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首页> 外文期刊>Journal of plankton research >Connecting export fluxes to plankton food-web efficiency in the Black Sea waters inflowing into the Mediterranean Sea
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Connecting export fluxes to plankton food-web efficiency in the Black Sea waters inflowing into the Mediterranean Sea

机译:将流入地中海的黑海水域的出口通量与浮游生物的食物网效率联系起来

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摘要

The short-time scale evolution of plankton carbon partitioning and downward flux in the modified Black Sea water (BSW) mass entering the northeast Aegean Sea was studied using a Lagrangian approach (6-10 April 2008). The free-drifting sediment trap positioned at the bottom of the BSW layer and the control drifter, followed the same path within the anticyclone that circulates the BSW in the area. ooplankton biomass increased (from 159 to 292 mg C m~(-2)), as did faecal pellet production (from 5 to 8 mg C m~(-2) day ~(-1)), whereas a generally decreasing trend was displayed by particulate organic carbon (POC) (from 2099 to 1440 mg C m~(-2)), net primary production and biomass of plankton cells >5 m (from 32 to 11 mg C m~(-2) day~(-1) and from 153 to 124 mg C m~(-2), respectively). At the same time, the organic carbon flux increased (from 131 to 311 mg C m~(-2) day~(-1)), due to the contribution of zooplankton detritus (from 30 to 165 mg C m~(-2) day~(-1)). Normalized biomass-size spectra slopes suggest an elevated grazing pressure upon microplankton cells and a non-steady-state ecosystem. Moreover, both the overall shallow slope values and their high correlation to organic carbon flux indicate an increased efficiency of energy transfer to higher trophic levels.
机译:使用拉格朗日方法(2008年4月6日至10日)研究了进入东北爱琴海的改性黑海水(BSW)中浮游生物碳分配和向下通量的短时尺度演变。位于BSW层和控制浮标底部的自由漂流沉积物捕集阱,沿反气旋内沿该区域循环BSW的相同路径行进。浮游生物的生物量增加(从159 mg C m〜(-2)增至粪便颗粒的产生(从5 mg C m〜(-2)天〜(-1))增加,但总体上呈下降趋势颗粒有机碳(POC)(从2099至1440 mg C m〜(-2)),浮游生物细胞的净初级生产力和生物量> 5 m(从32至11 mg C m〜(-2)天〜)显示-1)和153至124 mg C m〜(-2)。同时,由于浮游动物碎屑的贡献(从30 mg C m〜(-2)从131 mg C m〜(-2)day〜(-1)增加,有机碳通量从131 mg C m〜(-2)day〜(-1)增加。 )天〜(-1))。归一化的生物量大小光谱斜率表明,浮游生物细胞和非稳态生态系统的放牧压力升高。此外,总体的浅斜率值及其与有机碳通量的高度相关性都表明,将能量转移到较高营养级的效率有所提高。

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