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Production level of tetrodotoxin in Aeromonas is associated with the copy number of a plasmid

机译:气单胞菌中河豚毒素的生产水平与质粒的拷贝数有关

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摘要

Tetrodotoxin (TTX) has been identified from taxonomically diverse organisms. Artificial synthesis of TTX has been reported, but the biosynthetic pathway of TTX remains elusive. In this study, we found TTX producing ability was associated with the copy number of plasmid pNe-1 in Aeromonas strain Ne-1 during fermentation, suggesting that at least one gene encoding a TTX-synthesis enzyme is located on this plasmid. Compared with bacterial genomes, plasmids are small and easier to screen for genes associated with TTX biosynthesis. The approximately 100 kb genome of pNe-1 was sequenced. The plasmid contains 60 complete open reading frames (orfs) of which 32 (53.3%) encode hypothetical proteins. Seven genes are related to the type IV secretion system (T4SS) and 2 genes are related to transposons, indicating that the TTX-producing bacterium Aeromonas might have the ability to transfer the TTX biosynthesis gene via the conjugation and contagion of plasmid pNe-1. In addition, we unexpectedly found that Aeromonas Ne-1 contains unknown TTX-degrading materials, indicating there is a homeostatic mechanism to maintain a stable amount of TTX in the bacterium. These results will help us to better understand TTX biosynthesis, the bacterial origin of TTX, and TTX degradation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:河豚毒素(TTX)已从分类学上多样化的生物体中鉴定出来。已经报道了TTX的人工合成,但是TTX的生物合成途径仍然难以捉摸。在这项研究中,我们发现TTX的生产能力与发酵过程中气单胞菌Ne-1中质粒pNe-1的拷贝数有关,这表明至少一个编码TTX合成酶的基因位于该质粒上。与细菌基因组相比,质粒较小,更容易筛选与TTX生物合成相关的基因。对pNe-1的约100kb基因组进行测序。该质粒包含60个完整的开放阅读框(orfs),其中32个(53.3%)编码假设的蛋白质。七个基因与IV型分泌系统(T4SS)相关,而两个基因与转座子相关,表明产生TTX的细菌Aeromonas可能具有通过质粒pNe-1的结合和感染转移TTX生物合成基因的能力。此外,我们出乎意料地发现,气单胞菌Ne-1含有未知的TTX降解材料,这表明存在一种稳态机制来维持细菌中稳定数量的TTX。这些结果将帮助我们更好地了解TTX的生物合成,TTX的细菌起源和TTX降解。 (C)2015 Elsevier Ltd.保留所有权利。

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