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    AuthorAlzahrani, Majed A. (1)
    Aranda, Manuel (1)
    Baumgarten, Sebastian (1)Berumen, Michael L. (1)Foret, Sylvain (1)View MoreDepartmentBiological and Environmental Sciences and Engineering (BESE) Division (1)Bioscience Program (1)Center for Desert Agriculture (1)Computational Bioscience Research Center (CBRC) (1)Computer Science Program (1)View MoreJournalBMC Genomics (1)KAUST Acknowledged Support Unit
    Core Labs (1)
    PublisherSpringer Nature (1)SubjectHologenome (1)Host (1)Innate immune system (1)Microbial symbionts (1)Sponge (1)View MoreTypeArticle (1)Year (Issue Date)2016 (1)Item AvailabilityOpen Access (1)

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    Hologenome analysis of two marine sponges with different microbiomes

    Ryu, Tae Woo; Seridi, Loqmane; Moitinho-Silva, Lucas; Oates, Matthew; Liew, Yi Jin; Mavromatis, Charalampos Harris; Wang, Xiaolei; Haywood, Annika; Lafi, Feras Fawzi; Kupresanin, Marija; Sougrat, Rachid; Alzahrani, Majed A.; Giles, Emily; Ghosheh, Yanal; Schunter, Celia Marei; Baumgarten, Sebastian; Berumen, Michael L.; Gao, Xin; Aranda, Manuel; Foret, Sylvain; Gough, Julian; Voolstra, Christian R.; Hentschel, Ute; Ravasi, Timothy (BMC Genomics, Springer Nature, 2016-02-29) [Article]
    Background Sponges (Porifera) harbor distinct microbial consortia within their mesohyl interior. We herein analysed the hologenomes of Stylissa carteri and Xestospongia testudinaria, which notably differ in their microbiome content. Results Our analysis revealed that S. carteri has an expanded repertoire of immunological domains, specifically Scavenger Receptor Cysteine-Rich (SRCR)-like domains, compared to X. testudinaria. On the microbial side, metatranscriptome analyses revealed an overrepresentation of potential symbiosis-related domains in X. testudinaria. Conclusions Our findings provide genomic insights into the molecular mechanisms underlying host-symbiont coevolution and may serve as a roadmap for future hologenome analyses.
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