Search results for "Thistle"

showing 9 items of 9 documents

Tunisian Milk Thistle: An Investigation of the Chemical Composition and the Characterization of Its Cold-Pressed Seed Oils

2017

In this study, milk thistle seeds growing in different areas in Tunisia were cold pressed and the extracted oils were examined for their chemical and antioxidant properties. The major fatty acids were linoleic acid (C18:2) (57.0%, 60.0%, and 60.3% for the milk thistle seed oils native to Bizerte, Zaghouan and Sousse, respectively) and oleic acid (C18:1) (15.5%, 21.5%, and 22.4% for the milk thistle seed oils originating from Bizerte, Zaghouan and Sousse, respectively). High performance liquid chromatography (HPLC) analysis showed the richness of the milk thistle seed oils (MTSO) in α-tocopherol. The highest content was recorded for that of the region of Zaghouan (286.22 mg/kg). The total ph…

0301 basic medicineTunisiaAntioxidantmedicine.medical_treatmentLinoleic acidalpha-Tocopherolfatty acidsHigh-performance liquid chromatographyAntioxidantsArticleCatalysislcsh:ChemistryInorganic Chemistry03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyHydroxybenzoatesmedicineVanillic acidMilk ThistlePlant OilsFood scienceGallic acidPhysical and Theoretical Chemistrylcsh:QH301-705.5milk thistle seed oil; fatty acids; phenolic acids; tocopherols; differential scanning calorimetryMolecular BiologyChemical compositionSpectroscopy030109 nutrition & dieteticsCalorimetry Differential ScanningMilk Thistlemilk thistle seed oilOrganic Chemistryfood and beverages04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceComputer Science ApplicationsOleic acidlcsh:Biology (General)lcsh:QD1-999chemistrySeedsdifferential scanning calorimetryphenolic acidstocopherolsChromatography LiquidInternational Journal of Molecular Sciences
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HPTLC fingerprinting—rapid method for the differentiation of honeys of different botanical origin based on the composition of the lipophilic fractions

2018

Bee honey possess various nutritional and medicinal functions, which are the result of its diverse chemical composition. The numerous bioactive compounds in honey come from flower nectar

animal structuresPharmaceutical ScienceDandelionfood quality01 natural sciencesArticlehoney fingerprintAnalytical Chemistrylcsh:QD241-441HPTLC0404 agricultural biotechnologylcsh:Organic chemistryDrug DiscoveryNectarSolid phase extractionPhysical and Theoretical ChemistryChemical compositionChromatography High Pressure LiquidChromatographyultrasound assisted extractionMilk ThistleChemistry010401 analytical chemistryOrganic ChemistryExtraction (chemistry)digestive oral and skin physiologyfungisolid phase extractionfood and beverages04 agricultural and veterinary sciencesHoney040401 food scienceThin-layer chromatography0104 chemical sciencesBlowing a raspberryhoney authenticationChemistry (miscellaneous)behavior and behavior mechanismsMolecular MedicineFood AnalysisMolecules
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Performance of Host-Races of the Fruit Fly,Tephritis conuraon a Derived Host Plant, the Cabbage ThistleCirsium oleraceum: Implications for the Origin…

2008

The thistle-infesting fruit fly Tephritis conura Loew (Diptera: Tephritidae) forms host races on the melancholy thistle, Cirsium hetewphyllum (L.) Hill (Asterales: Asteraceae) and the cabbage thistle, Cirsium olemceum (L.). Scop. Previous research indicates that the host shift occurred from C. hetewphyllum to C. oleraceum. In this paper we address whether the host shift involved physiological adaptations by studying oviposition acceptance and survival of the two host races on the derived host C. oleraceum. Performance differed significantly between host races. T. conura originating from C. oleraceum produced adults in 75% of all egg-laying trials in contrast to only 6.6% in T. conura origin…

food.ingredientOvipositionPopulationCirsiumArticleHost-Parasite InteractionsTephritis conurafoodCirsiumTephritidaeBotanyCirsium heterophyllumAnimalseducationalternative hostFlavonoidseducation.field_of_studybiologyHost (biology)fungiPupaCirsium oleraceumGeneral Medicinebiology.organism_classificationAdaptation PhysiologicalfitnessspeciationLarvaInsect ScienceThistleFemaleCirsium heterophyllumperformanceJournal of Insect Science
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Milk Thistle (Silybum Marianum L.) as a Novel Multipurpose Crop for Agriculture in Marginal Environments: A Review

