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showing 10 items of 7877 documents

Microspore Embryogenesis in Almond (Prunus dulcis Mill.)

2018

Almond is the most important tree nut crop in terms of commercial production. Its production is limited to areas characterized by a Mediterranean climate, including regions in the Mediterranean countries, the Central Valley of California, Central Asia, the Himalayan slopes and some equivalent areas in the Southern Hemisphere, including Argentina, Australia and South Africa (Kester et al. 1975).

0106 biological sciences0301 basic medicineMediterranean climateCentral asia01 natural sciencesCrop03 medical and health sciencesHorticulturePrunus dulcis030104 developmental biologyGeographyMicrosporeSouthern Hemisphere010606 plant biology & botany
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Molecular Analysis of the Official Algerian Olive Collection Highlighted a Hotspot of Biodiversity in the Central Mediterranean Basin

2020

Genetic diversity and population structure studies of local olive germplasm are important to safeguard biodiversity, for genetic resources management and to improve the knowledge on the distribution and evolution patterns of this species. In the present study Algerian olive germplasm was characterized using 16 nuclear (nuSSR) and six chloroplast (cpSSR) microsatellites. Algerian varieties, collected from the National Olive Germplasm Repository (ITAFV), 10 of which had never been genotyped before, were analyzed. Our results highlighted the presence of an exclusive genetic core represented by 13 cultivars located in a mountainous area in the North-East of Algeria, named Little Kabylie. Compar…

0106 biological sciences0301 basic medicineMediterranean climateGermplasmChloroplastslcsh:QH426-470BiodiversityGenetic relationship01 natural sciencesMediterranean BasinArticle<i>olea europaea</i> l.olivenuSSR03 medical and health sciencesAfrica NorthernOleaGeneticsHumansDomesticationPhylogenyGenetics (clinical)Genetic diversityOlea europaea L.GreeceMediterranean RegionEcologyfungiGenetic Variationfood and beveragescpSSRpopulation structuregenetic diversityMoroccolcsh:Genetics030104 developmental biologyGeographyItalyCrop wild relativeSpainAlgeriaMediterranean Region Olea europaea L cpSSR genetic diversity nuSSR olive population structureMicrosatellite Repeats010606 plant biology & botanyGenes
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Twig and Shoot Dieback of Citrus, a New Disease Caused by Colletotrichum Species

2021

(1) Background: This study was aimed at identifying the Colletotrichum species associated with twig and shoot dieback of citrus, a new syndrome occurring in the Mediterranean region and also reported as emerging in California. (2) Methods: Overall, 119 Colletotrichum isolates were characterized. They were recovered from symptomatic trees of sweet orange, mandarin and mandarin-like fruits during a survey of citrus groves in Albania and Sicily (southern Italy). (3) Results: The isolates were grouped into two distinct morphotypes. The grouping of isolates was supported by phylogenetic sequence analysis of two genetic markers, the internal transcribed spacer regions of rDNA (ITS) and β-tubulin …

0106 biological sciences0301 basic medicineMediterranean climateTUB2Orange (colour)01 natural sciencesArticlecitrusTwigNecrosis03 medical and health sciencesColletotrichumpathogenicityInternal transcribed spacerlcsh:QH301-705.5Phylogeny<i>Colletotrichum</i> karstiiPlant DiseasesMyceliumbiologyInoculationColletotrichum karstii;fungifood and beveragesGeneral Medicine030108 mycology & parasitologybiology.organism_classificationColletotrichum gloeosporioidesColletotrichum karstiiColletotrichum gloeosporioides;Plant LeavesHorticultureColletotrichumlcsh:Biology (General)Genetic marker<i>Colletotrichum</i> gloeosporioidesShootDNA IntergenicITS010606 plant biology & botanyCells
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Effects of plant density and cutting-type on rooting and growth of an extensive green roof of Sedum sediforme (Jacq.) Pau in a Mediterranean environm…

2020

Abstract Species of the Sedum genus are a popular choice for green roofs as they thrive in shallow growth layers and are resilient to extreme environmental conditions; they are also easy to propagate from seed, plantlings or plant parts. The use of rooted cuttings is most widespread due to good rates of establishment. In the interest of cost reduction, the direct spreading of Sedum cuttings over the roof area, especially over large areas, has attracted attention in recent years. Considering the interest on the above method and the seeming lack of experimental data available, this study aims to further knowledge in this area. Experimental tests on direct spreading of unrooted cuttings of Sed…

