首页> 外文期刊>Progress in Oceanography >Productivity cycles in the coastal upwelling area off Conception: The importance of diatoms and bacterioplankton in the organic carbon flux
【24h】

Productivity cycles in the coastal upwelling area off Conception: The importance of diatoms and bacterioplankton in the organic carbon flux

机译:沿海上升流区外的生产力循环构想:硅藻和浮游细菌在有机碳通量中的重要性

获取原文
获取原文并翻译 | 示例
       

摘要

Recurrent coastal upwelling is recognized as one of the main factors promoting the exceptionally high productivity of the Humboldt Current System. Herein, we study time series data of gross primary production (2003-2006) and its fluctuation in relation to seasonal changes in the light and nutrient field of the Conception upwelling ecosystem. Concurrent measurements of gross primary production, community respiration, bacterial secondary production, and sedimentation rates allowed a characterization of the main carbon fluxes and pathways in the study area. The integrated values of gross primary production were higher during the upwelling period ( > 1 g C m~(-2) d~(-1); October-April; that is, early spring to early austral fall). Seasonal changes in the system were also reflected in community respiration, organic matter sedimentation, and bacterial production rates, which varied along with the gross primary production. The significant correlation between gross primary production and community respiration (Spearman, r = 0.7; p < 0.05; n = 18) reflected an important degree of coupling between organic matter formation and its usage by the microplanktonic community during periods when gross primary production/community respiration were highly similar. Higher gross primary production values ( > 6 g C m~(-2) d~(-1)) were consistently associated with maximum biomass levels of Skeletonema costatum and Thalassiosira subtilis. We observed a positive correlation between gross primary production and the sedimentation of intact diatom cells (Spearman, r = 0.5, p < 0.05, n = 17). Our data suggest that, in the Conception upwelling ecosystem, bacteria utilize an important fraction of the gross primary production. If our interpretations are correct, they leave unanswered the question of how the system supports the extremely high fish biomass levels, therein pointing out the system's limited capacity to buffer the evasion of CO_2 following upwelling.
机译:沿海反复上升被认为是促进洪堡洋流系统异常高生产率的主要因素之一。在这里,我们研究了概念增生生态系统的初级生产总值(2003-2006)及其与季节变化相关的波动数据,该光和养分场呈季节性变化。同时测量初级总产值,社区呼吸,次级细菌产量和沉降速率可以表征研究区域的主要碳通量和路径。在上升阶段,初级生产总值的综合值较高(> 1 g C m〜(-2)d〜(-1); 10月至4月;即早春至南夏初秋)。该系统的季节性变化还反映在社区呼吸,有机物沉降和细菌产生速率上,它们随初级生产总值而变化。初级生产总值与社区呼吸之间的显着相关性(Spearman,r = 0.7; p <0.05; n = 18)反映了初级生产总值/社区期间有机物质形成与微浮游生物群落的利用之间的重要耦合程度。呼吸高度相似。较高的初级总产值(> 6 g C m〜(-2)d〜(-1))与肋骨骨架和枯草藻的最大生物量水平一致。我们观察到初级总产值与完整硅藻细胞沉积之间呈正相关(Spearman,r = 0.5,p <0.05,n = 17)。我们的数据表明,在构想上升流生态系统中,细菌利用了初级生产总值的重要部分。如果我们的解释正确,那么他们将无法回答该系统如何支持极高的鱼类生物量水平的问题,从而指出该系统缓冲上升流后CO_2逃逸的能力有限。

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