Search results for "Flagellate"

showing 10 items of 30 documents

Metal stresses modify soluble proteomes and toxin profiles in two Mediterranean strains of the distributed dinoflagellate Alexandrium pacificum

2022

WOS:000789651000009; HABs involving Alexandrium pacificum have been reported in metal-contaminated ecosystems, suggesting that this distributed species adapts to and/or can tolerate the effects of metals. Modifications in soluble proteomes and PST contents were characterized in two Mediterranean A. pacificum strains exposed to mono- or polymetallic stresses (zinc, lead, copper, cadmium). These strains were isolated from two anthropized locations: Santa Giusta Lagoon (Italy, SG C10-3) and the Tarragona seaport (Spain, TAR C5-4F). In both strains, metals primarily downregulated key photosynthesis proteins. Metals also upregulated other proteins involved in photosynthesis (PCP in both strains)…

ProteomicsEnvironmental EngineeringProteomeParalytic shellfish toxins[SDE.MCG]Environmental Sciences/Global Changeschemistry.chemical_elementmedicine.disease_causePhotosynthesiscomplex mixturesMicrobiologychemistry.chemical_compoundTar (tobacco residue)BiosynthesismedicineEnvironmental ChemistryWaste Management and DisposalEcosystemCadmiumbiologyStrain (chemistry)Harmful algal bloomToxinChemistryDinoflagellatebiology.organism_classificationPollutionADKMetalsDinoflagellida[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Crypthecodinium cohnii Growth and Omega Fatty Acid Production in Mediums Supplemented with Extract from Recycled Biomass

2022

Crypthecodinium cohnii is a marine heterotrophic dinoflagellate that can accumulate high amounts of omega-3 polyunsaturated fatty acids (PUFAs), and thus has the potential to replace conventional PUFAs production with eco-friendlier technology. So far, C. cohnii cultivation has been mainly carried out with the use of yeast extract (YE) as a nitrogen source. In the present study, alternative carbon and nitrogen sources were studied: the extraction ethanol (EE), remaining after lipid extraction, as a carbon source, and dinoflagellate extract (DE) from recycled algae biomass C. cohnii as a source of carbon, nitrogen, and vitamins. In mediums with glucose and DE, the highest specific biomass gr…

QH301-705.5omega-3 fatty acidPharmaceutical Sciencefood and beveragesCrypthecodinium cohnii<i>Crypthecodinium cohnii</i>Article<i>Crypthecodinium cohnii</i>; omega-3 fatty acid; biomass recycling; dinoflagellate extract; FTIR spectroscopybiomass recyclingFTIR spectroscopyDrug Discoverydinoflagellate extractBiology (General)Pharmacology Toxicology and Pharmaceutics (miscellaneous)Marine Drugs
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Identification of the ectosymbiotic bacteria of Mixotricha paradoxa involved in movement symbiosis

2003

Mixotricha paradoxa, a trichomonad from the hindgut of the Australian termite Mastotermes darwiniensis Froggatt, is a rare example of a movement symbiosis between eukaryotic and prokaryotic microorganisms. The surface of Mixotricha paradoxa is covered with spirochaetes and a rod-shaped bacterium. The four flagella at the anterior end seem only to alter the direction of movement, while the ectosymbiotic spirochaetes propel the flagellate cells. Based on a 16S rDNA sequence analysis after a semi-specific PCR, and subsequent fluorescence in situ hybridization applying helper oligonucleotides and a denaturing step of the 16S rRNA, three different spirochaete clones could be clearly identified o…

TreponemaMixotricha paradoxabiologyMastotermes darwiniensisSpirochaeteFlagellateFlagellum16S ribosomal RNAbiology.organism_classificationMicrobiologyBacteriaMicrobiologyEuropean Journal of Protistology
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Ultrastructure of Joenoides intermedia (Grassé 1952), a symbiotic parabasalid flagellate of Hodotermes mossambicus, and its comparison with other joe…

2003

Light and electron microscopy confirms the validity of the genus Joenoides. The cell is organised like other joeniids with a triangular flagellar area of about two thousand flagella/basal bodies and three privileged basal bodies located apart at the anterior corner of the flagellar area. Characteristically, the two parabasal fibres attached to the basal body #2 are very large and composed of striated subfibres that spread in the cytoplasm, where they sustain Golgi bodies. The flagellar area is surrounded by the axostylar capitulum, which is underlain by a thick layer of preaxostylar fibres, a very strongly amplified component in this species. The axostylar trunk is composed of a bundle of m…

biologyCytoplasmPeduncle (anatomy)ParabasalidUltrastructureBasal bodyAnatomyFlagellateFlagellumCytoskeletonbiology.organism_classificationMicrobiologyEuropean Journal of Protistology
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Bacteria of the Genus Roseobacter Associated with the Toxic Dinoflagellate Prorocentrum lima

1998

The dinoflagellate Prorocentrum lima is known to produce diarrhetic shellfish poisons. However, it is yet unclear if the dinoflagellates themselves or the bacteria associated with them produce the toxins. Here we analyze the toxicity as well as the spectrum of bacteria in two cultures of P. lima, namely P. lima-SY and P. lima-ST, which initially derived from the same P. lima strain PL2V. Toxicity tests, applying the Artemia bioassay revealed in both cultures high levels of toxins. The bacteria, associated with the two cultures, were identified by PCR/nucleotide sequence analysis of the 16S rRNA gene. From cultures of P. lima-SY the dominant sequence was found to share a 93.7% similarity wit…

biologyDinoflagellateRoseobacterBartonella tayloriibiology.organism_classification16S ribosomal RNAMicrobiologyMicrobiologyAgar platefluids and secretionsparasitic diseasespopulation characteristicsRhizobiumAxenicgeographic locationsBacteriaProtist
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REINSTATEMENT OF THE DINOFLAGELLATE GENUS Tripos TO REPLACE Neoceratium, MARINE SPECIES OF Ceratium (DINOPHYCEAE, ALVEOLATA)

