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Microbial diversity and stratification of South Pacific abyssal marine sediments

机译:南太平洋深海海洋沉积物的微生物多样性和分层

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Abyssal marine sediments cover a large proportion of the ocean floor, but linkages between their microbial community structure and redox stratification have remained poorly constrained. This study compares the downcore gradients in microbial community composition to porewater oxygen and nitrate concentration profiles in an abyssal marine sediment column in the South Pacific Ocean. Archaeal 16S rRNA clone libraries showed a stratified archaeal community that changed from Marine Group I Archaea in the aerobic and nitrate-reducing upper sediment column towards deeply branching, uncultured crenarchaeotal and euryarchaeotal lineages in nitrate-depleted, anaerobic sediment horizons. Bacterial 16S rRNA clone libraries revealed a similar shift on the phylum and subphylum level within the bacteria, from a complex community of Alpha-, Gamma- and Deltaproteobacteria, Actinobacteria and Gemmatimonadetes in oxic surface sediments towards uncultured Chloroflexi and Planctomycetes in the anaerobic sediment column. The distinct stratification of largely uncultured bacterial and archaeal groups within the oxic and nitrate-reducing marine sediment column provides initial constraints for their microbial habitat preferences.
机译:深海海洋沉积物覆盖了很大一部分海床,但其微生物群落结构与氧化还原分层之间的联系仍然受到制约。这项研究比较了南太平洋深海海洋沉积物中微生物群落组成的下游梯度与孔隙水中的氧气和硝酸盐浓度分布。古细菌16S rRNA克隆文库显示了一个分层的古细菌群落,从需氧量和减少硝酸盐的上部沉积物柱中的海洋I类古细菌转变为硝酸盐枯竭,无氧沉积物视野中的深分支,未培养的月相和euryarchaeotal世系。细菌16S rRNA克隆文库揭示了细菌内门和亚门水平的相似变化,从含氧表面沉积物中的α-,γ-和Delta变形杆菌,放线菌和芽孢杆菌的复杂群落向厌氧沉积物中未培养的挠性弯曲杆菌和浮萍菌。在减少氧气和硝酸盐的海洋沉积物中,主要是未培养的细菌和古细菌群的明显分层,为它们的微生物生境选择提供了初步的限制。

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