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  • 1
    Publication Date: 2009-07-03
    Description: Schizophrenia is a complex disorder, caused by both genetic and environmental factors and their interactions. Research on pathogenesis has traditionally focused on neurotransmitter systems in the brain, particularly those involving dopamine. Schizophrenia has been considered a separate disease for over a century, but in the absence of clear biological markers, diagnosis has historically been based on signs and symptoms. A fundamental message emerging from genome-wide association studies of copy number variations (CNVs) associated with the disease is that its genetic basis does not necessarily conform to classical nosological disease boundaries. Certain CNVs confer not only high relative risk of schizophrenia but also of other psychiatric disorders. The structural variations associated with schizophrenia can involve several genes and the phenotypic syndromes, or the 'genomic disorders', have not yet been characterized. Single nucleotide polymorphism (SNP)-based genome-wide association studies with the potential to implicate individual genes in complex diseases may reveal underlying biological pathways. Here we combined SNP data from several large genome-wide scans and followed up the most significant association signals. We found significant association with several markers spanning the major histocompatibility complex (MHC) region on chromosome 6p21.3-22.1, a marker located upstream of the neurogranin gene (NRGN) on 11q24.2 and a marker in intron four of transcription factor 4 (TCF4) on 18q21.2. Our findings implicating the MHC region are consistent with an immune component to schizophrenia risk, whereas the association with NRGN and TCF4 points to perturbation of pathways involved in brain development, memory and cognition.〈br /〉〈br /〉〈a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3077530/" target="_blank"〉〈img src="https://static.pubmed.gov/portal/portal3rc.fcgi/4089621/img/3977009" border="0"〉〈/a〉   〈a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3077530/" target="_blank"〉This paper as free author manuscript - peer-reviewed and accepted for publication〈/a〉〈br /〉〈br /〉〈span class="detail_caption"〉Notes: 〈/span〉Stefansson, Hreinn -- Ophoff, Roel A -- Steinberg, Stacy -- Andreassen, Ole A -- Cichon, Sven -- Rujescu, Dan -- Werge, Thomas -- Pietilainen, Olli P H -- Mors, Ole -- Mortensen, Preben B -- Sigurdsson, Engilbert -- Gustafsson, Omar -- Nyegaard, Mette -- Tuulio-Henriksson, Annamari -- Ingason, Andres -- Hansen, Thomas -- Suvisaari, Jaana -- Lonnqvist, Jouko -- Paunio, Tiina -- Borglum, Anders D -- Hartmann, Annette -- Fink-Jensen, Anders -- Nordentoft, Merete -- Hougaard, David -- Norgaard-Pedersen, Bent -- Bottcher, Yvonne -- Olesen, Jes -- Breuer, Rene -- Moller, Hans-Jurgen -- Giegling, Ina -- Rasmussen, Henrik B -- Timm, Sally -- Mattheisen, Manuel -- Bitter, Istvan -- Rethelyi, Janos M -- Magnusdottir, Brynja B -- Sigmundsson, Thordur -- Olason, Pall -- Masson, Gisli -- Gulcher, Jeffrey R -- Haraldsson, Magnus -- Fossdal, Ragnheidur -- Thorgeirsson, Thorgeir E -- Thorsteinsdottir, Unnur -- Ruggeri, Mirella -- Tosato, Sarah -- Franke, Barbara -- Strengman, Eric -- Kiemeney, Lambertus A -- Genetic Risk and Outcome in Psychosis (GROUP) -- Melle, Ingrid -- Djurovic, Srdjan -- Abramova, Lilia -- Kaleda, Vasily -- Sanjuan, Julio -- de Frutos, Rosa -- Bramon, Elvira -- Vassos, Evangelos -- Fraser, Gillian -- Ettinger, Ulrich -- Picchioni, Marco -- Walker, Nicholas -- Toulopoulou, Timi -- Need, Anna C -- Ge, Dongliang -- Yoon, Joeng Lim -- Shianna, Kevin V -- Freimer, Nelson B -- Cantor, Rita M -- Murray, Robin -- Kong, Augustine -- Golimbet, Vera -- Carracedo, Angel -- Arango, Celso -- Costas, Javier -- Jonsson, Erik G -- Terenius, Lars -- Agartz, Ingrid -- Petursson, Hannes -- Nothen, Markus M -- Rietschel, Marcella -- Matthews, Paul M -- Muglia, Pierandrea -- Peltonen, Leena -- St Clair, David -- Goldstein, David B -- Stefansson, Kari -- Collier, David A -- 089061/Wellcome Trust/United Kingdom -- 1R01HL087679-01/HL/NHLBI NIH HHS/ -- PDA/02/06/016/Department of Health/United Kingdom -- R01 MH078075/MH/NIMH NIH HHS/ -- England -- Nature. 2009 Aug 6;460(7256):744-7. doi: 10.1038/nature08186. Epub 2009 Jul 1.〈br /〉〈span class="detail_caption"〉Author address: 〈/span〉deCODE genetics, Sturlugata 8, IS-101 Reykjavik, Iceland.〈br /〉〈span class="detail_caption"〉Record origin:〈/span〉 〈a href="http://www.ncbi.nlm.nih.gov/pubmed/19571808" target="_blank"〉PubMed〈/a〉
    Keywords: Basic Helix-Loop-Helix Leucine Zipper Transcription Factors ; Chromosomes, Human, Pair 11/genetics ; Chromosomes, Human, Pair 18/genetics ; Chromosomes, Human, Pair 6/genetics ; DNA-Binding Proteins/genetics ; Genetic Markers/genetics ; Genetic Predisposition to Disease/*genetics ; Genome, Human/genetics ; Genome-Wide Association Study ; Genotype ; Humans ; Major Histocompatibility Complex/genetics ; Neurogranin/genetics ; Polymorphism, Single Nucleotide/*genetics ; Schizophrenia/*genetics/immunology ; Transcription Factors/genetics
    Print ISSN: 0028-0836
    Electronic ISSN: 1476-4687
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
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  • 2
    Publication Date: 2017-02-11
    Description: IFI16 is required for DNA sensing in human macrophages by promoting production and function of cGAMP Nature Communications, Published online: 10 February 2017; doi:10.1038/ncomms14391 The role of IFI16 as a DNA sensor is highly controversial. With support from a Nature Communications back-to-back publication from Almine et al . the authors here provide functional evidence that IFI16 is required for DNA sensing via the cGAS-STING pathway in human macrophages.
