Search results for "CROP PROTECTION"

showing 10 items of 18 documents

Advanced methods of plant disease detection. A review

2014

International audience; Plant diseases are responsible for major economic losses in the agricultural industry worldwide. Monitoring plant health and detecting pathogen early are essential to reduce disease spread and facilitate effective management practices. DNA-based and serological methods now provide essential tools for accurate plant disease diagnosis, in addition to the traditional visual scouting for symptoms. Although DNA-based and serological methods have revolutionized plant disease detection, they are not very reliable at asymptomatic stage, especially in case of pathogen with systemic diffusion. They need at least 1–2 days for sample harvest, processing, and analysis. Here, we d…

0106 biological sciencesEnvironmental Engineering[SDV]Life Sciences [q-bio]DiseaseBiology01 natural sciences03 medical and health sciencesCommercial kitsVolatile organic compoundsSpectroscopyPlant disease030304 developmental biology2. Zero hunger0303 health sciencesbusiness.industryDNA-based methods Immunological assays Spectroscopy Biophotonics Plant disease Remote sensing Volatile organic compounds Commercial kitsEffective managementExtremely HelpfulRemote sensingPlant diseaseCrop protectionBiotechnologyRisk analysis (engineering)DNA-based methodsImmunological assaysBiophotonicsbusinessAgronomy and Crop Science010606 plant biology & botany
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Responses of small mammal communities to environment and agriculture in a rural mosaic landscape

2018

Intensification of agriculture is an increasing threat for biodiversity. Central Romania still preserves a traditional rural landscape with a matrix of small plots of crops and large surfaces covered by grasslands and forests, but its biodiversity is very poorly studied. Small mammals are key components of agrarian and semi-natural ecosystems but rodents are also viewed as major pests. Knowledge of the driving factors of small mammal communities in agricultural landscapes may enable taking management measures that pursue both conservation and economic goals. Here we evaluate the response of small mammals to environmental variables, including vegetation characteristics, land use and geograph…

0106 biological sciencesLand useAgroforestryBiodiversity04 agricultural and veterinary sciencesVegetationBiologyGeneralist and specialist species010603 evolutionary biology01 natural sciencesCrop protectionHabitatAbundance (ecology)Animal ecology040103 agronomy & agriculture0401 agriculture forestry and fisheriesAnimal Science and ZoologyEcology Evolution Behavior and SystematicsMammalian Biology
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Prospects of herbivore egg-killing plant defenses for sustainable crop protection

2016

Abstract Due to a growing demand of food production worldwide, new strategies are suggested to allow for sustainable production of food with minimal effects on natural resources. A promising alternative to the application of chemical pesticides is the implementation of crops resistant to insect pests. Plants produce compounds that are harmful to a wide range of attackers, including insect pests; thus, exploitation of their natural defense system can be the key for the development of pest‐resistant crops. Interestingly, some plants possess a unique first line of defense that eliminates the enemy before it becomes destructive: egg‐killing. Insect eggs can trigger (1) direct defenses, mostly i…

0106 biological sciences[SDV]Life Sciences [q-bio]Biological pest controlReviewInsectphylogeny01 natural sciencesPlant defense against herbivoryLaboratory of EntomologyPhylogenyoviposition-induced plant volatilemedia_common2. Zero hungerEcologyegg parasitoidsOviposition-induced plant volatilesfood and beveragesEgg depositionBiosystematiekegg depositionEgg deposition; egg parasitoids; hypersensitive response; oviposition-induced plant volatiles; phylogeny; Ecology Evolution Behavior and Systematics; Ecology; Nature and Landscape ConservationHypersensitive responseegg parasitoidhypersensitive responsemedia_common.quotation_subjectReviewsoviposition‐induced plant volatilesBiology010603 evolutionary biologyprotection des plantesEgg parasitoidsEcology Evolution Behavior and Systematicsoviposition-induced plant volatilesNature and Landscape ConservationHerbivoreegg deposition;egg parasitoids;hypersensitive response;oviposition-induced plant volatiles;phylogenybusiness.industryfungiPesticideLaboratorium voor EntomologieEcology Evolution Behavior and SystematicCrop protectionSettore AGR/11 - Entomologia Generale E ApplicataAgronomySustainabilityoeuf d'insecteFood processingBiosystematicsEPSbusiness010606 plant biology & botany
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Insecticidal spectrum and mode of action of the Bacillus thuringiensis Vip3Ca insecticidal protein.

