Microbial community structure in the North Pacific ocean

被引:0
|
作者
Mark V Brown
Gayle K Philip
John A Bunge
Matthew C Smith
Andrew Bissett
Federico M Lauro
Jed A Fuhrman
Stuart P Donachie
机构
[1] NASA Astrobiology Institute,Department of Statistical Science
[2] University of Hawaii,Department of Marine Sciences
[3] Cornell University,Department of Biotechnology and Biomolecular Science
[4] University of Puerto Rico,Department of Biological Sciences
[5] Max Planck Institute for Marine Microbiology,Department of Microbiology
[6] University of New South Wales,undefined
[7] University of Southern California,undefined
[8] University of Hawaii,undefined
来源
The ISME Journal | 2009年 / 3卷
关键词
marine; pyrosequencing; diversity; bacteria; archaea; eukaryotes;
D O I
暂无
中图分类号
学科分类号
摘要
We report a ribosomal tag pyrosequencing study of the phylogenetic diversity of Archaea, Bacteria and Eucarya over a depth profile at the Hawaii Ocean Time-Series Station, ALOHA. The V9 region of the SSU rRNA gene was amplified from samples representing the epi- (10 m), meso- (800 m) and bathy- (4400 m) pelagia. The primers used are expected to amplify representatives of ∼80% of known phylogenetic diversity across all three domains. Comparisons of unique sequences revealed a remarkably low degree of overlap between communities at each depth. The 444 147 sequence tags analyzed represented 62 975 unique sequences. Of these, 3707 (5.9%) occurred at two depths, and only 298 (0.5%) were observed at all three depths. At this level of phylogenetic resolution, Bacteria diversity decreased with depth but was still equivalent to that reported elsewhere for different soil types. Archaea diversity was highest in the two deeper samples. Eucarya observations and richness estimates are almost one order of magnitude higher than any previous marine microbial Eucarya richness estimates. The associations of many Eucarya sequences with putative parasitic organisms may have significant impacts on our understanding of the mechanisms controlling host population density and diversity, and point to a more significant role for microbial Eucarya in carbon flux through the microbial loop. We posit that the majority of sequences detected from the deep sea that have closest matches to sequences from non-pelagic sources are indeed native to the marine environment, and are possibly responsible for key metabolic processes in global biogeochemical cycles.
引用
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页码:1374 / 1386
页数:12
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