2022

Milk thistle (Silybum marianum (L.) Gaertn.) is a versatile crop that has adapted to the broadly different soil and environmental conditions throughout all continents. To date, the fruits (“seeds”) of the plant are the only reliable source of silymarin, which, given its recognized therapeutic effects and its many present and potential uses, has led to a significant re-discovery and enhancement of the crop in recent years. Overall, although many studies have been carried out globally on the bioactivity, phytochemistry, and genetics of milk thistle, few and discontinuous research activity has been conducted on its basic agronomy as well as on the farm opportunities offered by the cultivation …

silymarinmilk thistlealternative croplow-input managementbioactive compoundAgronomy and Crop ScienceAgronomy
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Supercritical CO2 extraction of oil, fatty acids and flavonolignans from milk thistle seeds: Evaluation of their antioxidant and cytotoxic activities…

2015

International audience; The optimal conditions of supercritical carbon dioxide (SC-CO2) (160-220 bars, 40-80 degrees C) technology combined with co-solvent (ethanol), to recover oil, flavonolignans (silychristin, silydianin and silybinin) and fatty acids from milk thistle seeds, to be used as food additives and/or nutraceuticals, were studied. Moreover, the antioxidant and cytotoxic activities of the SC-CO2 oil seeds extracts were evaluated in Caco-2 carcinoma cells. Pressure and temperature had a significant effect on oil and flavonolignans recovery, although there was not observed a clear trend. SC-CO2 with co-solvent extraction at 220 bars, 40 degrees C was the optimum treatment to recov…

2. Zero hungerABTSfood.ingredientAntioxidantMilk ThistleDPPHFood additivemedicine.medical_treatmentExtraction (chemistry)General MedicineBiologyToxicologyFlavonolignanschemistry.chemical_compoundNutraceuticalfoodchemistryBiochemistrymedicine[CHIM]Chemical SciencesFood scienceFood ScienceFood and Chemical Toxicology
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Monofloral honeys by Sicilian black honeybee (Apis mellifera ssp. sicula) have high reducing power and antioxidant capacity

2016

Thirty samples from thirteen Sicilian monofloral honeys by the local black honeybee, and two honeydew honeys, were studied to assess phenol content, reducing power and antioxidant capacity as well as correlations among these parameters. Honeys from Apiaceae showed the highest phenol amount and capacity to reduce ferric ion and stable chemical radicals, whereas honeys from Leguminosae the lowest. All honeys were active against myoglobin-derived radicals usually formed in red meat after storage and/or heating and significant correlation (p = 0.023) was found between flavonoid content and deactivation rate of this radical. Dill > almond?> tangerine > thistle?> sulla honeys inhibite…

Honeydewfood.ingredientanimal structuresFlavonoid01 natural sciencesFood sciencechemistry.chemical_compound0404 agricultural biotechnologyfoodLipid oxidationSettore BIO/10 - BiochimicaPhenollcsh:Social sciences (General)lcsh:Science (General)chemistry.chemical_classificationMultidisciplinaryApiaceaebiology010401 analytical chemistryfungidigestive oral and skin physiologyfood and beverages04 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceEucalyptus0104 chemical sciencesAntioxidant capacityHorticulturechemistryThistlebehavior and behavior mechanismslcsh:H1-99lcsh:Q1-390
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Carlina acaulis and Trachyspermum ammi essential oils formulated in protein baits are highly toxic and reduce aggressiveness in the medfly, Ceratitis…

