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Strains of the toxic and bloom-forming Nodularia spumigena (cyanobacteria) can degrade methylphosphonate and release methane

机译:有毒且会形成水华的结节性根瘤菌(蓝细菌)的菌株可降解甲基膦酸酯并释放甲烷

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摘要

Nodularia spumigena is a nitrogen-fixing cyanobacterium that forms toxic blooms in the Baltic Sea each summer and the availability of phosphorous is an important factor limiting the formation of these blooms. Bioinformatic analysis identified a phosphonate degrading (phn) gene cluster in the genome of N. spumigena suggesting that this bacterium may use phosphonates as a phosphorus source. Our results show that strains of N. spumigena could grow in medium containing methylphosphonic acid (MPn) as the sole source of phosphorous and released methane when growing in medium containing MPn. We analyzed the total transcriptomes of N. spumigena UHCC 0039 grown using MPn and compared them with cultures growing in Pi-replete medium. The phnJ, phosphonate lyase gene, was upregulated when MPn was the sole source of phosphorus, suggesting that the expression of this gene could be used to indicate the presence of bioavailable phosphonates. Otherwise, growth on MPn resulted in only a minor reconstruction of the transcriptome and enabled good growth. However, N. spumigena strains were not able to utilize any of the anthropogenic phosphonates tested. The phosphonate utilizing pathway may offer N. spumigena a competitive advantage in the Pi-limited cyanobacterial blooms of the Baltic Sea.
机译:结节藻是固氮蓝细菌,每年夏天在波罗的海形成有毒的水华,而磷的可利用性是限制水华形成的重要因素。生物信息学分析鉴定了孢子原孢菌基因组中的膦酸酯降解(phn)基因簇,表明该细菌可能使用膦酸酯作为磷源。我们的结果表明,在含有甲基膦酸(MPn)作为唯一的磷源的培养基中,孢子霉菌可以在含有MPn的培养基中生长时生长。我们分析了使用MPn生长的N. spumigena UHCC 0039的总转录组,并将其与在Pi培养基中生长的培养物进行了比较。当MPn是唯一的磷源时,磷酸化裂解酶基因phnJ被上调,表明该基因的表达可用于表明存在生物可利用的膦酸酯。否则,MPn的生长只会导致转录组的较小重建,并实现良好的生长。但是,产孢杆菌菌株不能利用任何测试的人为膦酸酯。利用膦酸盐的途径可以为波美尼亚猪笼草在波罗的海的Pi-有限的蓝细菌开花中提供竞争优势。

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