2013

Morphological and molecular data support the split at the genus level of the marine and freshwater species of the dinoflagellate Ceratium (Gonyaulacales, Dinophyceae). A new genus name Neoceratium F. Gomez, D. Moreira & P. Lopez-Garcia was proposed for the marine species. However, it is considered illegitimate (type species is type of Biceratium Vanhoffen), and the nomenclatural priority is here given for the genus Tripos Bory (type species Tripos muelleri ) which replaces Neoceratium . New combinations are proposed for the existing names of species and infraspecific taxa. Reinstalacion del genero de dinoflagelados Tripos para reemplazar a Neoceratium , especies marinas de Ceratium (Dinophy…

biologyEcologyDinoflagellateAquatic ScienceOceanographybiology.organism_classificationType speciesNeoceratiumGenusCeratiumBotanyNomenclatureEcology Evolution Behavior and SystematicsCambridge Mathematical TriposDinophyceae
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Influence of dissolved organic matter from terrestrial origin on the changes of dinoflagellate species composition in the Gulf of Riga, Baltic Sea

2004

A mesocosm experiment was used to investigate the effect of terrestrial-origin dissolved organic matter (DOM) on the development of dinoflagellates in natural summer phytoplankton from the Gulf of Riga. Seawater was collected in the central part of the Gulf of Riga and at the entrance of the Gulf in June 1999. DOM was extracted from Parnu River water by use of tangential ultrafiltration. Experimental series were enriched with DOM, DOM in combination with nitrate and phosphate, and only with inorganic nutrients. Enrichments were added in ranges of their natural concentrations. Dinophysis acuminata, Protoperidinium brevipes and Gymnodinium spp. were dominant species in the initial dinoflagell…

biologyHeterotrophic nutritionEnvironmental chemistryDissolved organic carbonBotanyPhytoplanktonDinoflagellateDinophysis acuminataSeawaterGymnodiniumAquatic Sciencebiology.organism_classificationMesocosmHydrobiologia
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TEM observations on symbionts ofJoenia annectens(Flagellata Hypermastigida)

2001

Transmission electron microscopy was used to evaluate the ultrastructural morphology of some other symbiotic prokaryotes of Joenia annectens, an intestinal flagellate of the termite Kalotermes flavicollis. Three morphotypes are predominant and recognizable from their morphological characteristics. One morphotype is represented by spirochaetes that are mainly external and cover the flagellate, helping its movement. Rod-shaped bacteria, which represent the second morphotype, are also attached to the surface among the spirochaetes. Rod-shaped bacteria and some spirochaetes may enter the cell surface of Joenia annectens as a consequence of phagocytosis, remaining enclosed in an envelope of plas…

biologyKalotermes flavicollisMicroorganismUltrastructureZoologySpirochaeteFlagellateAxostylebiology.organism_classificationJoenia annectensEcology Evolution Behavior and SystematicsBacteriaMicrobiologyJournal of Natural History
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Ultrastructure and freeze-fracture studies of the thylakoids ofMantoniella squamata (Prasinophyceae)

1988

The ultrastructure and the supramolecular organization of the thylakoids of the small green flagellate,Mantoniella squamata, were examined in thin sections and freeze-fracture preparations. The whole chloroplast is tightly packed with thylakoids, which show a pattern of meandering, branching and/or anastomosing membranes. In freeze-fracture preparations only two fracture-faces can be distinguished: the PF- and the EF-face. The PF-face has a much higher particle density than the EF-face (PF: 4086 particles/μm2; EF: 865 particles/μm2). The EF-face is not as uniform as the PF-face. The areas which are packed with particles probably correspond to closely appressed thylakoid regions or adhesive …

biologyPrasinophyceaefood and beveragesCell BiologyPlant ScienceGeneral Medicinebiology.organism_classificationChloroplastMembraneThylakoidBotanyBiophysicsUltrastructureParticle sizeFlagellateParticle densityProtoplasma
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Integrated stratigraphy of the Oxfordian global stratotype section and point (GSSP) candidate in the Subalpine Basin (SE France).

2014

44 pages; International audience; An integrated biostratigraphic approach, based on ammonites, calcareous nannofossils, dinoflagellates, combined with sedimentology, carbon-isotope and physical stratigraphy, is proposed for the Subalpine Basin (Thuoux and Saint-Pierre d'Argençon sections). Within the expanded marl deposits of the Terres Noires Fm., the Callovian-Oxfordian boundary is particularly well defined by ammonite taxa from different families (i.e. Cardioceratidae, Oppeliidae, Aspidoceratidae and Perisphinctidae), calcareous nannoplankton (first occurrence of large-sized Stephanolithion bigotii) and dinoflagellate cysts (first occurrence of Wanaea fimbriata). This precise biostratigr…

calcareous nannofossilsammonites[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/Stratigraphy[SDU.STU.ST] Sciences of the Universe [physics]/Earth Sciences/Stratigraphydinoflagellate cystsCallovian-Oxfordian boundarychemostratigraphybiostratigraphycyclostratigraphy[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/Stratigraphy
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