首页> 外文期刊>Aquatic Microbial Ecology >Effect of visible light on dimethylsulfoniopropionate assimilation and conversion to dimethylsulfide in the North Pacific Subtropical Gyre
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Effect of visible light on dimethylsulfoniopropionate assimilation and conversion to dimethylsulfide in the North Pacific Subtropical Gyre

机译:可见光对北太平洋亚热带环流中丙酸二甲酯磺化同化和转化为二甲基硫的影响

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ABSTRACT: The aim of the present study was to assess the effect of photosynthetically active radiation (PAR, 400 to 700 nm) on the utilization of dissolved dimethylsulfoniopropionate (DMSPd) by microbial communities in the oligotrophic North Pacific Subtropical Gyre, using 35S-labeled substrate. Rates of DMSPd-sulfur (DMSPd-S) assimilation into macromolecules of microorganisms in surface mixed layer seawater were 39 to 78% higher in samples that were incubated in the light than in dark controls. There was no photoinhibition in the light range tested (up to 1200 μmol photons m−2 s−1). Leucine assimilation, an index of bacterial protein production, was also photostimulated and was significantly correlated (r = 0.93) to DMSPd-S assimilation, suggesting that cells can respond to an increase in S requirements for protein synthesis by assimilating DMSPd-S. Light-driven changes in DMSPd-S assimilation were inversely and significantly correlated (r = −0.57) to changes in the corresponding dimethylsulfide (DMS) yield (i.e. DMS produced per DMSP consumed), in support of the hypothesis that DMS is produced only after cellular sulfur requirements are met. While light-driven changes in DMSPd-S assimilation appear to affect DMS yield, more than half of the DMSPd product pool remained unidentified; thus, in addition to assimilation, there may be other metabolic processes or products that can regulate DMS production.
机译:摘要:本研究的目的是使用 35方法来评估光合有效辐射(PAR,400至700 nm)对贫营养北太平洋亚热带环流中微生物群落对溶解的二甲基磺丙酸二丙酯(DMSPd)的利用的影响 S标记的底物。在黑暗条件下孵育的样品中,表面混合层海水中DMSPd-硫(DMSPd-S)同化为微生物大分子的比率要高39%至78%。在测试的光范围内(最大1200μmol光子m -2 s -1 )没有光抑制作用。亮氨酸同化是细菌蛋白质生产的一个指标,也受到光刺激,并且与DMSPd-S同化显着相关(r = 0.93),这表明细胞可以通过同化DMSPd-S来响应蛋白质合成中S需求的增加。 DMSPd-S同化作用的光驱动变化与相应的二甲基硫醚(DMS)产量(即每消耗的DMSP产生的DMS)的变化呈负相关(r = -0.57),以支持DMS仅在满足细胞对硫的要求。尽管光驱动的DMSPd-S同化变化会影响DMS的产量,但仍有超过一半的DMSPd产品库尚未确定。因此,除了同化作用外,可能还有其他代谢过程或产物可以调节DMS的产生。

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