0000000000262701

AUTHOR

Giovanni Benelli

showing 12 related works from this author

Bioactivity of Carlina acaulis essential oil and its main component to the olive fruit fly, Bactrocera oleae: ingestion toxicity, electrophysiologica…

2021

In recent years, botanical insecticides based on essential oils (EOs), or their main components, have received much attention as promising tools for Integrated Pest Management, due to their environmental safety and low side effects on non-target organisms. In this study, Carlina acaulis EO and its main component, carlina oxide, recently proven to be effective larvicidal and adulticidal agents against some insect pests, were analyzed for their toxicity, electroantennographic (EAG), and behavioral responses to adult olive fruit fly (Bactrocera oleae). The C. acaulis EO was more toxic to the tephritid than the carlina oxide, and both were more toxic to the same insect pest than EOs from other …

lure-and-killScienceOlive fruit flyBiologyAsteraceaeAsteraceae; attract-and-kill; lure-and-kill; carlina oxide; eco-friendly pesticide; green insecticide; protein bait; Tephritidae fliesAsteraceae; Attract-and-kill; Carlina oxide; Eco-friendly pesticide; Green insecticide; Lure-and-kill; Protein bait; Tephritidae flieslaw.inventionCarlina acauliseco-friendly pesticidegreen insecticidelawattract-and-killcarlina oxideBactroceraEssential oilLarvaProtein baitQAsteraceaebiology.organism_classificationTephritidae fliesHorticultureInsect ScienceToxicityAsteraceae Tephritidae flies attract-and-kill carlina oxide eco-friendly pesticide green insecticide lure-and-kill protein baitCarlina
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Chemical Composition and Broad-Spectrum Insecticidal Activity of the Flower Essential Oil from an Ancient Sicilian Food Plant, Ridolfia segetum

2021

Several species of the family Apiaceae are aromatic herbs that produce essential oils usable on an industrial scale for pharmaceutical, cosmetic, and food purposes. In particular, some essential oils, such as green insecticides for example, may replace synthetic insecticides, keeping most of their efficacy and avoiding environmental pollution or human poisoning. In the present study, we explored the insecticidal potential of Ridolfia segetum (L.) Moris essential oil (EO) against three different pests: Culex quinquefasciatus Say, Musca domestica L., and Spodoptera littoralis (Boisduval). For this purpose, the EO was obtained by hydrodistillation of flowers and its composition was achieved by…

0106 biological sciencesCulex quiquefasciatusEnvironmental pollutionPlant Sciencemoth pest01 natural sciencesCulex quiquefasciatu<i>Musca domestica</i>law.inventionmosquito controllawRidolfia segetumlcsh:Agriculture (General)Spodoptera littoralisEssential oilcommon houseflybiologygreen pesticideSpodoptera littoralisbiology.organism_classification<i>Spodoptera littoralis</i>lcsh:S1-972Culex quinquefasciatus010602 entomologyHorticulture<i>Culex quiquefasciatus</i>InstarComposition (visual arts)Musca domesticaGas chromatographygreen pesticidesAgronomy and Crop ScienceCommon housefly; Culex quiquefasciatus; Green pesticides; Mosquito control; Moth pest; Musca domestica; Spodoptera littoralis010606 plant biology & botanyFood ScienceAgriculture
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Zoonotic Dirofilaria immitis and Dirofilaria repens infection in humans and an integrative approach to the diagnosis

