Biological Resource Center, National Institute of Technology and Evaluation, 2-10-49 Nishihara, Tokyo 151-0066, Japan.
DNA Res. 2012 Oct;19(5):383-94. doi: 10.1093/dnares/dss020. Epub 2012 Aug 23.
Polyphosphate accumulating organisms (PAOs) belong mostly to Proteobacteria and Actinobacteria and are quite divergent. Under aerobic conditions, they accumulate intracellular polyphosphate (polyP), while they typically synthesize polyhydroxyalkanoates (PHAs) under anaerobic conditions. Many ecological, physiological, and genomic analyses have been performed with proteobacterial PAOs, but few with actinobacterial PAOs. In this study, the whole genome sequence of an actinobacterial PAO, Microlunatus phosphovorus NM-1(T) (NBRC 101784(T)), was determined. The number of genes for polyP metabolism was greater in M. phosphovorus than in other actinobacteria; it possesses genes for four polyP kinases (ppks), two polyP-dependent glucokinases (ppgks), and three phosphate transporters (pits). In contrast, it harbours only a single ppx gene for exopolyphosphatase, although two copies of ppx are generally present in other actinobacteria. Furthermore, M. phosphovorus lacks the phaABC genes for PHA synthesis and the actP gene encoding an acetate/H(+) symporter, both of which play crucial roles in anaerobic PHA accumulation in proteobacterial PAOs. Thus, while the general features of M. phosphovorus regarding aerobic polyP accumulation are similar to those of proteobacterial PAOs, its anaerobic polyP use and PHA synthesis appear to be different.
聚磷酸盐积累菌(PAOs)主要属于变形菌门和放线菌门,且具有较大的差异。在有氧条件下,它们积累细胞内聚磷酸盐(polyP),而在厌氧条件下通常合成聚羟基烷酸酯(PHAs)。许多关于变形菌 PAOs 的生态、生理和基因组分析已经开展,但关于放线菌 PAOs 的却很少。在本研究中,我们测定了放线菌 PAO Microlunatus phosphovorus NM-1(T)(NBRC 101784(T))的全基因组序列。与其他放线菌相比,M. phosphovorus 中聚磷酸盐代谢相关的基因数量更多;它拥有四个聚磷酸盐激酶(ppks)、两个聚磷酸盐依赖型葡糖激酶(ppgks)和三个磷酸盐转运蛋白(pits)的基因。相反,它虽然一般存在于其他放线菌中,但只拥有一个用于外切多聚磷酸盐酶的 ppx 基因,而两个拷贝的 ppx 通常存在于其他放线菌中。此外,M. phosphovorus 缺乏用于 PHA 合成的 phaABC 基因和编码乙酸盐/H(+)转运体的 actP 基因,这两个基因在保护菌 PAOs 中厌氧 PHA 积累中起着至关重要的作用。因此,虽然 M. phosphovorus 关于好氧聚磷酸盐积累的一般特征与变形菌 PAOs 相似,但它的厌氧聚磷酸盐利用和 PHA 合成似乎不同。