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双态柄细菌海王星生丝微菌和新月柄杆菌之间存在密切关系的比较基因组学证据。

Comparative genomic evidence for a close relationship between the dimorphic prosthecate bacteria Hyphomonas neptunium and Caulobacter crescentus.

作者信息

Badger Jonathan H, Hoover Timothy R, Brun Yves V, Weiner Ronald M, Laub Michael T, Alexandre Gladys, Mrázek Jan, Ren Qinghu, Paulsen Ian T, Nelson Karen E, Khouri Hoda M, Radune Diana, Sosa Julia, Dodson Robert J, Sullivan Steven A, Rosovitz M J, Madupu Ramana, Brinkac Lauren M, Durkin A Scott, Daugherty Sean C, Kothari Sagar P, Giglio Michelle Gwinn, Zhou Liwei, Haft Daniel H, Selengut Jeremy D, Davidsen Tanja M, Yang Qi, Zafar Nikhat, Ward Naomi L

机构信息

The Institute for Genomic Research, 9712 Medical Center Drive, Rockville, MD 20850, USA.

出版信息

J Bacteriol. 2006 Oct;188(19):6841-50. doi: 10.1128/JB.00111-06.

Abstract

The dimorphic prosthecate bacteria (DPB) are alpha-proteobacteria that reproduce in an asymmetric manner rather than by binary fission and are of interest as simple models of development. Prior to this work, the only member of this group for which genome sequence was available was the model freshwater organism Caulobacter crescentus. Here we describe the genome sequence of Hyphomonas neptunium, a marine member of the DPB that differs from C. crescentus in that H. neptunium uses its stalk as a reproductive structure. Genome analysis indicates that this organism shares more genes with C. crescentus than it does with Silicibacter pomeroyi (a closer relative according to 16S rRNA phylogeny), that it relies upon a heterotrophic strategy utilizing a wide range of substrates, that its cell cycle is likely to be regulated in a similar manner to that of C. crescentus, and that the outer membrane complements of H. neptunium and C. crescentus are remarkably similar. H. neptunium swarmer cells are highly motile via a single polar flagellum. With the exception of cheY and cheR, genes required for chemotaxis were absent in the H. neptunium genome. Consistent with this observation, H. neptunium swarmer cells did not respond to any chemotactic stimuli that were tested, which suggests that H. neptunium motility is a random dispersal mechanism for swarmer cells rather than a stimulus-controlled navigation system for locating specific environments. In addition to providing insights into bacterial development, the H. neptunium genome will provide an important resource for the study of other interesting biological processes including chromosome segregation, polar growth, and cell aging.

摘要

双态柄细菌(DPB)属于α-变形菌纲,它们通过不对称方式而非二分分裂进行繁殖,作为简单的发育模型备受关注。在本研究之前,该类群中唯一有基因组序列的成员是典型的淡水生物新月柄杆菌。在此,我们描述了海王星生丝杆菌的基因组序列,它是DPB的海洋成员,与新月柄杆菌的不同之处在于,海王星生丝杆菌利用其柄作为繁殖结构。基因组分析表明,与波默罗伊硅杆菌(根据16S rRNA系统发育关系,它是更近的亲缘物种)相比,该生物与新月柄杆菌共享的基因更多;它依赖异养策略,利用多种底物;其细胞周期可能以与新月柄杆菌相似的方式调控;海王星生丝杆菌和新月柄杆菌的外膜成分非常相似。海王星生丝杆菌的游动细胞通过单一极鞭毛具有高度运动性。除了cheY和cheR外,海王星生丝杆菌基因组中不存在趋化作用所需的基因。与这一观察结果一致,海王星生丝杆菌的游动细胞对所测试的任何趋化刺激均无反应,这表明海王星生丝杆菌的运动性是游动细胞的随机扩散机制,而非用于定位特定环境的刺激控制导航系统。除了为细菌发育提供见解外,海王星生丝杆菌基因组还将为研究包括染色体分离、极性生长和细胞衰老在内的其他有趣生物学过程提供重要资源。

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