2016

The Vip3Ca protein, discovered in a screening of Spanish collections of Bacillus thuringiensis, was known to be toxic to Chrysodeixis chalcites, Mamestra brassicae and Trichoplusia ni. In the present study, its activity has been tested with additional insect species and we found that Cydia pomonella is moderately susceptible to this protein. Vip3Ca (of approximately 90 kDa) was processed to an approximately 70 kDa protein when incubated with midgut juice in all tested species. The kinetics of proteolysis correlated with the susceptibility of the insect species to Vip3Ca. The activation was faster to slower in the following order: M. brassicae (susceptible), Spodoptera littoralis (moderately…

0301 basic medicineInsecticides030106 microbiologyInsect pest controlAgrotis ipsilonVegetative insecticidal proteinsMothsmedicine.disease_causeMicrobiologyCiencias BiológicasInsecticide Resistance03 medical and health sciencesBiología Celular MicrobiologíaBacterial ProteinsBacillus thuringiensisBotanyTrichoplusiamedicineAnimalsSpodoptera littoralisPest Control BiologicalEcology Evolution Behavior and SystematicsHistological localizationbiologyToxinfungiVEGETATIVE INSECTICIDAL PROTEINSMidgutBioinsecticidesApical membranebiology.organism_classificationCROP PROTECTIONChrysodeixis chalcitesBIOINSECTICIDES030104 developmental biologyCrop protectionINSECT PEST CONTROLHISTOLOGICAL LOCALIZATIONCIENCIAS NATURALES Y EXACTASJournal of invertebrate pathology
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A Genomic and Proteomic Approach to Identify and Quantify the Expressed Bacillus thuringiensis Proteins in the Supernatant and Parasporal Crystal

2018

The combined analysis of genomic and proteomic data allowed us to determine which cry and vip genes are present in a Bacillus thuringiensis (Bt) isolate and which ones are being expressed. Nine Bt isolates were selected from Spanish collections of Bt based on their vip1 and vip2 gene content. As a first step, nine isolates were analyzed by PCR to select those Bt isolates that contained genes with the lowest similarity to already described vip1 and vip2 genes (isolates E-SE10.2 and O-V84.2). Two selected isolates were subjected to a combined genomic and proteomic analysis. The results showed that the Bt isolate E-SE10.2 codifies for two new vegetative proteins, Vip2Ac-like_1 and Sip1Aa-like_…

0301 basic medicineInsecticidesbiologyInsect pest controlHealth Toxicology and MutagenesisSingle typelcsh:Rcry proteinslcsh:Medicinevip proteinsToxicologybiology.organism_classificationMolecular biologyinsect pest control; crop protection; vip proteins; cry proteins03 medical and health sciences030104 developmental biologyinsect pest controlBacillus thuringiensisGeneProteïnescrop protection
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Biological activity and toxicity of plant nutraceuticals: an overview

2021

Plant nutraceuticals have currently been receiving international attention due to their potentially health-promoting effects when consumed as part of a varied diet, including antioxidant, anti-inflammatory, and anti-proliferative properties. These beneficial effects have been attributed to the presence of bioactive compounds naturally occurring in food or produced de novo through metabolic pathways. However, taken into account that nutraceuticals could be concentrated forms of the food or plants, it is probable to find undesirable substances utilized in crop protection, such as pesticides, and other contaminants (e.g. mycotoxins), which could be concentrated during the extraction process. H…

0301 basic medicineeducation.field_of_study030109 nutrition & dieteticsPopulationfood and beveragesBiological activity04 agricultural and veterinary sciencesPesticideBiology040401 food scienceApplied Microbiology and BiotechnologyCrop protection03 medical and health sciences0404 agricultural biotechnologyNutraceuticalToxicityFood scienceeducationBeneficial effectsFood ScienceCurrent Opinion in Food Science
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Statement complementing the EFSA Scientific Opinion on application (EFSA‐GMO‐DE‐2011‐95) for the placing on the market of genetically modified maize …

2018

Abstract The GMO Panel was previously not in the position to complete the food/feed safety assessment of maize 5307 due to an inadequate 28‐day toxicity study necessary for an appropriate assessment of eCry3.1Ab protein. Following a mandate from the European Commission, the GMO Panel assessed a supplementary 28‐day toxicity study in mice on the eCry3.1Ab protein (1,000 mg/kg body weight (bw) per day) to complement its scientific opinion on application EFSA‐GMO‐DE‐2011‐95 for the placing on the market of the maize 5307 for food and feed uses, import and processing. The supplementary 28‐day toxicity study did not show adverse effects. Taking into account the previous assessment and the new in…

