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1.
  • Nordmark, G., et al. (author)
  • Association of Genes in the NF-kappa B Pathway with Antibody-Positive Primary Sjogren's Syndrome
  • 2013
  • In: Scandinavian Journal of Immunology. - : Wiley. - 0300-9475 .- 1365-3083. ; 78:5, s. 447-454
  • Journal article (peer-reviewed)abstract
    • Primary Sjogren's syndrome (SS) is a systemic autoimmune inflammatory disease characterized by focal lymphocytic infiltrates in the lachrymal and salivary glands and autoantibodies against the SSA/Ro and SSB/La antigens. Experimental studies have shown an activation of NF-B in primary SS. NF-B activation results in inflammation and autoimmunity and is regulated by inhibitory and activating proteins. Genetic studies have shown an association between multiple autoimmune diseases and TNFAIP3 (A20) and TNIP1 (ABIN1), both repressors of NF-B and of IKBKE (IKK epsilon), which is an NF-B activator. The aim of this study was to analyse single nucleotide polymorphisms (SNPs) in the IKBKE, NFKB1, TNIP1 and TNFAIP3 genes for association with primary SS. A total of 12 SNPs were genotyped in 1105 patients from Scandinavia (Sweden and Norway, n=684) and the UK (n=421) and 4460 controls (Scandinavia, n=1662, UK, n=2798). When patients were stratified for the presence of anti-SSA and/or anti-SSB antibodies (n=868), case-control meta-analysis found an association between antibody-positive primary SS and two SNPs in TNIP1 (P=3.4x10(-5), OR=1.33, 95%CI: 1.16-1.52 for rs3792783 and P=1.3x10(-3), OR=1.21, 95%CI: 1.08-1.36 for rs7708392). A TNIP1 risk haplotype was associated with antibody-positive primary SS (P=5.7x10(-3), OR=1.47, 95%CI: 1.12-1.92). There were no significant associations with IKBKE, NFKB1 or TNFAIP3 in the meta-analysis of the Scandinavian and UK cohorts. We conclude that polymorphisms in TNIP1 are associated with antibody-positive primary SS.
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3.
  • Kluting, Kerri L., et al. (author)
  • Distribution patterns of fungal taxa and inferred functional traits reflect the non-uniform vertical stratification of soil microhabitats in a coastal pine forest
  • 2019
  • In: FEMS Microbiology Ecology. - : Oxford University Press (OUP). - 0168-6496 .- 1574-6941. ; 95:11
  • Journal article (peer-reviewed)abstract
    • In boreal systems, soil profiles typically consist of distinct stratified horizons, with organic layers at the surface overlying deeper mineral horizons providing microhabitat variation along a depth gradient, and vertical stratification of fungal communities along such soil profiles is commonly observed. We studied fungal community structure in a coastal pine forest along a gradient of decreasing influence from the coast. In this system, the vertical stratification pattern of soil microhabitats (defined here as organic, mineral with roots and mineral without roots: O, MR and MN, respectively) is non-uniform; organic horizons are sometimes buried under drifting sand dunes. Our results show that soil microhabitats are distinct with respect to physiochemical characteristics, community composition and OTU richness. While community composition was partly related to depth and distance from the coastal forest edge, microhabitat appeared to have the strongest influence. A closer inspection of the OTUs with the highest relative sequence abundance within each microhabitat revealed that microhabitats support functionally distinct fungal communities with respect to trophic mode and growth morphology. These results suggest that in coastal pine forests, variation in soil microhabitats contributes to the high fungal diversity found belowground and may play an important role in optimizing nutrient cycling.
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4.
  • Lindner, Daniel L., et al. (author)
  • Initial fungal colonizer affects mass loss and fungal community development in Picea abies logs 6 yr after inoculation
  • 2011
  • In: Fungal ecology. - : Elsevier BV. - 1754-5048 .- 1878-0083. ; 4:6, s. 449-460
  • Journal article (peer-reviewed)abstract
    • Picea abies logs were inoculated with Resinicium bicolor, Fomitopsis pinicola or left un-inoculated and placed in an old-growth boreal forest. Mass loss and fungal community data were collected after 6 yr to test whether simplification of the fungal community via inoculation affects mass loss and fungal community development. Three techniques were used to survey communities: (1) observation of fruiting structures; (2) culturing on media; and (3) cloning and sequencing of ITS rDNA. Fruit body surveys detected the smallest number of species (18, 3.8 per log), DNA-based methods detected the most species (72, 31.7 per log), and culturing detected an intermediate number (23, 7.2 per log). Initial colonizer affected community development and inoculation with F. pinicola led to significantly greater mass loss. Relationships among fungal community composition, community richness and mass loss are complex and further work is needed to determine whether simplification of fungal communities affects carbon sequestration in forests.
