Palm oil and palm kernel oil.
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Comparative gaschromatographic assays of different domestic oils used in West Germany and the domestic oil (palm oil) used in Nigeria and other West African countries were performed. It was discovered that the palm oil contains extremely high amounts of palmitic acid and linoleic acid compared to the other oils used in Germany. In view of the fact that previous studies have shown that palmitic acid is required for the biosynthesis of lung lecithin, which is closely related to fetal maturation, we performed animal experiments with rabbits to determine the incorporation rate of 3H-marked palmitic acid into various fetal organs: (fetal lung, placenta, fetal liver, fetal intestine etc.) after a previous intravenous injection of the 3H-marked palmitic acid to the mother rabbit. The radiochromatogram showed high incorporation rates of palmitate into the lecithin by fetal lung and placenta. These results seem to document that the high content of palm oil in Nigerian meals can partly be related to the low incidence of respiratory distress syndrom in Nigerian premature infants.
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Oil palm (Elaeis guineensis Jacq.) is the most productive oil-bearing crop globally, yet the molecular basis of mesocarp development and lipid accumulation remains poorly understood. Ultra-deep data-independent acquisition mass spectrometry (DIA-MS) was applied to characterize proteome dynamics in two contrasting genotypes, seedless (KS) and thin-shelled (TS), across five developmental stages (P1-P5) spanning fruit development to mature oil accumulation. Phenotypic analysis revealed higher mesocarp proportion and oil content in KS during late maturation. A total of 137,615 peptides corresponding to 12,163 protein groups were identified, providing a temporal proteomic landscape of mesocarp development. Multivariate analysis indicated that developmental progression was the primary contributor to proteomic variation, whereas genotype-associated differences increased during lipid accumulation. Differentially abundant proteins were mainly associated with carbohydrate metabolism, photosynthesis, proteolysis, antioxidant responses, and lipid biosynthesis. Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), and KOG analyses suggested extensive remodeling of metabolic networks, including developmental changes in photosynthesis-associated proteins and increased representation of lipid-associated pathways during maturation. Weighted protein co-expression network analysis identified 17 modules associated with developmental progression and lipid accumulation, highlighting candidate proteins involved in carbon metabolism, energy production, and cellular protection. Genes encoding selected hub protein candidates were further examined by RT-qPCR. Biochemical analyses supported these proteomic patterns, showing increased acetyl-CoA availability, enhanced antioxidant enzyme activities (SOD, CAT, APX, and GR), improved GSH/GSSG balance, and reduced oxidative damage in KS. Together, these findings provide a temporal proteomic and biochemical framework for understanding genotype-associated differences in oil accumulation and identify candidate metabolic networks for functional studies.
BACKGROUND: Oil palm (Elaeis guineensis Jacq.), the world's most land-efficient oil crop, underpins global vegetable oil supply yet faces mounting constraints from limited expansion, climate stress, and disease pressure. These challenges highlight the urgent need for genomic resources that capture species-wide diversity to support sustainable improvement. While recent reference assemblies have advanced trait discovery, single linear genomes fail to represent the full spectrum of structural and gene-content variation, limiting resolution of agronomic alleles. RESULTS: Here, we constructed a graph-based pan-genome from 30 diverse oil palm assemblies representing wild, semi-domesticated, and commercial accessions. We characterized structural variants, gene presence-absence variation, and copy-number gains, with focusing on functional stratification and resistance gene dynamics. The graph-based pan-genome revealed extensive structural and gene-content variation, including a large conserved core, complemented by shell and unique fractions enriched or biased toward regulatory, stress-responsive, and defense-related functions. Structural variation and duplication-derived copy-number gains contributed substantially to gene-content diversity, with semi-domesticated accessions exhibiting the greatest variability. Resistance gene repertoires showed contrasting patterns: receptor-like kinases remained comparatively stable, whereas the CNL subclass of NLR genes contributed disproportionately to shell-genome variation and duplication-associated turnover. CONCLUSIONS: This graph-based pan-genome provides a curated multi-assembly reference and comparative framework for oil palm genomics. By capturing structural variants, gene-content variations, copy-number gains, and resistance gene dynamics across domestication gradients, it establishes a foundation for future pan-GWAS analysis, functional genomics, and molecular breeding strategies aimed at improving resilience and productivity in this globally important crop.
