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PUBMED FOR HANDHELDS

Journal Abstract Search


200 related items for PubMed ID: 15912948

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  • 3. Levels of specificity of Xylaria species associated with fungus-growing termites: a phylogenetic approach.
    Visser AA, Ros VI, De Beer ZW, Debets AJ, Hartog E, Kuyper TW, Laessøe T, Slippers B, Aanen DK.
    Mol Ecol; 2009 Feb; 18(3):553-67. PubMed ID: 19161474
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  • 6. Diversity of Termitomyces associated with fungus-farming termites assessed by cultural and culture-independent methods.
    Makonde HM, Boga HI, Osiemo Z, Mwirichia R, Stielow JB, Göker M, Klenk HP.
    PLoS One; 2013 Feb; 8(2):e56464. PubMed ID: 23437139
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  • 7. Farming termites determine the genetic population structure of Termitomyces fungal symbionts.
    Nobre T, Fernandes C, Boomsma JJ, Korb J, Aanen DK.
    Mol Ecol; 2011 May; 20(9):2023-33. PubMed ID: 21410808
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  • 8. Termite mound architecture regulates nest temperature and correlates with species identities of symbiotic fungi.
    Vesala R, Harjuntausta A, Hakkarainen A, Rönnholm P, Pellikka P, Rikkinen J.
    PeerJ; 2019 May; 6():e6237. PubMed ID: 30671290
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  • 9. Comparative Genomic and Metabolomic Analysis of Termitomyces Species Provides Insights into the Terpenome of the Fungal Cultivar and the Characteristic Odor of the Fungus Garden of Macrotermes natalensis Termites.
    Kreuzenbeck NB, Seibel E, Schwitalla JW, Fricke J, Conlon BH, Schmidt S, Hammerbacher A, Köllner TG, Poulsen M, Hoffmeister D, Beemelmanns C.
    mSystems; 2022 Feb 22; 7(1):e0121421. PubMed ID: 35014870
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  • 10. The fungus-growing termite Macrotermes natalensis harbors bacillaene-producing Bacillus sp. that inhibit potentially antagonistic fungi.
    Um S, Fraimout A, Sapountzis P, Oh DC, Poulsen M.
    Sci Rep; 2013 Nov 19; 3():3250. PubMed ID: 24248063
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  • 11. Bacterial communities in termite fungus combs are comprised of consistent gut deposits and contributions from the environment.
    Otani S, Hansen LH, Sørensen SJ, Poulsen M.
    Microb Ecol; 2016 Jan 19; 71(1):207-20. PubMed ID: 26518432
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  • 13. Disease-free monoculture farming by fungus-growing termites.
    Otani S, Challinor VL, Kreuzenbeck NB, Kildgaard S, Krath Christensen S, Larsen LLM, Aanen DK, Rasmussen SA, Beemelmanns C, Poulsen M.
    Sci Rep; 2019 Jun 19; 9(1):8819. PubMed ID: 31217550
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  • 14. Symbiotic fungi produce laccases potentially involved in phenol degradation in fungus combs of fungus-growing termites in Thailand.
    Taprab Y, Johjima T, Maeda Y, Moriya S, Trakulnaleamsai S, Noparatnaraporn N, Ohkuma M, Kudo T.
    Appl Environ Microbiol; 2005 Dec 19; 71(12):7696-704. PubMed ID: 16332742
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  • 16. Complementary symbiont contributions to plant decomposition in a fungus-farming termite.
    Poulsen M, Hu H, Li C, Chen Z, Xu L, Otani S, Nygaard S, Nobre T, Klaubauf S, Schindler PM, Hauser F, Pan H, Yang Z, Sonnenberg AS, de Beer ZW, Zhang Y, Wingfield MJ, Grimmelikhuijzen CJ, de Vries RP, Korb J, Aanen DK, Wang J, Boomsma JJ, Zhang G.
    Proc Natl Acad Sci U S A; 2014 Oct 07; 111(40):14500-5. PubMed ID: 25246537
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  • 17. The scope for nuclear selection within Termitomyces fungi associated with fungus-growing termites is limited.
    Nobre T, Koopmanschap B, Baars JJ, Sonnenberg AS, Aanen DK.
    BMC Evol Biol; 2014 Jun 05; 14():121. PubMed ID: 24902958
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  • 20. Identifying the core microbial community in the gut of fungus-growing termites.
    Otani S, Mikaelyan A, Nobre T, Hansen LH, Koné NA, Sørensen SJ, Aanen DK, Boomsma JJ, Brune A, Poulsen M.
    Mol Ecol; 2014 Sep 05; 23(18):4631-44. PubMed ID: 25066007
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