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病毒光系统I psaA基因的多样性。

Diversity of viral photosystem-I psaA genes.

作者信息

Hevroni Gur, Enav Hagay, Rohwer Forest, Béjà Oded

机构信息

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

Department of Biology, San Diego State University, San Diego, CA, USA.

出版信息

ISME J. 2015 Aug;9(8):1892-8. doi: 10.1038/ismej.2014.244. Epub 2014 Dec 23.

Abstract

Marine photosynthesis is one of the major contributors to the global carbon cycle and the world's oxygen supply. This process is largely driven by cyanobacteria, namely Synechococcus and Prochlorococcus. Genes encoding photosystem-II (PSII) reaction center proteins are found in many cyanophage genomes, and are expressed during the infection of their hosts. On the basis of metagenomics, cyanophage photosystem-I (PSI) gene cassettes were recently discovered with two gene arrangements psaJF→C→A→B→K→E→D and psaD→C→A→B. It was suggested that the horizontal transfer of PSII and PSI genes is increasing phage fitness. To better understand their diversity, we designed degenerate primers to cover a wide diversity of organisms, and using PCR we targeted the psaC→A arrangement, which is unique to cyanophages cassettes. We examined viral concentrates from four islands in the Pacific Ocean and found samples containing the psaC→A arrangement. Analyses of the amplified viral psaA gene revealed six subgroups varying in their level of similarity and %G+C content, suggesting that the diversity of cyanophage PSI genes is greater than originally thought.

摘要

海洋光合作用是全球碳循环和世界氧气供应的主要贡献者之一。这一过程主要由蓝细菌驱动,即聚球藻属和原绿球藻属。编码光系统II(PSII)反应中心蛋白的基因存在于许多噬藻体基因组中,并在感染宿主期间表达。基于宏基因组学,最近发现了噬藻体光系统I(PSI)基因盒,有两种基因排列方式:psaJF→C→A→B→K→E→D和psaD→C→A→B。有人认为,PSII和PSI基因的水平转移正在提高噬菌体的适应性。为了更好地了解它们的多样性,我们设计了简并引物以覆盖多种生物,并通过PCR靶向psaC→A排列,这是噬藻体基因盒所特有的。我们检测了来自太平洋四个岛屿的病毒浓缩物,发现了含有psaC→A排列的样本。对扩增的病毒psaA基因的分析揭示了六个亚组,它们在相似性水平和%G+C含量上有所不同,这表明噬藻体PSI基因的多样性比原先认为的更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4599/4511924/fb49f6360a60/ismej2014244f1.jpg

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