Three cases are reported in which pseudotumours developed in the hand following injury by oil palm thorns. In one patient there was a periosteal reaction of the proximal phalanx adjoining the site of injury. The lesions were excised, and the embedded oil palm thorn was identified in all three. The clinical and pathological features of the lesions and problems in their diagnosis are described. In every case the local tissue reaction was out of proportion to the size of the foreign body, raising the possibility that a toxic substance might have been released by the thorn.
An epidemiological study in a mature oil palm estate in Peninsular Malaysia has demonstrated a low prevalence of R. tsutsugamushi infection in small mammals. The direct fluorescent antibody technique for assaying infections in chiggers proved more sensitive than mouse inoculation. Most infections in both chiggers and rodents were caused by the Karp strain.
A survey of workers and families resident in an oil palm estate in Malaysia revealed high incidence of parasitic infections. The commonest parasites are T. trichiura (56%), A. lumbricoides (52%), hookworm (28%), Entamoeba coli (11.3%) and Giardia lamblia (11.3%). Mixed infections by two or more parasites was seen in 46% of the subjects. Anaemia was present in 70% of children with hookworm infection. Eosinophilia was observed in 69% of subjects. One each of Hymenolepis nana and Hymenolepis diminuta infection was detected. This is the first report of Hymenolepis diminuta infection in man in Malaysia.
L. (L.) deliense was the predominant vector of scrub typhus in a mature oil palm estate, but a small number of L. (L.) fletcheri (0.1% from rodents) and L. (L.) vivericola (0.02% from rodents and 8.0% from black plates) was also collected. Although good correlation between L. (L.) deliense collected from rodents and from black plates was not established, either method may serve as a general indicator of population fluctuations over a period of time. For the most part, the vectors of scrub typhus were limited to litter piles, and thus, the possibility of contracting scrub typhus within this type of habitat was minimal.
Metisa plana Walker (Lepidoptera: Psychidae) is a major defoliator of oil palm in Malaysia, causing substantial economic losses. Farnesyl acetate (FA), a sesquiterpenoid compound, has been proposed as a potential insecticidal agent against M. plana, yet its molecular impact on larval physiology remains poorly understood. Here, we employed label-free quantitative proteomics, functional enrichment analysis, and targeted transcript assessment to characterize the temporal proteomic response of M. plana larvae at 7 and 14 days after treatment (DAT) with FA. Principal component analysis revealed robust separation between treated and control samples at both time points, indicating sustained treatment-driven proteomic restructuring. Early exposure (7 DAT) elicited a heterogeneous response involving stress-associated proteins, redox enzymes, and cytoskeletal regulators, whereas later exposure (14 DAT) produced a consolidated profile characterized by metabolic reprogramming, downregulation of ribosomal proteins, induction of heat shock proteins, and enrichment of RNA surveillance and mitochondrial pathways. Targeted transcript analysis qualitatively supported proteomic trends for HSP83 and aldehyde dehydrogenase X, although limited amplification precluded quantitative inference. Collectively, these findings demonstrate that FA exposure drives a shift from acute proteomic perturbation toward a maintenance-oriented physiological state, prioritizing proteostasis, energy management, and stress adaptation over growth and development. This integrated molecular perspective provides mechanistic insight into the chronic effects of FA, highlighting its potential to suppress larval performance and informing the development of biorational, physiology-based pest management strategies in non-model insects.
