Search results for "Cucurbitaceae"

showing 10 items of 19 documents

First report of Tomato leaf curl New Delhi virus affecting zucchini squash in an important horticultural area of southern Italy

2016

Tomato leaf curl New Delhi virus (ToLCNDV) is a bipartite begomovirus (family Geminiviridae) which infects species in the families Cucurbitaceae and Solanaceae (Padidam et al., 1995; Mizutani et al., 2011). Begomoviruses are transmitted by the whitefly Bemisia tabaci in a persistent manner (Rosen et al., 2015). In October 2015, severe symptoms not previously reported by growers in the horticultural area of the Province of Trapani (Sicily, Italy) were observed on zucchini squash (Cucurbita pepo) in open fields. The symptoms included yellow mosaic, severe leaf curling, swelling of veins of young leaves, shortening of internodes, roughness of the skin of fruit and reduced fruit size; the sympt…

0106 biological sciences0301 basic medicineHealth Toxicology and MutagenesisTomato leaf curl New Delhi virusPlant Science01 natural sciencesFamily Geminiviridae03 medical and health sciencesBotanyemerging pathogenbiologyBegomovirusfungiSettore AGR/12 - Patologia Vegetalefood and beveragesbiology.organism_classificationbegomovirusCucurbitaceae030104 developmental biologyToLCNDVBipartite begomovirus ToLCNDVAgronomy and Crop ScienceCucurbitaceaeSolanaceae010606 plant biology & botanySquash
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Neonicotinoids in excretion product of phloem-feeding insects kill beneficial insects

2019

Significance The use of insecticides in agriculture is one of the suggested causes of the decline in insect populations. Neonicotinoids are among the most widely used insecticides. However, they have important negative side effects, especially for pollinators and other beneficial insects feeding on floral nectar and pollen. We identified an exposure route: Neonicotinoids reach and kill beneficial insects when they feed on the most abundant carbohydrate source for insects in agroecosystems, honeydew. Honeydew is the excretion product of phloem-feeding hemipteran insects such as aphids, mealybugs, whiteflies, or psyllids. This route of exposure is likely to affect a much wider range of benefi…

0106 biological sciencesHoneydewInsectaPhloemBiology010603 evolutionary biology01 natural sciencesBiological control agentsToxicologyNeonicotinoidschemistry.chemical_compoundPollinatorImidaclopridAnimalsNectarBeneficial insectsLaboratory of EntomologyMultidisciplinaryAgricultural Sciencesbusiness.industryPollinatorsfungiNeonicotinoidPest controlfood and beveragesFeeding BehaviorBiological SciencesPE&RCEnvironmental risk assessmentLaboratorium voor EntomologieSurvival AnalysisCucurbitaceae010602 entomologyHoneydewchemistryThiamethoxamEPSbusinessThiamethoxam
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Survey of the distribution of Bemisia tabaci (Hemiptera: Aleyrodidae) in Lazio region (Central Italy): a threat for the northward expansion of Tomato…

2018

Bemisia tabaci (Hemiptera: Aleyrodidae) is responsible for severe damage to horticultural and ornamental crops worldwide, mainly for its role as virus vector. In Italy, the B. tabaci Mediterranean (MED) and Middle East–Asia Minor 1 (MEAM1) cryptic species are widespread in the Southern regions as well as in Sicily and Sardinia. During the last two decades, MED populations progressively increased, in those areas where intensive farming is applied. The recent introduction of the begomovirus Tomato leaf curl New Delhi virus (ToLCNDV) prompted extensive surveys of both vector and symptomatic plants. In 2016 and 2017, monitoring activities were carried out in Lazio region (Central Italy) where b…

0106 biological sciencesSpecies complexVeterinary medicinebiologyBegomovirusSettore AGR/12 - Patologia VegetaleOutbreakPlant ScienceWhiteflybiology.organism_classificationWhitefly01 natural sciencesWhitefly MEAM1 species MED species Cucurbitaceae SolanaceaeCucurbitaceae010602 entomologyInsect SciencePlant virusVector (epidemiology)MED speciesMEAM1 speciesLeaf curlGeminiviridaeSolanaceae010606 plant biology & botanyPhytoparasitica
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De novoassembly of the zucchini genome reveals a whole-genome duplication associated with the origin of theCucurbitagenus

