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与海洋缺氧和氮流失有关的SAR11细菌。

SAR11 bacteria linked to ocean anoxia and nitrogen loss.

作者信息

Tsementzi Despina, Wu Jieying, Deutsch Samuel, Nath Sangeeta, Rodriguez-R Luis M, Burns Andrew S, Ranjan Piyush, Sarode Neha, Malmstrom Rex R, Padilla Cory C, Stone Benjamin K, Bristow Laura A, Larsen Morten, Glass Jennifer B, Thamdrup Bo, Woyke Tanja, Konstantinidis Konstantinos T, Stewart Frank J

出版信息

Nature. 2016 Aug 11;536(7615):179-83. doi: 10.1038/nature19068. Epub 2016 Aug 3.

Abstract

Bacteria of the SAR11 clade constitute up to one half of all microbial cells in the oxygen-rich surface ocean. SAR11 bacteria are also abundant in oxygen minimum zones (OMZs), where oxygen falls below detection and anaerobic microbes have vital roles in converting bioavailable nitrogen to N2 gas. Anaerobic metabolism has not yet been observed in SAR11, and it remains unknown how these bacteria contribute to OMZ biogeochemical cycling. Here, genomic analysis of single cells from the world's largest OMZ revealed previously uncharacterized SAR11 lineages with adaptations for life without oxygen, including genes for respiratory nitrate reductases (Nar). SAR11 nar genes were experimentally verified to encode proteins catalysing the nitrite-producing first step of denitrification and constituted ~40% of OMZ nar transcripts, with transcription peaking in the anoxic zone of maximum nitrate reduction activity. These results link SAR11 to pathways of ocean nitrogen loss, redefining the ecological niche of Earth's most abundant organismal group.

摘要

SAR11进化枝的细菌在富氧的海洋表层中占所有微生物细胞的一半。SAR11细菌在海洋低氧区(OMZ)也很丰富,在那里氧气含量低于检测水平,厌氧微生物在将生物可利用的氮转化为N2气体的过程中起着至关重要的作用。尚未在SAR11中观察到厌氧代谢,这些细菌如何促进海洋低氧区的生物地球化学循环仍不清楚。在这里,对来自世界上最大海洋低氧区的单细胞进行基因组分析,发现了以前未被表征的SAR11谱系,它们具有适应无氧生活的特性,包括呼吸硝酸盐还原酶(Nar)基因。实验证明,SAR11 nar基因编码催化反硝化作用产生亚硝酸盐第一步的蛋白质,占海洋低氧区nar转录本的40%左右,转录在硝酸盐还原活性最高的缺氧区达到峰值。这些结果将SAR11与海洋氮损失途径联系起来,重新定义了地球上最丰富的生物群体的生态位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f41a/4990128/6aaeedb7b407/emss-69055-f004.jpg

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