2021

Abstract Dirofilariosis by Dirofilaria immitis and Dirofilaria repens is endemic in dogs from countries of the Mediterranean basin. Both species may infect humans, with most of the infected patients remaining asymptomatic. Based on the recent description of the southernmost hyperendemic European focus of heartworm disease in dogs from the Pelagie archipelagos, we performed a serological and molecular survey in human population of that area. Human blood samples were collected in the islands of Linosa (n=101) and Lampedusa (n=296) and tested by ELISA and molecular test for the detection of D. immitis and D. repens. Samples were also screened for filarioid-associated endosymbionts, Wolbachia s…

dogsDirofilaria immitisVeterinary (miscellaneous)PopulationDirofilaria immitisDirofilariasiCanine heartworm disease; Dirofilariasis; Dogs; Humans; One Health; Vector-borne zoonosis; Animals; Dog Diseases; Dogs; Humans; Islands; Italy; Phylogeny; Seroepidemiologic Studies; Dirofilaria immitis; Dirofilaria repens; Dirofilariasis; ZoonosesRepensVector-borne zoonosis.one healthdirofilariasisSeroepidemiologic StudiesZoonosesDirofilariasisparasitic diseasesDogcanine heartworm disease; dirofilariasis; dogs; humans; one health; vector-borne zoonosismedicineAnimalsSeroprevalenceDog DiseaseshumanseducationPhylogenyDirofilariaIslandseducation.field_of_studybiologycanine heartworm diseasebiology.organism_classificationmedicine.diseaseVirologyDirofilaria repensInfectious DiseasesItalyInsect ScienceDirofilaria repensParasitologyWolbachiavector-borne zoonosisHumanActa Tropica
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Toxics or Lures? Biological and Behavioral Effects of Plant Essential Oils on Tephritidae Fruit Flies.

2021

The family Tephritidae (Diptera) includes species that are highly invasive and harmful to crops. Due to globalization, international trade, and human displacement, their spread is continuously increasing. Unfortunately, the control of tephritid flies is still closely linked to the use of synthetic insecticides, which are responsible for detrimental effects on the environment and human health. Recently, research is looking for alternative and more eco-friendly tools to be adopted in Integrated Pest Management (IPM) programs. In this regard, essential oils (EOs) and their main compounds represent a promising alternative to chemical insecticides. EOs are made up of phytoconstituents formed fro…

Integrated pest managementFumigation Ingestion toxicity Integrated Pest Management Phenylpropanoids Tephritid Terpenes True fruit flyfumigationVolatilePharmaceutical ScienceOrganic chemistryReviewBiologyFumigation; Ingestion toxicity; Integrated Pest Management; Phenylpropanoids; Tephritid; Terpenes; True fruit fly; Animals; Insect Control; Oils Volatile; Plant Oils; TephritidaeInsect ControlIntegrated Pest ManagementAnalytical ChemistryHuman healthSterile insect techniqueQD241-441TephritidaeDrug Discoveryingestion toxicityOils VolatileBactroceraAnimalsPlant OilsPhysical and Theoretical ChemistryCeratitisterpenes; phenylpropanoids; true fruit fly; Integrated Pest Management; tephritid; fumigation; ingestion toxicitybusiness.industryfungiTephritidaebiology.organism_classificationBiotechnologytephritidAnastrephaChemistry (miscellaneous)Molecular Medicinetrue fruit flybusinessOilsterpenesphenylpropanoidsMolecules (Basel, Switzerland)
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Acaricidal Activity of Bufadienolides Isolated from Drimia pancration against Tetranychus urticae, and Structural Elucidation of Arenobufagin-3-O-α-L…

2022

Chemical characterization of the bulbs of Drimia pancration was conducted to isolate four steroidal saponins (1&ndash;4). Earlier, we focused on the structural elucidation of compounds 1&ndash;3. Herein, by means of 1H-NMR, 13C-NMR, Nuclear Overhauser Effects (NOE), and 2D-NMR spectra, the full stereochemical structure of 4 is reported, and all the 1H and 13C signals are assigned. Compounds 1&ndash;4 were tested for their acaricidal properties against the two-spotted spider mite Tetranychus urticae. Our results showed excellent activity of compound 1, with an LD50 (&micro;g/cm2) of 0.29 and a LD90 (&micro;g/cm2) of 0.96, whereas compounds 2, 3, and 4 showed moderate activity. Furthermore, t…

steroidal saponinsEcologybotanical acaricidecrop pestbotanical acaricide; crop pest; Integrated Pest Management; steroidal saponins; NMRPlant ScienceIntegrated Pest ManagementNMREcology Evolution Behavior and SystematicsPlants
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Larvicidal Activity of Essential Oils of Five Apiaceae Taxa and Some of Their Main Constituents Against Culex quinquefasciatus.

