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本文引用的文献

1
A supervised learning approach for taxonomic classification of core-photosystem-II genes and transcripts in the marine environment.一种用于海洋环境中核心光系统II基因和转录本分类学分类的监督学习方法。
BMC Genomics. 2009 May 16;10:229. doi: 10.1186/1471-2164-10-229.
2
Viruses manipulate the marine environment.病毒操控着海洋环境。
Nature. 2009 May 14;459(7244):207-12. doi: 10.1038/nature08060.
3
Evaluation of next generation sequencing platforms for population targeted sequencing studies.用于群体靶向测序研究的新一代测序平台评估
Genome Biol. 2009;10(3):R32. doi: 10.1186/gb-2009-10-3-r32. Epub 2009 Mar 27.
4
Globally distributed uncultivated oceanic N2-fixing cyanobacteria lack oxygenic photosystem II.全球分布的未培养海洋固氮蓝细菌缺乏产氧光合系统II。
Science. 2008 Nov 14;322(5904):1110-2. doi: 10.1126/science.1165340.
5
The development and impact of 454 sequencing.454测序技术的发展与影响。
Nat Biotechnol. 2008 Oct;26(10):1117-24. doi: 10.1038/nbt1485.
6
Efficient phage-mediated pigment biosynthesis in oceanic cyanobacteria.噬菌体介导海洋蓝细菌高效色素生物合成
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7
Functional metagenomic profiling of nine biomes.九个生物群落的功能宏基因组分析
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8
Microbial ecology of four coral atolls in the Northern Line Islands.北莱恩群岛四个珊瑚环礁的微生物生态学
PLoS One. 2008 Feb 27;3(2):e1584. doi: 10.1371/journal.pone.0001584.
9
Alternative photosynthetic electron flow to oxygen in marine Synechococcus.海洋聚球藻中向氧气的交替光合电子流。
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10
The tryptophan pathway genes of the Sargasso Sea metagenome: new operon structures and the prevalence of non-operon organization.马尾藻海宏基因组色氨酸代谢途径基因:新的操纵子结构和非操纵子组织的普遍性。
Genome Biol. 2008 Jan 27;9(1):R20. doi: 10.1186/gb-2008-9-1-r20.

光系统I基因盒存在于海洋病毒基因组中。

Photosystem I gene cassettes are present in marine virus genomes.

作者信息

Sharon Itai, Alperovitch Ariella, Rohwer Forest, Haynes Matthew, Glaser Fabian, Atamna-Ismaeel Nof, Pinter Ron Y, Partensky Frédéric, Koonin Eugene V, Wolf Yuri I, Nelson Nathan, Béjà Oded

机构信息

Faculty of Biology, Technion - Israel Institute of Technology, Haifa 32000, Israel.

Faculty of Computer Science, Technion - Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Nature. 2009 Sep 10;461(7261):258-262. doi: 10.1038/nature08284. Epub 2009 Aug 26.

DOI:10.1038/nature08284
PMID:19710652
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4605144/
Abstract

Cyanobacteria of the Synechococcus and Prochlorococcus genera are important contributors to photosynthetic productivity in the open oceans. Recently, core photosystem II (PSII) genes were identified in cyanophages and proposed to function in photosynthesis and in increasing viral fitness by supplementing the host production of these proteins. Here we show evidence for the presence of photosystem I (PSI) genes in the genomes of viruses that infect these marine cyanobacteria, using pre-existing metagenomic data from the global ocean sampling expedition as well as from viral biomes. The seven cyanobacterial core PSI genes identified in this study, psaA, B, C, D, E, K and a unique J and F fusion, form a cluster in cyanophage genomes, suggestive of selection for a distinct function in the virus life cycle. The existence of this PSI cluster was confirmed with overlapping and long polymerase chain reaction on environmental DNA from the Northern Line Islands. Potentially, the seven proteins encoded by the viral genes are sufficient to form an intact monomeric PSI complex. Projection of viral predicted peptides on the cyanobacterial PSI crystal structure suggested that the viral-PSI components might provide a unique way of funnelling reducing power from respiratory and other electron transfer chains to the PSI.

摘要

聚球藻属和原绿球藻属的蓝细菌是开放海洋光合生产力的重要贡献者。最近,在蓝藻噬菌体中鉴定出了核心光系统II(PSII)基因,并提出这些基因通过补充宿主对这些蛋白质的产生,在光合作用和提高病毒适应性方面发挥作用。在这里,我们利用全球海洋采样考察以及病毒群落中已有的宏基因组数据,证明了感染这些海洋蓝细菌的病毒基因组中存在光系统I(PSI)基因。在本研究中鉴定出的七个蓝细菌核心PSI基因,即psaA、B、C、D、E、K以及一个独特的J和F融合基因,在蓝藻噬菌体基因组中形成一个簇,这表明在病毒生命周期中存在对独特功能的选择。通过对来自北莱恩群岛环境DNA进行重叠和长聚合酶链反应,证实了这个PSI簇的存在。病毒基因编码的这七种蛋白质可能足以形成一个完整的单体PSI复合体。将病毒预测肽投射到蓝细菌PSI晶体结构上表明,病毒PSI组分可能提供一种独特的方式,将呼吸和其他电子传递链中的还原力汇集到PSI。

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