...
首页> 外文期刊>Global Biogeochemical Cycles >Modest net autotrophy in the oligotrophic ocean
【24h】

Modest net autotrophy in the oligotrophic ocean

机译:在寡替氏植物海洋中适度的净自动养

获取原文
获取原文并翻译 | 示例

摘要

The metabolic state of the oligotrophic subtropical ocean has long been debated. Net community production (NCP) represents the balance of autotrophic carbon fixation with heterotrophic respiration. Many in vitro NCP estimates based on oxygen incubation methods and the corresponding scaling relationships used to predict the ecosystem metabolic balance have suggested the ocean gyres to be net heterotrophic; however, all in situ NCP methods find net autotrophy. Reconciling net heterotrophy requires significant allochthonous inputs of organic carbon to the oligotrophic gyres to sustain a preponderance of respiration over in situ production. Here we use the first global ecosystem-ocean circulation model that contains representation of the three allochthonous carbon sources to the open ocean, to show that the five oligotrophic gyres exhibit modest net autotrophy throughout the seasonal cycle. Annually integrated rates of NCP vary in the range similar to 1.5-2.2 mol O-2 m(-2) yr(-1) across the five gyre systems; however, seasonal NCP rates are as low as similar to 1 +/- 0.5 mmol O-2 m(-2) d(-1) for the North Atlantic. Volumetric NCP rates are heterotrophic below the 10% light level; however, they become net autotrophic when integrated over the euphotic zone. Observational uncertainties when measuring these modest autotrophic NCP rates as well as the metabolic diversity encountered across space and time complicate the scaling up of in vitro measurements to the ecosystem scale and may partially explain the previous reports of net heterotrophy. The oligotrophic ocean is autotrophic at present; however, it could shift toward seasonal heterotrophy in the future as rising temperatures stimulate respiration.
机译:寡营亚热带海洋的代谢状态长期以来一直在争论。净社区生产(NCP)表示具有异养呼吸的自养碳固定的平衡。基于氧气孵化方法的许多体外NCP估计和用于预测生态系统代谢平衡的相应缩放关系表明海洋陀螺是净异养的;但是,所有原位NCP方法都发现净自动养生。协调净异步需要对寡替氏植物晶体的有机碳的显着表发碳,以维持原位生产的优势。在这里,我们使用第一个全球生态系统 - 海洋循环模型,其中包含三种外性碳源的表示到开阔的海洋,表明五个寡噬细胞旋流在整个季节性循环中表现出适度的净自动养护。每年集成的NCP率在五个陀螺系统上的类似于1.5-2.2 mol O-2 m(-2)Yr(-1);然而,季节性NCP率与北大西洋的1 +/- 0.5 mmol O-2 M(-2)D(-1)相似。体积NCP速率在10%光线水平以下是异养的;然而,它们在集成在EUPHED区上时变成净自养。测量这些适度的自养NCP率的观察不确定性以及空间遇到的代谢多样性使得对生态系统规模的体外测量的扩大使得可以部分解释净异养的前述报道。 Oligotophic海洋目前是自养的;然而,由于上升的温度刺激呼吸,将来可能会转向季节性异步。

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