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Male Sprague-Dawley rats were fed during one year with diets containing 12% of one of the following fats: butter, sunflower oil, rapeseed oil, soybean oil, hydrogenated soybean oil, palm oil, canbra oil and arachid oil. Total serum cholesterol was lower in the arachid, suflower and butter groups and higher in the palm and hydrogenated soybean groups (p less than 0.01); serum cholesterol esters were lower in the arachid, sunflower and soybean groups, but higher in the palm and hydrogenated soybean groups ( p less than 0.01). Serum triglycerides were lower in the sunflower and arachid groups and higher in the butter and palm groups (p less than 0.01). There was a positive, significant correlation between serum cholesterol and phospholipids in the various groups. In aortas, free cholesterol levels were the same in different groups, but cholesterol ester levels increased in the following order: canbra, butter, arachid, palm, sunflower, rapeseed, hydrogenated soybean and soybean red groups (p less than 0.01). There was a significant correlation between aorta cholesterol esters and the ratio 18:0 + 18:1 of the dietary fat (r = 0.69; p less than 0.001).
Diurnal plasma lipids and lipoproteins were studied in twelve healthy young males on corn oil and palm oil diets, respectively. The major triglyceridy. Lecithin-cholesterol acyl transferase, lipoprotein lipase and hepatic triglyceride lipase were also measured. diurnal changes of triglycerides and cholesterol were confined to lipoproteins of d less than 1.006 kg/l. There was a diurnal rise of lecithin-cholesterol acyl transferase activity with corn oil but not with palm oil. Fasting and postprandial postheparin lipoprotein lipase and hepatic triglyceride lipase were similar but there was a significant correlation of postprandial hepatic lipase with postprandial plasma triglycerides on palm oil. Marked diurnal changes of triglyceride fatty acids were observed not only in 'very low density lipoprotein' but also in high-density lipoprotein amounting to approximately one third of total high density lipoprotein triglyceride fatty acids.
A water-in-oil emulsion with IMF behavior has been studied within DGRST Grant Nr. 75-7-0406. The dispersion of a sirupy aqueous phase of known aw into a more or less hardened fatty continuous phase was looked into through its effects, particularly how the fatty phase would modify the water behaviour of the dispersed aqueous phase. The emulsion was conventionally prepared by a preemulsion of the syrup into the lecithinated fat, an homogeneisation till enough dispersion and a centrifugation to get rid of free fat. Lecithin has to promote sufficient fat incorporation, correct dispersion and a final viscosity allowing pumpability. To get a cold centrifugate of enough consistency implies an efficient dispersion but before all a judicious choice of the continuous fatty phase, making allowance of organoleptic properties and shelf-life stability. The water behaviour has been worked at on two model systems, of initial phase volume phi = 0,36, with an internal phase made of partially inverted sucrose syrup (aw = 0,79) and an external fatty phase of either refined soybean oil or hydrogenated palm oil (m.p. 42 degrees C). These models respectively retained after centrifugation 12,5 p. 100 oil and 19,5 p. 100 fat; sorption-desorption isotherms were determined by the saturated salt solution method both at 37 degrees C and room temperature, exhibiting that the solid fat content of the continuous fatty phase positively reduces the water transfer velocity from-and-into the syrup. Such a W/O emulsified structure with a prevalent internal aqueous behaves like a pasty IMF, inherently protected against outside relative humidity variations; it also leads the system to a better consistency.
The effect on the fasting serum lipid levels of adding daily 291 mg of cholesterol to diets containing 3 mg of cholesterol and equal fat content, but different fatty acid composition, was tested on 12 young men. The saturated diet provided 97 g/day of a staurated oil made up of 2 parts of palm oil and 1 part of coconut oil. The polyunsatured diet provided 97 g/day of safflower oil. The cholesterol was dissolved in 40 g of either oil incorporated into a spread. A similar spread, devoid of cholesterol, was fed during the cholesterol free periods. Duration of dietary periods was 14 days. Addition of cholesterol produced a mean elevation of serum cholesterol of 9 mg/dl (SE +/- 2.1) in the presence of the saturated diet, and of 8 mg/dl (SE +/- 1.6) in the presence of the polyunsaturated diet. Both cholesterol elevations were significant (P less than 0.01) but not significantly different from each other. Substitution of the saturated diet for the polyunsatured diet caused a significant elevation of serum cholesterol which was the same when the substitution was made in the presence or in the absence of added dietary cholesterol.