn or rapeseed oil for 21 weeks were determined by gas-liquid chromatography. Statistical analysis of the results showed no significant variations among rats or among cutaneous, abdominal, and carcass fats. In these fat depots, the proportions of fatty acids resembled those of the diet except for palmitic, palmitoleic, oleic, and erucic acids. Glyceride compositions of the body fats were in agreement with those predicted by Vander Wal's distribution theory.


1963 ◽  
Vol 30 (3) ◽  
pp. 339-343 ◽  
Author(s):  
J. M. deMan ◽  
J. P. Bowland

SummaryAs determined by gas-liquid chromatography, the mean fatty acid composition (weight percentages of total fatty acids) of milk fat from sows fed a diet to meet U.S. N.R.C. nutrient requirements was: oleic, 35·3; palmitic, 30·3; linoleic, 13·0; palmitoleic, 9·9; stearic, 4·0; myristic, 3·3; linolenic, 2·5; unidentified 0·7 and 0·5, presumably n-odd chain and branched fatty acids; lauric, 0·3; and capric, 0·2. The corresponding fatty acid composition of colostrum fat was: oleic, 41·7; palmitic, 22·5; linoleic, 20·9; palmitoleic, 5·0; stearic, 5·7; myristic, 1·4; linolenic, 2·4; and unidentified acids, 0·3 and 0·1. Dietary fat increased fat levels in the milk and influenced fatty acid composition of the milk fat. Backfat resembled colostrum fat more than milk fat.


1967 ◽  
Vol 24 (12) ◽  
pp. 2563-2572 ◽  
Author(s):  
R. G. Ackman ◽  
C. A. Eaton ◽  
P. J. Ke

Marine oils with iodine values in the range 83–108 from Newfoundland turbot or Greenland halibut (Reinhardtius hippoglossoides), sablefish (Anoplopoma fimbria), and certain Atlantic herring (Clupea harengus), were examined for fatty acid composition by gas–liquid chromatography. The herring oils differed from the other oils in having high levels of C20and especially C22fatty acids (chiefly monounsaturated). The sablefish oil had a high level of C18fatty acids, the turbot oil a composition intermediate between the herring and sablefish oils. All of these oils contained moderate amounts of polyunsaturated fatty acids (7.3–14.4%). The low iodine values were primarily due to monounsaturated fatty acids and not to saturated fatty acids (17.1–21.0%)


1995 ◽  
Vol 73 (3) ◽  
pp. 405-422 ◽  
Author(s):  
Magritha M. H. P. Foreman-Van Drongelen ◽  
Adriana C. V. Houwelingen ◽  
Arnold D. M. Kester ◽  
André E. P. De Jong ◽  
Carlos E. Blanco ◽  
...  

The long-chain polyene (LCP) status of thirty-nine premature infants (birth weight < 1800 g) was evaluated. Twenty-seven infants were fed on an artificial formula, twelve received their own mother's breast milk. Fatty acid compositions of both plasma and erythrocyte (RBC) phospholipids (PL) were determined in umbilical venous blood and in weekly postnatal blood samples until the 28th day of life. Individual fatty acid levels were expressed as absolute quantities (mg fatty acid/I plasma or RBC suspension) and as relative (mg/100 mg total fatty acids) values. The changes with time in the absolute values for 22:6n-3 and 20:4n-6 in plasma were strikingly different from those of the relative values for these fatty acids. In plasma PL the inter-group differences in the absolute postnatal values for 22:6n-3 (P < 0·0005) and 20:4n-6 (P < 0·05) and the relative values for 22:6n-3 (P < 0·02) were significant, with lower fatty acid values in the formula-fed infants. In RBC PL, no significant inter-group differences in the postnatal 22: 6n-3 and 20: 4n-6 values were found. Based on the assumption that it is desirable for formula-fed infants to achieve postnatal plasma LCP values at least comparable with those found in infants fed on human milk, the findings of the present study indicate that both n-3 and n-6 LCP should be added to preterm infant formulas. Moreover, the additional importance of absolute fatty acid levels was demonstrated, although analytical procedures need to be standardized to enable effective comparison of results from different research groups.


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