Search Results - "Barry, S.C"
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Higher Level Taxonomy and Molecular Phylogenetics of the Choanoflagellatea
Published in The Journal of eukaryotic microbiology (01-09-2011)“…The choanoflagellates (Choanoflagellatea) comprise a major group of nanoflagellates, which are ubiquitous in the aquatic environment. Recent molecular…”
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Three-dimensional images of choanoflagellate loricae
Published in Proceedings of the Royal Society. B, Biological sciences (07-01-2009)“…Choanoflagellates are unicellular filter-feeding protozoa distributed universally in aquatic habitats. Cells are ovoid in shape with a single anterior…”
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Conserved Meiotic Genes Point to Sex in the Choanoflagellates
Published in The Journal of eukaryotic microbiology (01-01-2010)“…The choanoflagellates are a widespread group of heterotrophic aquatic nanoflagellates, which have recently been confirmed as the sister-group to Metazoa…”
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Role of the Cytoskeleton in Choanoflagellate Lorica Assembly
Published in The Journal of eukaryotic microbiology (01-03-2009)“…Cell division in Acanthoeca spectabilis produces a "naked" motile daughter cell (juvenile) that settles onto a surface and deposits siliceous costal strips…”
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Three Families of LTR Retrotransposons are Present in the Genome of the Choanoflagellate Monosiga brevicollis
Published in Protist (01-10-2008)“…The choanoflagellates are a ubiquitous group of nanoflagellates and the sister group of Metazoa. Examination of the initial draft version of the first…”
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The choanoflagellates: heterotrophic nanoflagellates and sister group of the metazoa
Published in Cold Spring Harbor protocols (01-02-2009)Get more information
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The role of supplemental oxygen during submaximal exercise in patients with cystic fibrosis
Published in The European respiratory journal (01-07-2002)“…Repeated bouts of submaximal exercise are an important part of most pulmonary rehabilitation programmes. Patients with moderate-to-severe cystic fibrosis (CF)…”
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Re-evaluating Loricate Choanoflagellate Phylogenetics: Molecular Evidence Points to the Paraphyly of Tectiform Species
Published in Protist (01-12-2022)“…•The previously unresolved root of Acanthoecida is identified.•Rare genomic changes support the proposed root.•Codon bias is identified as a putative source of…”
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Significance of the Nudiform and Tectiform Modes of Silica Deposition, Lorica Assembly and Cell Division in Choanoflagellates as Exemplified by Stephanoeca diplocostata and Enibas spp
Published in Protist (01-12-2022)“…•Complete silicon starvation of tectiform Stephanoeca diplocostata results in diagonal (nudiform) division.•Silicon-replenished S. diplocostata cells…”
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A six-gene phylogeny provides new insights into choanoflagellate evolution
Published in Molecular phylogenetics and evolution (01-02-2017)“…[Display omitted] •We have revised, and clarified discrepancies, in the taxonomy of choanoflagellates.•We have erected four new genera and amended two…”
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Morphological and molecular reinvestigation of acanthoecid species II. - Pseudostephanoeca paucicostata (Tong et al., 1998) gen. et comb. nov. (= Stephanoeca diplocostata var. paucicostata Throndsen, 1969) including also the description of Pseudostephanoeca quasicupula sp. nov. and Stephanoeca ellisfiordensis sp. nov
Published in European journal of protistology (01-10-2022)“…The present study has revealed morphological differences of species assigned to the acanthoecid choanoflagellate genus Stephanoeca based on the relative…”
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Morphological and molecular reinvestigation of acanthoecid species III. – Kalathoeca cupula (Leadbeater, 1972) gen. et comb. nov. (=Stephanoeca cupula (Leadbeater) Thomsen, 1988)
Published in European journal of protistology (01-02-2023)“…Based on a further re-examination of loricate choanoflagellate species with detailed morphological (SEM/TEM) and molecular data of the SSU and LSU rRNA, the…”
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Flow cytometric sorting of loricate choanoflagellates from the oligotrophic ocean
Published in European journal of protistology (01-10-2022)“…It is challenging to study protists with extensive, loosely-associated extracellular structures because of the problems with keeping specimens intact. Here we…”
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FOXP3 and FOXP3-regulated microRNAs suppress SATB1 in breast cancer cells
Published in Oncogene (23-02-2012)“…The transcription factor FOXP3 has been identified as a tumour suppressor in the breast and prostate epithelia, but little is known about its specific…”
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Point of truth calibration for disease prioritisation—A case study of prioritisation of exotic diseases for the pig industry in Australia
Published in Preventive veterinary medicine (01-04-2017)“…The objective of this study was to trial point of truth calibration (POTCal) as a novel method for disease prioritisation. To illustrate the application of…”
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Insecticide resistance status of Lucilia cuprina in New Zealand using biochemical and toxicological techniques
Published in Veterinary parasitology (01-06-1994)“…The resistance status to diazinon based organophosphorus insecticides has been examined in the sheep blowfly, Lucilia cuprina, a recent arrival to New Zealand…”
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Higher Level Taxonomy and Molecular Phylogenetics of the Choanoflagellatea: CHOANOFLAGELLATE PHYLOGENY
Published in The Journal of eukaryotic microbiology (01-09-2011)Get full text
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Choanoflagellate Lorica Construction and Assembly: The Tectiform Condition. Volkanus costatus (= Diplotheca costata)
Published in Protist (2010)“…The tectiform choanoflagellate Volkanus costatus (= Diplotheca costata) possesses a lorica comprising an outer layer of 14-18 longitudinal costae and three…”
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Hollow selection by vertebrate fauna in forests of southeastern Australia and implications for forest management
Published in Biological conservation (2002)“…We examined the types of hollows, and types of hollow-bearing trees, occupied by vertebrate fauna in temperate eucalypt forests in southeastern Australia…”
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Alternative Methods for Computing the Sensitivity of Complex Surveillance Systems
Published in Risk analysis (01-12-2009)“…Stochastic scenario trees are a new and popular method by which surveillance systems can be analyzed to demonstrate freedom from pests and disease. For…”
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