2018

Summary The Cucurbita genus (squashes, pumpkins and gourds) includes important domesticated species such as C. pepo, C. maxima and C. moschata. In this study, we present a high-quality draft of the zucchini (C. pepo) genome. The assembly has a size of 263 Mb, a scaffold N50 of 1.8 Mb and 34 240 gene models. It includes 92% of the conserved BUSCO core gene set, and it is estimated to cover 93.0% of the genome. The genome is organized in 20 pseudomolecules that represent 81.4% of the assembly, and it is integrated with a genetic map of 7718 SNPs. Despite the small genome size, three independent lines of evidence support that the C. pepo genome is the result of a whole-genome duplication: the …

0301 basic medicineSequence assemblyPlant ScienceBiologyBiotecnologiaGenome03 medical and health sciencesCucurbitaGene DuplicationGene duplicationGene familycropCucurbitagenomeGenome sizeGeneCitrullusResearch Articlesbiology.organism_classificationBiological EvolutionzucchiniCucurbitaceaeGenòmica030104 developmental biologyEvolutionary biologywhole‐genome duplicationTranscriptomeAgronomy and Crop ScienceGenome PlantResearch ArticleBiotechnologyPlant Biotechnology Journal
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Nutritional characterization of Butternut squash (Cucurbita moschata D.): Effect of variety (Ariel vs. Pluto) and farming type (conventional vs. orga…

2019

Farming systems and cultivar types are two of the main factors able to affect the nutritional quality of plant foods for human nutrition. Therefore, the aim of this study was to compare the impact of two unexplored variety (namely Ariel and Pluto) and farming type (conventional and organic) on physicochemical parameters, chemical and mineral composition, water- and fat-soluble vitamins, amino acid profile and antioxidant bioactive components of butternut squashes (Cucurbita moschata). In order to achieve this purpose, a multivariate statistical discrimination of the different parameters was carried out using the unsupervised principle component analysis (PCA). The most important differences…

030309 nutrition & dieteticsPhytochemicalsAntioxidants03 medical and health sciencesAntioxidant activity; Conventional-cultivars; Cucurbitaceae; Organic-cultivars; Phytochemicals0404 agricultural biotechnologyAntioxidant activityCucurbitaSettore AGR/13 - CHIMICA AGRARIAHumansNutsMagnesiumCultivarTocopherolFood scienceManganeseMinerals0303 health sciencesPlutobiologyChemistryOrganic-cultivarsSodiumConventional-cultivarsfood and beveragesAgriculture04 agricultural and veterinary sciencesbeta Carotenebiology.organism_classification040401 food scienceCucurbitaceaeZincHuman nutritionCucurbita moschataPotassiumOrganic farmingComposition (visual arts)Nutritive ValueCucurbitaceaeFood ScienceSquashFood Research International
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Dynamic architecture and regulatory implications of the miRNA network underlying the response to stress in melon

2019

miRNAs are small RNAs that regulate mRNAs at both transcriptional and posttranscriptional level. In plants, miRNAs are involved in the regulation of different processes including development and stress-response. Elucidating how stress-responsive miRNAs are regulated is key to understand the global response to stress but also to develop efficient biotechnological tools that could help to cope with stress. Here, we describe a computational approach based on sRNA sequencing, transcript quantification and degradome data to analyse the accumulation, function and structural organization of melon miRNAs reactivated under seven biotic and abiotic stress conditions at two and four days post-treatmen…

Crops AgriculturalMelonTranscript quantificationPeriod (gene)Computational biologyBiologyRegulation of the stress response in crops03 medical and health sciences0302 clinical medicineGene Expression Regulation PlantStress PhysiologicalStress (linguistics)microRNAGene Regulatory NetworksGene SilencingMolecular Biology030304 developmental biology0303 health sciencesStructural organizationAbiotic stressCell BiologyMicroRNAsCucurbitaceaeRNA silencingPhenotypemiRNA networks030220 oncology & carcinogenesissRNAs analisysRNA InterferenceRNA silencingFunction (biology)Research PaperRNA Biology
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Membrane insertion and topology of the p7B movement protein of Melon Necrotic Spot Virus (MNSV)

