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活体转座子标签在非异形固氮蓝藻 Leptolyngbya boryana 中的应用。

In vivo transposon tagging in the nonheterocystous nitrogen-fixing cyanobacterium Leptolyngbya boryana.

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Japan.

Center for Gene Research, Nagoya University, Japan.

出版信息

FEBS Lett. 2018 May;592(10):1634-1642. doi: 10.1002/1873-3468.13079. Epub 2018 May 14.

Abstract

Nitrogenase is an oxygen-vulnerable metalloenzyme that catalyzes nitrogen fixation. It largely remains unknown how nitrogenase coexists with oxygenic photosynthesis in nonheterocystous cyanobacteria, since there have been no appropriate model cyanobacteria so far. Here, we demonstrate in vivo transposon tagging in the nonheterocystous cyanobacterium Leptolyngbya boryana as a forward genetics approach. By conjugative transfer, a mini-Tn5-derived vector, pKUT-Tn5-Sm/Sp, was transferred from Escherichia coli to L. boryana cells. Of 1839 streptomycin-resistant colonies, we isolated three mutants showing aberrant diazotrophic growth. Genome resequencing identified the insertion sites of the transposon in the mutants. This in vivo transposon tagging mutagenesis of L. boryana provides a promising system to investigate molecular mechanisms to resolve the Oxygen Paradox between nitrogen fixation and oxygenic photosynthesis in cyanobacteria.

摘要

固氮酶是一种对氧气敏感的金属酶,能够催化氮气固定。迄今为止,还没有合适的模式蓝藻,因此,固氮酶如何与非异形胞蓝藻中的产氧光合作用共存,在很大程度上仍然未知。在这里,我们展示了非异形胞蓝藻颤藻属中的体内转座子标签作为正向遗传学方法。通过共轭转移,将源自 mini-Tn5 的载体 pKUT-Tn5-Sm/Sp 从大肠杆菌转移到颤藻属细胞中。在 1839 个链霉素抗性菌落中,我们分离出三个表现出异常固氮生长的突变体。基因组重测序鉴定了突变体中转座子的插入位点。这种颤藻属的体内转座子标签诱变提供了一个有前途的系统,用于研究解决蓝藻中固氮作用和产氧光合作用之间的氧气悖论的分子机制。

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