2021

Abstract Essential oil (EO)-based botanical insecticides are considered a promising option for Integrated Pest Management (IPM). However, the sublethal effects of EO-based insecticides are understudied. No information is available on the potential effects of EO exposure on insect aggressive traits. In this study, the toxicity of two EOs with documented efficacy on insect vectors and agricultural pests, and which were obtained from the roots of silver thistle (Carlina acaulis L., Asteraceae) and seeds (i.e. schizocarps) of ajwain (Trachyspermum ammi (L.) Sprague, Apiaceae), was evaluated against adults of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann) (medfly), a cosmopolitan fr…

Integrated pest managementfood.ingredientSettore MED/42 - Igiene Generale E ApplicataTrachyspermum ammilaw.inventionCarlina acaulisFruit fliefoodlawFood baitSettore BIO/15 - Biologia FarmaceuticaEssential oilbiologyfungiAmmiCeratitis capitataCeratitis capitatabiology.organism_classificationSublethal toxicitySettore CHIM/08 - Chimica FarmaceuticaLure and killHorticultureSettore AGR/11 - Entomologia Generale E ApplicataGreen insecticideThistlePEST analysisAgronomy and Crop ScienceIndustrial Crops and Products
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IPSIM-Cirsium, a Qualitative Expert-Based Model to Predict Infestations of Cirsium arvense

2021

Throughout Europe, Cirsium arvense is the most problematic perennial weed in arable crops, whether managed under organic or conventional agriculture. Non-chemical control methods are limited with partial efficacy. Knowledge is missing on their effect across a wide gradient of cropping systems and pedoclimates. To achieve effective Cirsium arvense management ensuring crop productivity while limiting the reliance of cropping systems on herbicide, expert-based models are needed to gather knowledge on the effect of individual levers and their interactions in order to (i) design and assess finely tuned combinations of farming practices in different pedoclimates and (ii) support decisions for Cir…

0106 biological sciencescropping practicesAgricultural engineeringlcsh:Plant culture01 natural sciencessoillcsh:AgricultureCirsiumlcsh:SB1-1110Cirsium arvenseclimateAgroecologyIPSIM-CirsiumMathematics2. Zero hungerbiologyCirsium arvensebusiness.industrylcsh:SGeneral MedicineCanada thistle04 agricultural and veterinary sciences15. Life on landWeed controlbiology.organism_classificationinjury profile SIMulatorintegrated weed managementAgriculture[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesqualitative modelingArable landbusinessWeedCroppingqualitative modelling010606 plant biology & botanyFrontiers in Agronomy
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Profile of Fatty Acids, Tocopherols, Phytosterols and Polyphenols in Mediterranean Oils (Argan Oils, Olive Oils, Milk Thistle Seed Oils and Nigella S…

2019

Background: The effects of vegetable oils on human health depend on their components. Therefore, their profiles of lipid nutrients and polyphenols were determined. Objective: To establish and compare the fatty acid, tocopherol, phytosterol and polyphenol profiles of Mediterranean oils: cosmetic and dietary argan oils (AO; Morocco: Agadir, Berkane); olive oils (OO; Morocco, Spain, Tunisia); milk thistle seed oils (MTSO; Tunisia: Bizerte, Sousse, Zaghouane); nigella seed oil (NSO). Methods: The biochemical profiles were determined by gas chromatography-flame ionization, high performance liquid chromatography and gas chromatography, coupled with mass spectrometry as required. The antioxidant …

0301 basic medicineAntioxidantmedicine.medical_treatmentLinoleic acidmediterranean oilsTocopherolsAntioxidantsCell LineMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineDrug DiscoverymedicineAnimalsHumansMilk ThistlePlant OilsFood sciencecytoprotective activitiesOlive OilNigella2. Zero hungerPharmacologybiologyPhytosterolFatty AcidsPhytosterolsPolyphenolsfood and beverages[SDV.SP]Life Sciences [q-bio]/Pharmaceutical sciencesbiology.organism_classificationNigellaantioxidant propertiesOleic acid030104 developmental biologySpinasterolchemistryPolyphenol030220 oncology & carcinogenesisSeedsHydroxytyrosol[SDV.AEN]Life Sciences [q-bio]/Food and NutritionCurrent Pharmaceutical Design
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