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从温和嗜热杆菌基因组中洞察产氧光合细菌的光合作用和生理学。

Insights into heliobacterial photosynthesis and physiology from the genome of Heliobacterium modesticaldum.

机构信息

Department of Biology, MidAmerica Nazarene University, 2030 E. College Way, Olathe, KS 66062, USA.

出版信息

Photosynth Res. 2010 Jun;104(2-3):113-22. doi: 10.1007/s11120-010-9529-9. Epub 2010 Feb 4.

Abstract

The complete annotated genome sequence of Heliobacterium modesticaldum strain Ice1 provides our first glimpse into the genetic potential of the Heliobacteriaceae, a unique family of anoxygenic phototrophic bacteria. H. modesticaldum str. Ice1 is the first completely sequenced phototrophic representative of the Firmicutes, and heliobacteria are the only phototrophic members of this large bacterial phylum. The H. modesticaldum genome consists of a single 3.1-Mb circular chromosome with no plasmids. Of special interest are genomic features that lend insight to the physiology and ecology of heliobacteria, including the genetic inventory of the photosynthesis gene cluster. Genes involved in transport, photosynthesis, and central intermediary metabolism are described and catalogued. The obligately heterotrophic metabolism of heliobacteria is a key feature of the physiology and evolution of these phototrophs. The conspicuous absence of recognizable genes encoding the enzyme ATP-citrate lyase prevents autotrophic growth via the reverse citric acid cycle in heliobacteria, thus being a distinguishing differential characteristic between heliobacteria and green sulfur bacteria. The identities of electron carriers that enable energy conservation by cyclic light-driven electron transfer remain in question.

摘要

中度嗜热杆菌 Ice1 全注释基因组序列为我们首次揭示了厌氧光合细菌独特的噬热菌科的遗传潜力。中度嗜热杆菌 str. Ice1 是第一个被完全测序的产氧型厚壁菌门代表,而噬热菌是该大型细菌门中唯一的产氧光合成员。该中度嗜热杆菌基因组由一个无质粒的 3.1-Mb 环状染色体组成。特别值得关注的是基因组特征,这些特征深入了解了噬热菌的生理学和生态学,包括光合作用基因簇的遗传库存。描述和编目了与运输、光合作用和中心中间代谢相关的基因。噬热菌的专性异养代谢是这些光合生物生理学和进化的一个关键特征。缺乏可识别的编码 ATP-柠檬酸裂合酶的基因,这阻止了噬热菌通过柠檬酸循环的逆向反应进行自养生长,因此这是噬热菌和绿硫细菌之间的一个显著区别特征。能够通过循环光驱动电子转移进行能量守恒的电子载体的身份仍然存在疑问。

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