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Journal Abstract Search


1384 related items for PubMed ID: 31492669

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  • 3. Endosymbionts of Metazoans Dwelling in the PACManus Hydrothermal Vent: Diversity and Potential Adaptive Features Revealed by Genome Analysis.
    Li L, Wang M, Li L, Du Z, Sun Y, Wang X, Zhang X, Li C.
    Appl Environ Microbiol; 2020 Oct 15; 86(21):. PubMed ID: 32859597
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  • 7. Metagenomic Analysis of Genes Encoding Nutrient Cycling Pathways in the Microbiota of Deep-Sea and Shallow-Water Sponges.
    Li Z, Wang Y, Li J, Liu F, He L, He Y, Wang S.
    Mar Biotechnol (NY); 2016 Dec 15; 18(6):659-671. PubMed ID: 27819120
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  • 11. Evidence for hydrogen oxidation and metabolic plasticity in widespread deep-sea sulfur-oxidizing bacteria.
    Anantharaman K, Breier JA, Sheik CS, Dick GJ.
    Proc Natl Acad Sci U S A; 2013 Jan 02; 110(1):330-5. PubMed ID: 23263870
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  • 12. Global patterns of diversity and metabolism of microbial communities in deep-sea hydrothermal vent deposits.
    Zhou Z, St John E, Anantharaman K, Reysenbach AL.
    Microbiome; 2022 Dec 27; 10(1):241. PubMed ID: 36572924
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  • 13. The uptake and excretion of partially oxidized sulfur expands the repertoire of energy resources metabolized by hydrothermal vent symbioses.
    Beinart RA, Gartman A, Sanders JG, Luther GW, Girguis PR.
    Proc Biol Sci; 2015 May 07; 282(1806):20142811. PubMed ID: 25876848
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  • 17. SoxY gene family expansion underpins adaptation to diverse hosts and environments in symbiotic sulfide oxidizers.
    Sudo M, Osvatic J, Taylor JD, Dufour SC, Prathep A, Wilkins LGE, Rattei T, Yuen B, Petersen JM.
    mSystems; 2024 Jun 18; 9(6):e0113523. PubMed ID: 38747602
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  • 19. Comparative metagenomics of microbial communities inhabiting deep-sea hydrothermal vent chimneys with contrasting chemistries.
    Xie W, Wang F, Guo L, Chen Z, Sievert SM, Meng J, Huang G, Li Y, Yan Q, Wu S, Wang X, Chen S, He G, Xiao X, Xu A.
    ISME J; 2011 Mar 18; 5(3):414-26. PubMed ID: 20927138
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