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Metabolic response of oligotrophic plankton communities to deep water nutrient enrichment

机译:贫营养浮游生物群落对深水养分富集的代谢反应

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ABSTRACT: Studies on upper ocean plankton production and respiration in oligotrophic ecosystems are taken to imply that these regions are net heterotrophic (i.e. gross primary production [GPP] respiration [R]). In this study we examined the hypothesis that the regularly observed state of net heterotrophy in the oligotrophic North Pacific Ocean may be interrupted by periodic bursts of net autotrophy when GPP becomes decoupled from R. To examine this hypothesis, we conducted a series of nutrient addition experiments in the oligotrophic North Pacific Subtropical Gyre (NPSG) in which nutrient-replete deep seawater was mixed with nutrient-depleted mixed-layer water. We monitored time-dependent changes in rates of GPP and R as well as dynamics of chlorophyll and nutrient concentrations. Our results consistently demonstrated that following the addition of nutrients: (1) phyto plankton biomass (chl a) and primary production increase; (2) the photoautotrophic plankton assemblage shifts from small (2 µm diameter) to large (10 µm diameter), chl c-containing and Si-utilizing cells; and (3) community metabolism shifts from near balance, or slightly net heterotrophic, to demonstrably net autotrophic metabolism. These results suggest that nutrient availability partly regulates plankton community structure and dynamics, and could serve as a mechanism to temporally and spatially decouple GPP and R in oligotrophic open ocean ecosystems.
机译:摘要:对贫营养型生态系统中上层海洋浮游生物产量和呼吸作用的研究表明,这些地区是净异养的(即总初级生产力[GPP] <呼吸[R])。在这项研究中,我们检查了以下假设:当GPP与R分离时,贫营养北太平洋的净异养状态可能会被周期性的净自养突然中断而中断。为检验这一假设,我们进行了一系列营养添加实验在贫营养的北太平洋亚热带环流(NPSG)中,营养物质丰富的深层海水与营养物质缺乏的混合层水混合在一起。我们监测了GPP和R速率以及叶绿素和营养物浓度动态的时间依赖性变化。我们的结果一致地表明,在添加营养素之后:(1)浮游植物的生物量(chl 和初级产量的增加; (2)光合自养浮游生物的组合从小(直径小于2 µm)变为大(直径大于10 µm),含chl和硅的细胞。 (3)社区代谢从接近平衡或略有净异养状态转变为可证明的净自养代谢状态。这些结果表明,养分的可利用性部分地调节了浮游生物的群落结构和动力学,并且可以作为贫营养型开放海洋生态系统中时空耦合的GPP和R的机制。

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