2007

AbstractCell-to-cell movement of the Melon Necrotic Spot Virus (MNSV) is controlled by two small proteins working in trans, an RNA-binding protein (p7A) and an integral membrane protein (p7B) separated by an amber stop codon. p7B contains a single hydrophobic region. Membrane integration of this region was observed when inserted into model proteins in the presence of microsomal membranes. Furthermore, we explored the topology and targeting mechanisms of full-length p7B. Here we present evidence that p7B integrates in vitro into the ER membrane cotranslationally and with an Nt-cytoplasmic/Ct-luminal orientation. The observed topology was monitored in vivo by fusing GFP to the Ct of p7B, enab…

Green Fluorescent ProteinsPlant virusBiologyTopologyEndoplasmic ReticulumGreen fluorescent proteinViral ProteinsVirologyMovement proteinIntegral membrane proteinMelon necrotic spot virusEndoplasmic reticulumCarmovirusProteïnes de membranaMembrane Proteinsbiology.organism_classificationMembrane integrationMembrane protein topologyVirusPlant Viral Movement ProteinsMovement proteinsCucurbitaceaeMembraneMembrane proteinCarmovirusMNSVVirology
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Idoneità alla minima lavorazione dei frutti di Lagenaria siceraria L.

2012

La lagenaria (Lagenaria siceraria (Molina) Standl.) è una cucurbitacea conosciuta da più di 15000 anni per la commestibilità dei frutti immaturi e dei germogli ma anche per le proprietà medicinali e per i diversi utilizzi cui può essere destinato il frutto maturo. Seppure la coltivazione della Lagenaria è ampiamente diffusa in Asia, in Europa, e nei paesi occidentali in genere, il suo utilizzo è limitato ad alcune zone circoscritte nelle quali riscuote l’apprezzamento dei consumatori. Pertanto questa specie presenta un notevole potenziale commerciale per l’eventuale diffusione in nuovi mercati. A tal fine si è voluta valutare la possibilità di trasformare i frutti di lagenaria in prodotto d…

Lagenaria siceraria cucurbitaceae IV gammaSettore AGR/04 - Orticoltura E Floricoltura
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Synthesis and herbicidal activity of isoxazole-substituted 1-aminoethylphosphonates and 1-hydroxyethylphosphonates

1994

Isoxazole‐substituted 1‐aminoethyl‐ and 1‐hydroxyethyiphosphonates were synthesized by a multi‐step procedure and were screened for herbicidal activity against Lepidium sativum L. and Cucumis sativus L. All the synthesized compounds exhibited notable herbicidal activity.

Lepidium sativumchemistry.chemical_compoundbiologyChemistryStereochemistryBiological activityIsoxazolebiology.organism_classificationApplied Microbiology and BiotechnologyChemical synthesisCucurbitaceaeCucumisPesticide Science
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RNA-binding properties and membrane insertion of Melon necrotic spot virus (MNSV) double gene block movement proteins

2006

AbstractAdvances in structural and biochemical properties of carmovirus movement proteins (MPs) have only been obtained in p7 and p9 from Carnation mottle virus (CarMV). Alignment of carmovirus MPs revealed a low conservation of amino acid identity but interestingly, similarity was elevated in regions associated with the functional secondary structure elements reported for CarMV which were conserved in all studied proteins. Nevertheless, some differential features in relation with CarMV MPs were identified in those from Melon necrotic virus (MNSV) (p7A and p7B). p7A was a soluble non-sequence specific RNA-binding protein, but unlike CarMV p7, its central region alone could not account for t…

Molecular Sequence DataSequence alignmentBiologyMembranes (Biologia)VirologyAmino Acid SequencePeptide sequenceProtein secondary structureIntegral membrane proteinPlant DiseasesMelon necrotic spot virusCarmovirusProteïnes de membranaRNA-Binding ProteinsRNAbiology.organism_classificationRNA-binding domainVirusPlant Viral Movement ProteinsCucurbitaceaeMovement proteinsBiochemistryCarnation mottle virusMelon plantsCarmovirusMNSVMembrane insertionSequence AlignmentGene DeletionVirology
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