2018

Apiaceae are aromatic herbs producing essential oils which are used on an industrial scale for various purposes. Notably, Apiaceae essential oils may replace synthetic insecticides keeping most of their efficacy and avoiding environmental pollution and human poisoning. In the present work, we explored the insecticidal potential of the essential oils from five Apiaceae taxa, namely Sison amomum, Echinophora spinosa, Heracleum sphondylium subsp. sphondylium, Heracleum sphondylium subsp. ternatum, and Trachyspemum ammi, as well as their major constituents (sabinene, p-cymene, terpinolene, myristicin, and thymol), against the filariasis vector Culex quinquefasciatus. For the purpose, the essent…

0106 biological scienceslarvicidal activityInsecticides[SDV]Life Sciences [q-bio]VolatileEnvironmental pollution01 natural sciencesBiochemistrychemistry.chemical_compoundThymolInsecticideTraditional medicinebiologyCulex quinquefasciatusAmmiGeneral Medicineselected main constituentMyristicinCulexLarvaEchinophoraMolecular MedicineDrugcomic_books.characterSabineneBioengineeringessential oilDose-Response RelationshipStructure-Activity RelationshipCulex quinquefasciatuselected main constituentsOils VolatileAnimalsMolecular Biologyessential oilsApiaceaeDose-Response Relationship Drug010405 organic chemistryHeracleum sphondyliumAnimalGeneral Chemistrybiology.organism_classification0104 chemical sciencesFive Apiaceae taxachemistry13. Climate actioncomic_booksOils010606 plant biology & botanyCulex quinquefasciatus; essential oils; Five Apiaceae taxa; larvicidal activity; selected main constituents; Animals; Apiaceae; Culex; Dose-Response Relationship Drug; Insecticides; Larva; Oils Volatile; Structure-Activity RelationshipApiaceaeChemistrybiodiversity
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Lethal and behavioural effects of a green insecticide against an invasive polyphagous fruit fly pest and its safety to mammals

2021

Abstract Plant essential oil-based insecticides, with special reference to those that may be obtained from largely available biomasses, represent a valuable tool for Integrated Pest Management. However, the sublethal effects and the potential effects on aggressive insect traits of these green insecticides are understudied. Herein, the lethal and sub-lethal effects of the carlina oxide, constituting more than 97% of the whole Carlina acaulis (Asteraceae) root essential oil (EO), were determined against an invasive polyphagous tephritid pest, Ceratitis capitata (medfly). The carlina oxide was formulated in a mucilaginous solution containing carboxymethylcellulose sodium salt, sucrose, and hyd…

Integrated pest managementInsecticidesEnvironmental EngineeringHealth Toxicology and MutagenesisAsteraceaeBiologyCarlina acaulisToxicologyTephritidaeOils VolatileAnimalsEnvironmental ChemistryMammalsPublic Health Environmental and Occupational HealthCeratitis capitataGeneral MedicineGeneral ChemistryPesticideCeratitis capitatabiology.organism_classificationPollutionAcute toxicityRatsSettore AGR/11 - Entomologia Generale E ApplicataToxicityPEST analysisAggressiveness Attract and kill Carlina acaulis Carlina oxide Plant essential oil Tephritidae
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Efficacy of sea fennel (Crithmum maritimum L., Apiaceae) essential oils against Culex quinquefasciatus Say and Spodoptera littoralis (Boisd.)