    Electronic ISSN: 2041-1723
    Topics: Biology , Chemistry and Pharmacology , Natural Sciences in General , Physics
    Published by Springer Nature
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  • 3
    Electronic Resource
    Electronic Resource
    Oxford, UK; Malden, USA : Blackwell Science Ltd
    Journal of fish biology 65 (2004), S. 0 
    ISSN: 1095-8649
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Biology
    Notes: The diet change with size, season and area was investigated using the stomachs of 496 kingclip Genypterus blacodes collected around the Falkland Islands (south-west Atlantic) between August 2001 and September 2002. The key prey species were rockcod Patagonotothen spp., benthic isopods and Patagonian grenadier Macruronus magellanicus. Kingclip 〈50 cm total length (LT) fed mainly on crustaceans and small fishes. With size the diet shifted away from crustaceans towards Patagonotothen spp. in kingclip 50–100 cm LT, and finally towards larger fishes such as M. magellanicus and Micromesistius australis australis in kingclip 〉100 cm LT. The niche breadth was highest in fish 〉100 cm LT and the lowest in fish 〈50 cm LT. The larger kingclip generally selected larger individuals of the same prey species, with the exception of the Patagonian squid Loligo gahi, where all ingested squid were of similar size, regardless of the predator length. The importance of the main prey species varied substantially between five consequent seasons studied, and appeared to follow the seasonal abundance and availability of prey. The spatial variability in the diet was found in kingclip caught in regions occupied by transformed temperate and sub-Antarctic waters. The rockcod, which is available throughout the year around the Falkland Islands, was the most important prey in the kingclip diet. Kingclip takes advantage of other seasonally abundant prey species during their seasonal migrations (e.g. L. gahi) and also scavenge on discards from fishing vessels when available.
    Type of Medium: Electronic Resource
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  • 4
  • 5
    Publication Date: 2017-02-10
    Electronic ISSN: 2041-1723
    Topics: Biology , Chemistry and Pharmacology , Natural Sciences in General , Physics
    Published by Springer Nature
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  • 6
    Publication Date: 2019-01-21
    Description: A study of the reproductive biology of the loliginid squid, Alloteuthis subulata in the North Sea, Irish Sea and Portuguese waters was carried out. A predominance of small squid (〈50 mm ML) during autumn was observed in all three areas. Multi-modal size-frequency distributions were apparent in both sexes. The greatest complexity was observed in Portuguese waters, with males exhibiting possibly four or more modal size classes. Sexually mature squid were found throughout the year, with generally more mature squid in spring-summer and fewer in autumn-winter. In Portuguese waters, maturity in both sexes peaked in spring, whereas maturity in the other areas peaked in summer. Similar sizes-at-maturity were observed, with male squid maturing over a greater size range (40–125 mm ML) than females (30–50 mm ML). An apparent secondary peak in male maturity at 65 mm ML suggests two different size-maturation patterns in Portuguese waters. Estimates of potential fecundity in the Irish Sea ranged from 2200–13 500 eggs per female. Mean egg diameters of 0.45 mm and 1.55 mm were recorded for developing oocytes and mature ova, respectively. Three to four modal size classes of oocytes were apparent in each ovary. There was some indication of latitudinal effects on growth, maturation and reproduction of A. subulata across its geographic range. The greater complexity of size-structure in warmer waters suggests that water temperature may be the main factor involved, possibly through shorter incubation times, faster growth and maturation rates and extended spawning periods.
    Type: Article , PeerReviewed
    Format: text
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  • 7
    Publication Date: 2021-08-27
    Description: Abundance of the loliginid squid Loligo forbesi in Western and Northern Scottish (UK) waters (ICES fishery subdivisions IVa and VIa) 1989–1998 was estimated using “depletion” methods. Fishery catch and effort data for UK and French fishing vessels were obtained from official government statistics. Biological data were collected during monthly sampling visits to Kinlochbervie (Scotland, UK) fish market. Effects of using different indices for natural mortality and different model fits were evaluated. The results indicate initial (pre-fishing season) annual population sizes in the order of 106 animals. Significant between-year variation in the seasonal pattern of body weight and recruitment indicates that contemporaneous biological data, collected every month (or more frequently) are needed to underpin annual estimates.
    Type: Article , PeerReviewed
    Format: text
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