040301 veterinary sciencesVeterinary (miscellaneous)[SDV]Life Sciences [q-bio]2405 Parasitology28‐day studyPlant ScienceTP1-1185010501 environmental sciencesBody weight01 natural sciencesMicrobiology0403 veterinary scienceimport and processing1110 Plant ScienceEuropean commissionTX341-6411106 Food Science0105 earth and related environmental sciences2. Zero hungerGenetically modified maizebusiness.industryNutrition. Foods and food supplyGMOChemical technology2404 Microbiologyfungi10079 Institute of Veterinary Pharmacology and Toxicology04 agricultural and veterinary sciencesfood and feed safetyeCry3.1AbBiotechnologyCrop protection3401 Veterinary (miscellaneous)Scientific OpinionSettore AGR/11 - Entomologia Generale E Applicata570 Life sciences; biologyAnimal Science and ZoologyParasitologymaize 53071103 Animal Science and Zoologybusiness28-day studyFood Science
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Mining of new insecticidal protein genes plus determination of the insecticidal spectrum and mode of action of Bacillus thuringiensis Vip3Ca protein

2019

Bacillus thuringiensis és un bacteri que pertany al grup de Bacillus cereus i produeix una gran varietat de proteïnes insecticides juntament amb altres factors de virulència que contribueixen a la seva patogenicitat. Bacillus thuringiensis s'ha considerat com el agent bioinsecticida amb més èxit durant el segle passat. Actualment, és àmpliament utilitzat com agent microbià per a les principals plagues d'insectes com a formulat (selecció de aïllats de B. thuringiensis escollits per la seua combinació de proteïnes insecticides present en el cristall parasporal) o mitjançant l’expressió de les proteïnes insecticides (cultius Bt) en plantes d’interès agronòmic (dacsa, cotó, soja, etc.). En quan…

:CIENCIAS AGRARIAS::Fitopatología [UNESCO]Vip3 proteinsCrop protectionBacillus thuringiensis:CIENCIAS AGRARIAS::Agroquímica::Insecticidas [UNESCO]UNESCO::CIENCIAS AGRARIAS::FitopatologíaUNESCO::CIENCIAS AGRARIAS::Agroquímica::Insecticidas
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A Genomic and Proteomic Approach to Identify and Quantify the Expressed

2018

The combined analysis of genomic and proteomic data allowed us to determine which cry and vip genes are present in a Bacillus thuringiensis (Bt) isolate and which ones are being expressed. Nine Bt isolates were selected from Spanish collections of Bt based on their vip1 and vip2 gene content. As a first step, nine isolates were analyzed by PCR to select those Bt isolates that contained genes with the lowest similarity to already described vip1 and vip2 genes (isolates E-SE10.2 and O-V84.2). Two selected isolates were subjected to a combined genomic and proteomic analysis. The results showed that the Bt isolate E-SE10.2 codifies for two new vegetative proteins, Vip2Ac-like_1 and Sip1Aa-like_…

InsecticidesBacterial Proteinsinsect pest controlBacterial ToxinsBacillus thuringiensiscry proteinsGenomicsvip proteinsArticlecrop protectionToxins
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Sustainable Weed, Disease and Pest Management in Medicinal and Aromatic Plants

2015

As for all other crops, in MAPs as well, weeds, diseases and pests are important yield-reducing factors, which may severely curtain biomass production and, that is maybe more important, may affect several qualitative aspects of production. Research about this topic is generally lacking, for two main reasons: the first is that MAPs are generally grown on rather limited areas, and the incidence of specific pests and diseases rarely takes a relevance outside rather narrow boundaries. The second reason is that the economical importance of MAPs is much lower than that ascribed to the “major” crops, which the bigger efforts of research are addressed to. In the changing scenario of latter years, h…

Integrated pest managementBiomass (ecology)AgroforestryAromatic plantsSettore AGR/12 - Patologia VegetaleDiseaseCrop protectionSettore AGR/02 - Agronomia E Coltivazioni ErbaceeGeographySettore AGR/11 - Entomologia Generale E ApplicataSustainable managementMedicinal and aromatic plants pests diseases weeds crop protection pathogens insects mites nematodes sustainable managementProduction (economics)Weed
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