2017

The effective management of insect pests and vectors still represents a major challenge in current entomology. Culex quinquefasciatus Say is a key vector of lymphatic filariasis, Rift Valley fever, West Nile, St. Louis encephalitis and Western equine encephalitis virus. Recently, the importance of the eco-friendly control of C. quinquefasciatus larval population using plant-borne biopesticides, including essential oils (EOs), has been stressed. Spodoptera littoralis (Boisd.) also known as tobacco cutworm, is one of the most destructive moth agricultural pests in tropic and sub-tropic regions. Despite the fact that sea fennel (Crithmum maritimum L., Apiaceae) is considered as a promising bio…

0106 biological sciencesBiopesticides[SDV]Life Sciences [q-bio]Population01 natural sciencesEssential oillaw.inventionSpodoptera littoralichemistry.chemical_compoundCulex quinquefasciatulawCrithmumBotanyBiopesticides; Crithmum maritimum; Culex quinquefasciatus; Essential oil; Spodoptera littoralis14. Life underwatereducationSpodoptera littoralisEssential oilDillapioleeducation.field_of_studyApiaceaebiologyChemotype010405 organic chemistryCrithmum maritimumCulex quinquefasciatusSpodoptera littoralisbiology.organism_classificationCulex quinquefasciatus0104 chemical scienceschemistry13. Climate actionBiopesticideAgronomy and Crop Science010606 plant biology & botany
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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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Identification of highly effective antitrypanosomal compounds in essential oils from the Apiaceae family

2018

The Apiaceae family encompasses aromatic plants of economic importance employed in foodstuffs, beverages, perfumery, pharmaceuticals and cosmetics. Apiaceae are rich sources of essential oils because of the wealth of secretory structures (ducts and vittae) they are endowed with. The Apiaceae essential oils are available on an industrial level because of the wide cultivation and disposability of the bulky material from which they are extracted as well as their relatively cheap price. In the fight against protozoal infections, essential oils may represent new therapeutic options. In the present work, we focused on a panel of nine Apiaceae species (Siler montamon, Sison amomum, Echinophora spi…

Human African trypanosomiasiAlkeneApiaceae; BALB/3T3; Essential oils; Human African trypanosomiasis; Trypanosoma brucei; 3T3 Cells; Alkenes; Animals; Apiaceae; Benzyl Compounds; Cyclohexenes; Dioxolanes; Inhibitory Concentration 50; Mice; Monoterpenes; Oils Volatile; Plant Oils; Pyrogallol; Terpenes; Trypanosoma brucei brucei; Trypanosomiasis; Pollution; Public Health Environmental and Occupational Health; Health Toxicology and MutagenesisHealth Toxicology and Mutagenesis[SDV]Life Sciences [q-bio]VolatileMonoterpeneAllylbenzene DerivativesPlant Oil01 natural sciencesCosmeticsEssential oilTerpenechemistry.chemical_compoundMiceTrypanosoma bruceiBALB/3T3media_commonBicyclic Monoterpenes2. Zero hungerbiologyTraditional medicineChemistryBenzyl CompoundsDioxolanesGeneral Medicine3T3 CellsPollutionHealthEssential oilsTerpeneIdentification (biology)Public HealthDioxolaneCyclohexenesmedia_common.quotation_subjectAcyclic MonoterpenesApiaceae; BALB/3T3; Essential oils; Human African trypanosomiasis; Trypanosoma brucei; 3T3 Cells; Alkenes; Animals; Apiaceae; Benzyl Compounds; Cyclohexenes; Dioxolanes; Inhibitory Concentration 50; Limonene; Mice; Monoterpenes; Oils Volatile; Plant Oils; Pyrogallol; Terpenes; Trypanosoma brucei brucei; TrypanosomiasisTrypanosoma brucei bruceiCyclohexane MonoterpenesTrypanosoma bruceiAlkenesPyrogallolInhibitory Concentration 50TrypanosomiasisBenzyl CompoundsCyclohexenesOils VolatileCyclohexeneAnimalsPlant OilsToxicology and Mutagenesis3T3 CellApiaceaeAnimal010405 organic chemistryTerpenesEnvironmental and Occupational HealthHuman African trypanosomiasisPublic Health Environmental and Occupational Healthbiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryPyrogallolMonoterpenesCymenesBenzyl CompoundOilsLimoneneApiaceae
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Essential oils from three Algerian medicinal plants (Artemisia campestris, Pulicaria arabica, and Saccocalyx satureioides) as new botanical insectici…

