...
首页> 外文期刊>Biogeosciences >No observed effect of ocean acidification on nitrogen biogeochemistry in a summer Baltic Sea plankton community
【24h】

No observed effect of ocean acidification on nitrogen biogeochemistry in a summer Baltic Sea plankton community

机译:在夏季波罗的海浮游生物群落中未观察到海洋酸化对氮生物地球化学的影响

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Nitrogen fixation by filamentous cyanobacteria supplies significant amounts of new nitrogen (N) to the Baltic Sea. This balances N loss processes such as denitrification and anammox, and forms an important N source supporting primary and secondary production in N-limited post-spring bloom plankton communities. Laboratory studies suggest that filamentous diazotrophic cyanobacteria growth and Nsub2/sub-fixation rates are sensitive to ocean acidification, with potential implications for new N supply to the Baltic Sea. In this study, our aim was to assess the effect of ocean acidification on diazotroph growth and activity as well as the contribution of diazotrophically fixed N to N supply in a natural plankton assemblage. We enclosed a natural plankton community in a summer season in the Baltic Sea near the entrance to the Gulf of Finland in six large-scale mesocosms (volume ~?55?msup3/sup) and manipulated if/iCOsub2/sub over a range relevant for projected ocean acidification by the end of this century (average treatment if/iCOsub2/sub: 365–1231?μatm). The direct response of diazotroph growth and activity was followed in the mesocosms over a 47?day study period during N-limited growth in the summer plankton community. Diazotrophic filamentous cyanobacteria abundance throughout the study period and Nsub2/sub-fixation rates (determined only until day 21 due to subsequent use of contaminated commercial sup15/supN-Nsub2/sub gas stocks) remained low. Thus estimated new N inputs from diazotrophy were too low to relieve N limitation and stimulate a summer phytoplankton bloom. Instead, regeneration of organic N sources likely sustained growth in the plankton community. We could not detect significant COsub2/sub-related differences in neither inorganic nor organic N pool sizes, or particulate matter N?:?P stoichiometry. Additionally, no significant effect of elevated COsub2/sub on diazotroph activity was observed. Therefore, ocean acidification had no observable impact on N cycling or biogeochemistry in this N-limited, post-spring bloom plankton assemblage in the Baltic Sea.
机译:丝状蓝细菌固氮为波罗的海提供了大量的新氮(N)。这平衡了氮的损失过程,例如反硝化和厌氧氨氮,并形成了重要的氮源,支持了氮有限的春季后开花浮游生物群落的初级和次级生产。实验室研究表明,丝状重氮营养蓝细菌的生长和N 2 固着率对海洋酸化敏感,对波罗的海的新氮供应具有潜在的影响。在这项研究中,我们的目的是评估海洋酸化对重氮营养菌生长和活性的影响,以及重氮营养性固定氮对天然浮游生物组合中氮供应的贡献。我们在夏季在波罗的海靠近芬兰湾的入口处封闭了一个自然的浮游生物群落,形成了六个大型中尺度(体积〜55?m 3 ),并操纵了 f CO 2 的范围与本世纪末预计的海洋酸化有关(平均处理方法 f CO 2 :365– 1231?atm)。在夏季浮游生物群落中,N限制生长期间,中膜在长达47天的研究期内追踪了重氮营养菌生长和活性的直接反应。在整个研究期间,重氮营养性丝状蓝细菌的丰度和N 2 固定率(仅确定至第21天,因为随后使用了受污染的商品 15 NN 2 天然气库存)保持低位。因此,估计来自重氮营养的新氮输入太低,无法缓解氮限制并刺激夏季浮游植物开花。相反,有机氮源的再生可能使浮游生物群落持续增长。我们无法检测到无机和有机氮库大小或颗粒物N?:?P化学计量的显着CO 2 相关差异。此外,未观察到CO 2 升高对重氮营养活性的显着影响。因此,在波罗的海的这种N有限,春季后开花的浮游生物组合中,海洋酸化对N循环或生物地球化学没有明显影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号