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Summer surface waters in the Gulf of California: Prime habitat for biological N-2 fixation

机译:加利福尼亚湾的夏季地表水:固定生物N-2的主要栖息地

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We report significant rates of dinitrogen (N-2) fixation in the central basins of the Gulf of California (GC) during July-August 2005. Mixing model estimates based upon delta N-15 values of particulate matter in the surface mixed layer indicate that N-2 fixation provides as much as 35% to 48% of the phytoplankton-based nitrogen demand in the central Guaymas and Carmen basins. Microscopic analyses identify the responsible genera as the N-2-fixing endosymbiont, Richelia intracellularis, with lesser contributions from the large nonheterocystous diazotroph Trichodesmium. Analyses of remotely sensed chlorophyll a and sea surface temperature indicate that primary production levels are elevated in regions of the GC where oceanographic conditions are ideal in summertime for the growth of N-2-fixing organisms. These findings suggest that biological N-2 fixation must be taken into account when assessing past and present nitrogen dynamics in this environmentally important region.
机译:我们报告了在2005年7月至8月期间加利福尼亚湾(GC)中部盆地的固氮速率(N-2)。基于表面混合层中颗粒物的N-15增量值的混合模型估计表明: N-2固着提供了瓜亚马斯和卡门盆地中部基于浮游植物的氮需求的35%至48%。显微镜分析确定负责的属为N-2固定内共生体,胞内Richelia,而来自较大的非异型囊状重氮营养菌Trichodesmium的贡献较小。遥感叶绿素a和海面温度的分析表明,GC区域的初级生产水平提高了,那里的海洋条件在夏季非常适合固定N-2的生物的生长。这些发现表明,在评估该环境重要区域过去和现在的氮动力学时,必须考虑生物N-2固定。

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