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本文引用的文献

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Global oceanic production of nitrous oxide.全球海洋一氧化二氮的产生。
Philos Trans R Soc Lond B Biol Sci. 2012 May 5;367(1593):1245-55. doi: 10.1098/rstb.2011.0360.
2
The genome sequence of Polymorphum gilvum SL003B-26A1(T) reveals its genetic basis for crude oil degradation and adaptation to the saline soil.多形汉逊酵母 SL003B-26A1(T) 的全基因组序列揭示了其原油降解和适应盐碱土壤的遗传基础。
PLoS One. 2012;7(2):e31261. doi: 10.1371/journal.pone.0031261. Epub 2012 Feb 16.
3
Who is in there? Exploration of endophytic bacteria within the siphonous green seaweed Bryopsis (Bryopsidales, Chlorophyta).谁在里面?管藻目绿藻泡叶藻(管藻目,绿藻门)内生细菌的探索。
PLoS One. 2011;6(10):e26458. doi: 10.1371/journal.pone.0026458. Epub 2011 Oct 18.
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MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods.MEGA5:用于最大似然法、进化距离法和最大简约法的分子进化遗传学分析。
Mol Biol Evol. 2011 Oct;28(10):2731-9. doi: 10.1093/molbev/msr121. Epub 2011 May 4.
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Warming up, turning sour, losing breath: ocean biogeochemistry under global change.变暖、酸化、缺氧:全球变化下的海洋生物地球化学。
Philos Trans A Math Phys Eng Sci. 2011 May 28;369(1943):1980-96. doi: 10.1098/rsta.2011.0003.
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Microbial nitrogen cycling processes in oxygen minimum zones.氧亏区中的微生物氮循环过程。
Ann Rev Mar Sci. 2011;3:317-45. doi: 10.1146/annurev-marine-120709-142814.
7
Microbial metatranscriptomics in a permanent marine oxygen minimum zone.海洋永久缺氧区中的微生物宏转录组学
Environ Microbiol. 2012 Jan;14(1):23-40. doi: 10.1111/j.1462-2920.2010.02400.x. Epub 2011 Jan 7.
8
Global declines in oceanic nitrification rates as a consequence of ocean acidification.海洋酸化导致全球海洋硝化速率下降。
Proc Natl Acad Sci U S A. 2011 Jan 4;108(1):208-13. doi: 10.1073/pnas.1011053108. Epub 2010 Dec 20.
9
Ocean deoxygenation in a warming world.全球变暖背景下的海洋脱氧
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10
Isolation of oligotrophic denitrifiers carrying previously uncharacterized functional gene sequences.分离携带先前未表征功能基因序列的寡营养型反硝化菌。
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在阿拉伯海的好氧和亚氧水中表达一氧化二氮还原酶基因 nosZ 的反硝化 α 变形菌。

Denitrifying alphaproteobacteria from the Arabian Sea that express nosZ, the gene encoding nitrous oxide reductase, in oxic and suboxic waters.

机构信息

Biological and Environmental Sciences, School of Natural Sciences, University of Stirling, Stirling, United Kingdom.

出版信息

Appl Environ Microbiol. 2013 Apr;79(8):2670-81. doi: 10.1128/AEM.03705-12. Epub 2013 Feb 8.

DOI:10.1128/AEM.03705-12
PMID:23396348
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3623181/
Abstract

Marine ecosystems are significant sources of the powerful greenhouse gas nitrous oxide (N2O). A by-product of nitrification and an intermediate in the denitrification pathway, N2O is formed primarily in oxygen-deficient waters and sediments. We describe the isolation of a group of alphaproteobacteria from the suboxic waters of the Arabian Sea that are phylogenetically affiliated with Labrenzia spp. and other denitrifiers. Quantitative PCR assays revealed that these organisms were very broadly distributed in this semienclosed ocean basin. Their biogeographical range extended from the productive, upwelling region off the Omani shelf to the clear, oligotrophic waters that are found much further south and also included the mesotrophic waters overlying the oxygen minimum zone (OMZ) in the northeastern sector of the Arabian Sea. These organisms actively expressed NosZ (N2O reductase, the terminal step in the denitrification pathway) within the OMZ, an established region of pelagic denitrification. They were found in greatest numbers outside the OMZ, however, and nosZ mRNAs were also readily detected near the base of the upper mixed layer in nutrient-poor, oxic regions. Our findings provide firm molecular evidence of a potential sink for N2O within well-ventilated, oceanic surface waters in this biogeochemically important region. We show that the Labrenzia-like denitrifiers and their close relatives are habitual colonizers of the pseudobenthic environment provided by Trichodesmium spp. We develop the conjecture that the O2-depleted microzones that occur within the colonies of these filamentous, diazotrophic cyanobacteria might provide unexpected niches for the reduction of nitrogen oxides in tropical and subtropical surface waters.

摘要

海洋生态系统是强大的温室气体氧化亚氮 (N2O) 的重要来源。N2O 是硝化作用的副产物,也是反硝化途径中的一种中间产物,主要在缺氧水域和沉积物中形成。我们描述了从阿拉伯海缺氧水域中分离出一群属于α变形菌的细菌,它们与 Labrenzia spp. 和其他反硝化菌在系统发育上有关联。定量 PCR 检测表明,这些生物体在这个半封闭的海洋盆地中分布非常广泛。它们的生物地理范围从阿曼大陆架的生产力上升流区域延伸到南部的清澈贫营养水域,还包括阿拉伯海东北部含氧最小区域(OMZ)上方的中营养水域。这些生物体在 OMZ 内积极表达 NosZ(N2O 还原酶,反硝化途径的最后一步),这是一个已经建立的浮游反硝化区域。然而,它们在 OMZ 之外的数量最多,并且在营养贫乏、含氧的区域的上混合层底部附近也很容易检测到 nosZ mRNAs。我们的发现为在这个具有重要生物地球化学意义的区域中,通风良好的海洋表面水中存在 N2O 潜在汇提供了确凿的分子证据。我们表明,类似于 Labrenzia 的反硝化菌及其近亲是 Trichodesmium spp. 提供的拟海底环境的习惯性殖民者。我们推测,这些丝状固氮蓝藻菌体内的 O2 耗尽微区可能为热带和亚热带表面水中氮氧化物的还原提供了意想不到的小生境。