0106 biological sciences0301 basic medicineMediterranean climateVegetative reproductionGreen roofHorticultureSedum sediformeCrassulaceae01 natural sciences03 medical and health sciencesCuttingground coverVegetative propagationunrooted cuttingRoofSicilybiologybiology.organism_classificationSedumSettore AGR/02 - Agronomia E Coltivazioni ErbaceeSedum sediforme (Jacq.) Pau030104 developmental biologyAgronomyDirect spreadingPlant coverEnvironmental science010606 plant biology & botany
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Limonium albuferae (Plumbaginaceae), a new polyploid species from the Eastern Iberian Peninsula

2016

A new species from Limonium (Plumbaginaceae), L. albuferae sp. nov., is described from the saline-sandy soils in the saltmarshes of the Eastern Iberian Peninsula (Devesa Albufera, Valencia province, Spain). The new species is triploid (2n = 26) and is closely related to the Western Mediterranean L. girardianum from which it morphologically differs by the major robustness, and overall dimensions of leaves, inflorescences, spikes and spikelets, and by the comparative smaller size of the outer and middle bracts.

0106 biological sciences0301 basic medicineMediterranean climategeographyBractgeography.geographical_feature_categorybiologyLimoniumPlant Sciencebiology.organism_classification010603 evolutionary biology01 natural sciencesPlumbaginaceae03 medical and health sciences030104 developmental biologyPolyploidPeninsulaBotanyTaxonomy (biology)EudicotsEcology Evolution Behavior and SystematicsPhytotaxa
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Volatile organic compounds in wild fungi from Mediterranean forest ecosystems

2017

AbstractHead Space-Solid Phase Micro Extraction (HS-SPME) extractions and Gas Chromatography-Mass Spectrometry (GC-MS) analysis allowed the identification of 72 different compounds isolated from 7 different wild inedible fungi collected in Mediterranean forest ecosystems. The VOCs reported in this study, including a total of 5 esters, 17 alcohols, 14 aldehydes, 9 ketones, 18 terpenes and 9 other compounds, have been never characterized before for Tricholoma ustaloides, Hygrophorus cossus, Russula foetens and Mycena pura.

0106 biological sciences0301 basic medicineMediterranean climatevolatile organic compoundTricholoma ustaloidesSettore AGR/13 - Chimica AgrariaBiodiversityBiology01 natural sciencesMediterranean areaTerpene03 medical and health sciencesForest ecologyBotanyHS-SPMEbiodiversitySettore BIO/02 - Botanica SistematicaExtraction (chemistry)Chemistry (all)General Chemistry030108 mycology & parasitologybiology.organism_classificationEnvironmental chemistryMycena puraBasidiomycetefungiHygrophorus cossus010606 plant biology & botany
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The bacterial microbiome of meloidogyne-based disease complex in coffee and tomato

2020

The Meloidogyne-based disease complexes (MDCs) are caused by the interaction of different root-knot nematode species and phytopathogenic fungi. These complexes are devastating several important crops worldwide including tomato and coffee. Despite their relevance, little is known about the role of the bacterial communities in the MDCs. In this study 16s rDNA gene sequencing was used to analyze the bacterial microbiome associated with healthy and infested roots, as well with females and eggs of Meloidogyne enterolobii and M. paranaensis, the causal agents of MDC in tomato and coffee, respectively. Each MDC pathosystems displayed a specific taxonomic diversity and relative abundances constitut…