2020

Medicinal and aromatic plants represent an outstanding source of green active ingredients for a broad range of real-world applications. In the present study, we investigated the insecticidal potential of the essential oils obtained from three medicinal and aromatic plants of economic importance in Algeria, Artemisia campestris, Pulicaria arabica, and Saccocalyx satureioides. Gas chromatography coupled with mass spectrometry (GC-MS) was used to study the essential oil chemical compositions. The three essential oils were tested against a mosquito vectoring filariasis and arboviruses, i.e., Culex quinquefasciatus, a fly pest acting also as pathogens vector, Musca domestica, and an agricultural…

InsecticidesCulex quinquefasciatus; Green pesticide; Insect pest; Mosquito vector; Musca domestica; Spodoptera littoralisHealth Toxicology and MutagenesisVolatileInsect pestArtemisia campestris010501 environmental sciencesMedicinal01 natural sciencesCulex quinquefasciatus . Insect pest . Mosquito vector . Musca domestica . Green pesticide . Spodoptera littoralislaw.inventionBorneolPulicariachemistry.chemical_compoundlawOils VolatileEnvironmental ChemistryAnimalsMedicinal plantsSpodoptera littoralisThymolEssential oil0105 earth and related environmental sciencesMosquito vectorPlants MedicinalbiologyTraditional medicineCulex quinquefasciatusGeneral MedicinePlantsSpodoptera littoralisbiology.organism_classificationPollutionGreen pesticideCulexchemistryGermacreneArtemisiaCulex quinquefasciatus; Green pesticide; Insect pest; Mosquito vector; Musca domestica; Spodoptera littoralis; Algeria; Animals; Larva; Artemisia; Culex; Insecticides; Oils Volatile; Plants Medicinal; PulicariaMyrceneAlgeriaLarvaMusca domesticaOilsEnvironmental science and pollution research international
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Developing green insecticides to manage olive fruit flies? Ingestion toxicity of four essential oils in protein baits on Bactrocera oleae

2020

Abstract Effective and eco-friendly plant-borne insecticides for developing lure and kill control tools against tephritid flies are scarce. Herein, the activity of four essential oils (EOs) obtained from two Apiaceae, Pimpinella anisum L. and Trachyspermum ammi (L.) Sprague, and two Lamiaceae, Thymbra spicata L. and Ocimum gratissimum L., was evaluated against the olive fruit fly, Bactrocera oleae (Rossi), a key pest of olive groves. The EO chemical composition was determined by gas chromatography coupled with mass spectrometry (GC-MS) analyses. The four EOs incorporated in protein baits were tested for ingestion toxicity on B. oleae adults, mimicking lure and kill assays. Results showed con…

0106 biological sciencesattract and killTrachyspermum ammi01 natural sciencesIntegrated Pest Managementchemistry.chemical_compoundPimpinella anisumBactroceraCarvacrolTrachyspermum ammiThymolPimpinella anisumbiology010405 organic chemistryOcimum gratissimumThymbra spicataAmmiattract and kill; botanical insecticide; Integrated Pest Management; Ocimum gratissimum; Pimpinella anisum; Thymbra spicata; Trachyspermum ammiattract and kill botanical insecticide Integrated Pest Management Pimpinella anisum Trachyspermum ammi Ocimum gratissimum Thymbra spicatabiology.organism_classificationOcimum gratissimum0104 chemical sciencesHorticultureSettore AGR/11 - Entomologia Generale E Applicatachemistrybotanical insecticideLamiaceaeAgronomy and Crop Science010606 plant biology & botany
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