首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Trimethylated homoserine functions as the major compatible solute in the globally significant oceanic cyanobacterium Trichodesmium
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Trimethylated homoserine functions as the major compatible solute in the globally significant oceanic cyanobacterium Trichodesmium

机译:三甲基化高丝氨酸在全球重要的海洋蓝细菌毛线虫中作为主要的相容性溶质

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摘要

The oceanic N2-fixing cyanobacterium Trichodesmium spp. form extensive surface blooms and contribute significantly to marine carbon and nitrogen cycles in the oligotrophic subtropical and tropical oceans. Trichodesmium grows in salinities from 27 to 43 parts per thousand (ppt), yet its salt acclimation strategy remains enigmatic because the genome of Trichodesmium erythraeum strain IMS101 lacks all genes for the biosynthesis of any known compatible solute. Using NMR and liquid chromatography coupled to mass spectroscopy, we identified the main compatible solute in T. erythraeum strain IMS101 as the quaternary ammonium compound N,N,N-trimethyl homoserine (or homoserine betaine) and elucidated its biosynthetic pathway. The identification of this compatible solute explains how Trichodesmium spp. can thrive in the marine system at varying salinities and provides further insight into the diversity of microbial salt acclimation.
机译:海洋固定N2的蓝细菌Trichodesmium spp。会形成大量的表面水华,并为贫营养的亚热带和热带海洋中的海洋碳和氮循环做出重要贡献。 Trichodesmium的盐度从27增至千分之四十三(ppt),但其盐分驯化策略仍然是令人迷惑的,因为红细菌Trichodesmium erythraeum菌株IMS101的基因组缺少用于任何已知相容溶质的生物合成的所有基因。使用核磁共振和液相色谱与质谱联用,我们确定了红霉菌IMS101中的主要相容溶质为季铵化合物N,N,N-三甲基高丝氨酸(或高丝氨酸甜菜碱),并阐明了其生物合成途径。对这种相容性溶质的鉴定说明了Trichodesmium spp是如何产生的。可以在盐度变化的情况下在海洋系统中繁衍生息,并为微生物盐适应的多样性提供了进一步的见识。

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