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首页> 外文期刊>Journal of plankton research >Revisiting the dilution technique to quantify the role of microzooplankton in DMS(P) cycling: Laboratory and field tests
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Revisiting the dilution technique to quantify the role of microzooplankton in DMS(P) cycling: Laboratory and field tests

机译:重新研究稀释技术以量化微浮游动物在DMS(P)循环中的作用:实验室和现场测试

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With the aim of re-examining the suitability of the dilution technique in studies of dimethylated sulfur cycling in the sea, we conducted two types of experiments: one with a simplified food chain of cultured organisms, and secondly with field-sampled natural communities. In the case of Isocrhysis galbana being grazed by Oxyrrhis marina, algal growth (μ) and grazing mortality (m) rates calculated using either chlorophyll a (Chla) or particulate dimethylsulfoniopropionate (DMSPp) were very similar. By means of a parallel incubation of prey with no predator, the regression-derived phytoplankton μ was validated. Net 24-h changes in DMS concentration showed a linear trend against DMSP grazing rates, with a slope that allowed estimation of the rate of DMS production due to grazing. When the method was applied to natural communities from coastal NW Mediterranean waters, μ values of the bulk Chla-containing phytoplankton assemblage were higher than that of the DMSP-containing algae, but m were not significantly different. The grazing-mediated DMS production rate was successfully estimated, and parallel incubations with and without a specific inhibitor of bacterial DMS metabolism allowed us to estimate the gross DMS production by the whole community and the bacterial DMS consumption rate. A further experiment showed that bacterial consumption was not affected by dilution.
机译:为了重新检查稀释技术在海洋中二甲基化硫循环研究中的适用性,我们进行了两种类型的实验:一种是通过简化的培养生物食物链进行的,另一种是通过野外采样的自然群落进行的。在用异丁香放牧小球藻的情况下,使用叶绿素a(Chla)或颗粒状二甲基磺基丙酸二甲酯(DMSPp)计算的藻类生长(μ)和放牧死亡率(m)速率非常相似。通过在没有捕食者的情况下平行培养猎物,验证了回归衍生的浮游植物μ。 DMS浓度的24小时净变化显示了相对于DMSP放牧速率的线性趋势,其斜率允许估算由于放牧而产生的DMS的速率。当该方法应用于西北地中海沿岸水域的自然群落时,散装的含Chla浮游植物组合的μ值高于含DMSP的藻类的μ值,但m没有显着差异。成功估计了放牧介导的DMS产生率,在有或没有细菌DMS代谢特定抑制剂的情况下进行平行孵育,可以估算整个社区的DMS产生总量和细菌DMS消耗率。进一步的实验表明,细菌消耗不受稀释的影响。

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