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5.
  • Nordmark, Gunnel, et al. (author)
  • Association of EBF1, FAM167A(C8orf13)-BLK and TNFSF4 gene variants with primary Sjögren's syndrome
  • 2011
  • In: Genes and Immunity. - : Springer Science and Business Media LLC. - 1466-4879 .- 1476-5470. ; 12:2, s. 100-109
  • Journal article (peer-reviewed)abstract
    • We performed a candidate gene association study in 540 patients with primary Sjögren's Syndrome (SS) from Sweden (n=344) and Norway (n=196) and 532 controls (n=319 Swedish, n=213 Norwegian). A total of 1139 single-nucleotide polymorphisms (SNPs) in 84 genes were analyzed. In the meta-analysis of the Swedish and Norwegian cohorts, we found high signals for association between primary SS and SNPs in three gene loci, not previously associated with primary SS. These are the early B-cell factor 1 (EBF1) gene, P=9.9 × 10−5, OR 1.68, the family with sequence similarity 167 member A–B-lymphoid tyrosine kinase (FAM167A–BLK) locus, P=4.7 × 10−4, OR 1.37 and the tumor necrosis factor superfamily (TNFSF4=Ox40L) gene, P=7.4 × 10−4, OR 1.34. We also confirmed the association between primary SS and the IRF5/TNPO3 locus and the STAT4 gene. We found no association between the SNPs in these five genes and the presence of anti-SSA/anti-SSB antibodies. EBF1, BLK and TNFSF4 are all involved in B-cell differentiation and activation, and we conclude that polymorphisms in several susceptibility genes in the immune system contribute to the pathogenesis of primary SS.
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  • Result 1-5 of 5
Type of publication
journal article (4)
conference paper (1)
Type of content
peer-reviewed (4)
other academic/artistic (1)
Author/Editor
Jonsson, R (2)
Theander, Elke (2)
Omdal, R (2)
Wahren-Herlenius, M (2)
Nordmark, G (2)
Vasaitis, Rimvydas (2)
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Johnsen, S.J. (2)
Brun, J G (2)
Wang, C. (1)
Appel, S (1)
Söderkvist, Peter (1)
Eloranta, Maija-Leen ... (1)
Ronnblom, L. (1)
Nordmark, Gunnel (1)
Ng, W. -F (1)
Kvarnstrom, M. (1)
Bowman, S (1)
Stenlid, Jan (1)
Finlay, Roger (1)
Lundmark, Per (1)
Rönnblom, Lars (1)
Syvänen, Ann-Christi ... (1)
Eriksson, P (1)
Sjowall, C (1)
Lundmark, Anders (1)
Sjöwall, Christopher (1)
Eriksson, Per (1)
Holmström, Sara (1)
Smedby, KE (1)
Sundstrom, C (1)
Allmer, Johan (1)
Forsblad d'Elia, Hel ... (1)
Johannesson, Hanna (1)
Syvanen, A-C (1)
Kristjansdottir, Gud ... (1)
Askling, J (1)
Baecklund, Eva (1)
Baecklund, E (1)
Backlin, C (1)
Alm, Gunnar (1)
Theander, E. (1)
Vasaitis, Lilian (1)
Rosling, Anna, 1974- (1)
Clemmensen, Karina (1)
Kvarnström, M. (1)
Harboe, E (1)
Delaleu, N. (1)
Kubart, Ariana (1)
Eloranta, M. -L (1)
Kluting, Kerri L. (1)
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University
Uppsala University (3)
Lund University (2)
Karolinska Institutet (2)
Swedish University of Agricultural Sciences (2)
University of Gothenburg (1)
Stockholm University (1)
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Linköping University (1)
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Language
English (5)
Research subject (UKÄ/SCB)
Natural sciences (3)
Medical and Health Sciences (2)
Agricultural Sciences (1)

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