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Phosphorus dynamics in biogeochemically distinct regions of the southeast subtropical Pacific Ocean

机译:东南亚热带太平洋生物地球化学不同区域的磷动力学

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摘要

The southeast subtropical Pacific Ocean was sampled along a zonal transect between the coasts of Chile and Easter Island. This remote area of the world's ocean presents strong gradients in physical (e.g., temperature, density and light), chemical (e.g., salinity and nutrient concentrations) and microbiological (e.g., cell abundances, biomass and specific growth rates) properties. The goal of this study was to describe the phosphorus (P) dynamics in three main ecosystems along this transect: the upwelling regime off the northern Chilean coast, the oligotrophic area associated with the southeast subtropical Pacific gyre and the transitional area in between these two biomes. We found that inorganic phosphate (Pi) concentrations were high and turnover times were long (>210 nmol and >31 d, respectively) in the upper water column, along the entire transect. Pi uptake rates in the gyre were low (euphotic layer integrated rates were 0.26 mmol m-(2) d-(1) in the gyre and 1.28 mmol m-(2) d-(1) in the upwelling region), yet not only driven by decreases in particle mass or cell abundance (particulate P- and cell- normalized Pi uptake rates in the euphotic layer were similar to 1-4 times and similar to 3-15 times lower in the gyre than in the upwelling, respectively). However these Pi uptake rates were at or near the maximum Pi uptake velocity (i.e., uptake rates in Pi amended samples were not significantly different from those at ambient concentration: 1.5 and 23.7 nmol l-(1) d-(1) at 50% PAR in the gyre and upwelling, respectively). Despite the apparent Pi replete conditions, selected dissolved organic P (DOP) compounds were readily hydrolyzed. Nucleotides were the most bioavailable of the DOP substrates tested. Microbes actively assimilated adenosine-5'triphosphate (ATP) leading to Pi and adenosine incorporation as well as Pi release to the environment. The southeast subtropical Pacific Ocean is a Pi-sufficient environment, yet DOP hydrolytic processes are maintained and contribute to P-cycling across the wide range of environmental conditions present in this ecosystem. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:东南亚热带太平洋沿智利海岸和复活节岛之间的地带剖面采样。世界海洋的这个偏远地区在物理(例如温度,密度和光),化学(例如盐度和营养物浓度)和微生物(例如细胞丰度,生物量和比生长速率)特性方面表现出强烈的梯度。这项研究的目的是描述沿该样带的三个主要生态系统中的磷(P)动态:智利北部海岸外的上升流区,与东南亚热带太平洋涡旋相关的贫营养区以及这两个生物群落之间的过渡区。我们发现沿整个样带,上部水柱中的无机磷酸盐(Pi)浓度较高,周转时间较长(分别为> 210 nmol和> 31 d)。旋涡中的Pi吸收率较低(旋涡中的共晶层整合率分别为0.26 mmol m-(2)d-(1)和上升区中的1.28 mmol m-(2)d-(1)),但并非如此仅由颗粒质量或细胞丰度的下降驱动(在富营养层中,微粒P-和细胞归一化的Pi吸收率分别比上升流中的低1-4倍,并且比回升中的低3-15倍) 。但是,这些Pi吸收速率等于或接近最大Pi吸收速率(即,在Pi校正样品中的吸收速率与环境浓度下的摄取速率没有显着差异:50%时为1.5和23.7 nmol l-(1)d-(1)分别在回旋和上升流中的PAR)。尽管存在明显的Pi充满条件,但选定的溶解的有机P(DOP)化合物仍易于水解。核苷酸是所测试的DOP底物中生物利用度最高的。微生物积极吸收5'三磷酸腺苷(ATP),导致Pi和腺苷的掺入以及Pi释放到环境中。东南亚热带太平洋是Pi充足的环境,但是DOP的水解过程得以维持,并有助于在该生态系统中广泛的环境条件下进行P循环。 (C)2016作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Progress in Oceanography》 |2017年第2期|261-274|共14页
  • 作者单位

    Lamont Doherty Earth Observ, Div Biol & Paleo Environm, POB 1000,61 Route 9W, Palisades, NY 10964 USA|Univ Hawaii, C MORE Hale, Daniel K Inouye Ctr Microbial Oceanog Res & Educ, 1950 East West Rd, Honolulu, HI 96822 USA;

    Univ Hawaii, C MORE Hale, Daniel K Inouye Ctr Microbial Oceanog Res & Educ, 1950 East West Rd, Honolulu, HI 96822 USA;

    Woods Hole Oceanog Inst, Dept Chem & Geochem, Woods Hole, MA 02543 USA;

    Univ Hawaii, C MORE Hale, Daniel K Inouye Ctr Microbial Oceanog Res & Educ, 1950 East West Rd, Honolulu, HI 96822 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phosphorus dynamics; Microbes; Stocks Fluxes; Southeast subtropical Pacific Ocean;

    机译:磷动力学;微生物;种群通量;东南亚热带太平洋;

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