Community transcriptomic assembly reveals microbes that contribute to deep-sea carbon and nitrogen cycling

被引:101
作者
Baker, Brett J. [1 ]
Sheik, Cody S. [1 ]
Taylor, Chris A. [2 ]
Jain, Sunit [1 ]
Bhasi, Ashwini [2 ]
Cavalcoli, James D. [2 ]
Dick, Gregory J. [1 ,2 ,3 ]
机构
[1] Univ Michigan, Dept Earth & Environm Sci, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Ctr Computat Med & Bioinformat, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Ann Arbor, MI 48109 USA
基金
美国国家科学基金会;
关键词
Archaea; deep sea; transcriptomics; nitrification; Alteromonas; Nitrospirae; NITRITE-OXIDIZING BACTERIUM; ARCHAEAL; NITRIFICATION; DIVERSITY; GENES; OCEAN; EXPRESSION; PHYSIOLOGY; EVOLUTION; OXIDATION;
D O I
10.1038/ismej.2013.85
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The deep ocean is an important component of global biogeochemical cycles because it contains one of the largest pools of reactive carbon and nitrogen on earth. However, the microbial communities that drive deep-sea geochemistry are vastly unexplored. Metatranscriptomics offers new windows into these communities, but it has been hampered by reliance on genome databases for interpretation. We reconstructed the transcriptomes of microbial populations from Guaymas Basin, in the deep Gulf of California, through shotgun sequencing and de novo assembly of total community RNA. Many of the resulting messenger RNA (mRNA) contiguous sequences contain multiple genes, reflecting co-transcription of operons, including those from dominant members. Also prevalent were transcripts with only limited representation (2.8 times coverage) in a corresponding metagenome, including a considerable portion (1.2Mb total assembled mRNA sequence) with similarity (96%) to a marine heterotroph, Alteromonas macleodii. This Alteromonas and euryarchaeal marine group II populations displayed abundant transcripts from amino-acid transporters, suggesting recycling of organic carbon and nitrogen from amino acids. Also among the most abundant mRNAs were catalytic subunits of the nitrite oxidoreductase complex and electron transfer components involved in nitrite oxidation. These and other novel genes are related to novel Nitrospirae and have limited representation in accompanying metagenomic data. High throughput sequencing of 16S ribosomal RNA (rRNA) genes and rRNA read counts confirmed that Nitrospirae are minor yet widespread members of deep-sea communities. These results implicate a novel bacterial group in deep-sea nitrite oxidation, the second step of nitrification. This study highlights metatranscriptomic assembly as a valuable approach to study microbial communities.
引用
收藏
页码:1962 / 1973
页数:12
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