0106 biological sciences0301 basic medicineMeloidogynePathologie végétalePlant Sciencelcsh:Plant culture01 natural scienceshttp://aims.fao.org/aos/agrovoc/c_479203 medical and health sciencesMaladie des planteshttp://aims.fao.org/aos/agrovoc/c_5962Meloidogyne paranaensisSolanum lycopersicumcorky rootAlteromonadalesBotanyhttp://aims.fao.org/aos/agrovoc/c_1721lcsh:SB1-1110MicrobiomeH20 - Maladies des planteshttp://aims.fao.org/aos/agrovoc/c_4475Original Researchfunctional profilehttp://aims.fao.org/aos/agrovoc/c_4729biologypathobiomeP34 - Biologie du solfood and beveragesNocardiaCoffea arabicabiology.organism_classification16S ribosomal RNABacillalesMeloidogyne enterolobiiBurkholderiales030104 developmental biologyNematodehttp://aims.fao.org/aos/agrovoc/c_5974Meloidogyne enterolobii010606 plant biology & botany
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Hexanoic Acid Treatment Prevents Systemic MNSV Movement in Cucumis melo Plants by Priming Callose Deposition Correlating SA and OPDA Accumulation

2017

Unlike fungal and bacterial diseases, no direct method is available to control viral diseases. The use of resistance-inducing compounds can be an alternative strategy for plant viruses. Here we studied the basal response of melon to Melon necrotic spot virus (MNSV) and demonstrated the efficacy of hexanoic acid (Hx) priming, which prevents the virus from systemically spreading. We analysed callose deposition and the hormonal profile and gene expression at the whole plant level. This allowed us to determine hormonal homeostasis in the melon roots, cotyledons, hypocotyls, stems and leaves involved in basal and hexanoic acid-induced resistance (Hx-IR) to MNSV. Our data indicate important roles…

0106 biological sciences0301 basic medicineMelonsalicylic acidPlant Sciencelcsh:Plant culture01 natural sciencesHypocotylMicrobiologyOPDA03 medical and health scienceschemistry.chemical_compoundCucumis meloPlant viruslcsh:SB1-1110Original ResearchHexanoic acidPriming by natural compoundsbiologyMelon necrotic spot virusCallosefood and beveragesSalicylic acidbiology.organism_classificationpriming by natural compounds030104 developmental biologychemistryBiochemistryMNSVhexanoic acidHexanoic acidCucumisSalicylic acid010606 plant biology & botany
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Dehydration rate determines the degree of membrane damage and desiccation tolerance in bryophytes.

2016

Desiccation tolerant (DT) organisms are able to withstand an extended loss of body water and rapidly resume metabolism upon rehydration. This ability, however, is strongly dependent on a slow dehydration rate. Fast dehydration affects membrane integrity leading to intracellular solute leakage upon rehydration and thereby impairs metabolism recovery. We test the hypothesis that the increased cell membrane damage and membrane permeability observed under fast dehydration, compared with slow dehydration, is related to an increase in lipid peroxidation. Our results reject this hypothesis because following rehydration lipid peroxidation remains unaltered, a fact that could be due to the high incr…

0106 biological sciences0301 basic medicineMembrane permeabilityPhysiologyPlant ScienceBryophytamedicine.disease_cause01 natural sciencesFluorescenceLipid peroxidationCell membraneDesiccation tolerance03 medical and health scienceschemistry.chemical_compoundStress PhysiologicalBotanyGeneticsmedicineHydroxybenzoatesDehydrationDesiccationDehydrationCell MembraneWaterCell BiologyGeneral Medicinemedicine.diseaseOxygenOxidative Stress030104 developmental biologymedicine.anatomical_structurechemistryBiophysicsLipid PeroxidationDesiccationReactive Oxygen SpeciesIntracellularOxidative stressPlant Shoots010606 plant biology & botanyPhysiologia plantarum
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Kineococcus vitellinus sp. nov., Kineococcus indalonis sp. nov. and Kineococcus siccus sp. nov., isolated nearby the Tabernas desert (Almería, Spain)

2020

This article belongs to the Section Environmental Microbiology.

0106 biological sciences0301 basic medicineMicrobiology (medical)Kineococcus siccusKineococcus indalonismedicine.disease_cause010603 evolutionary biology01 natural sciencesMicrobiologyArticle03 medical and health sciencesKineococcus radiotoleransNew taxaVirologyTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYBotanymedicineBiocrustKineococcusKineococcus vitellinuslcsh:QH301-705.5biologyStrain (chemistry)biology.organism_classification16S ribosomal RNATabernas desertAlmeria030104 developmental biologylcsh:Biology (General)GenBankKineococcus gypseusBacteria
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