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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Particulate dimethylsulfoniopropionate and dimethylsulfoxide in relation to iron availability and algal community structure in the Peru Upwelling System
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Particulate dimethylsulfoniopropionate and dimethylsulfoxide in relation to iron availability and algal community structure in the Peru Upwelling System

机译:秘鲁上升流系统中的颗粒状二甲基磺基丙酸二甲酯和二甲基亚砜与铁的有效性和藻类群落结构的关系

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The influence of iron on phytoplankton biogenic sulfur production, physiological status, and community structure in the Peruvian Upwelling System was investigated in September 2000. Vertical profiles of particulate dimethylsulfoniopropionate (DMSPp) and dimethylsulfoxide (DMSOp) were measured at stations along two transects passing from the high-iron waters of the continental shelf, across the Peru trench, to low-iron open-ocean waters. Although chlorophyll a (Chl a) biomass decreased significantly across the shelf, DMSPp and DMSOp concentrations relative to Chl a were higher at the offshore stations (DMSPp:Chl a 2.3-6.4 times greater and DMSOp:Chl a 2.6-4 times greater). These changes were associated with lower iron concentrations, as well as a shift from diatom-dominated communities to ones dominated by cryptophytes and haptophytes (based on algal pigment concentrations). The results of a shipboard iron-addition incubation experiment were similar to patterns observed on the transects. DMSPp:Chl a ratios decreased with increasing iron and diatoms preferentially outgrew other taxa. The possible role of DMSPp and DMSOp as free radical scavengers (stimulated by iron limitation) was supported by the increased concentrations of these compounds measured under low-iron conditions, as well as by the positive correlations (r(2) = 0.69 and 0.82, respectively) observed between these compounds and the known antioxidant beta-carotene.
机译:在2000年9月,研究了铁对秘鲁上升流系统中浮游植物生物硫的产生,生理状态和群落结构的影响。在从该通道穿过的两个横断面的站点上,测量了颗粒状二甲基磺丙酸二甲酯(DMSPp)和二甲基亚砜(DMSOp)的垂直剖面。横跨秘鲁海沟的大陆架高铁水域到低铁开放海洋水域。尽管整个货架上的叶绿素a(Chl a)生物量均显着下降,但离岸站的DMSPp和DMSOp浓度相对于Chl a更高(DMSPp:Chl为2.3-6.4倍,DMSOp:Chl a为2.6-4倍)。这些变化与较低的铁浓度有关,以及从硅藻为主的群落向以隐藻类和触藻类植物为主的群落转变(基于藻类色素的浓度)。船上铁添加培养实验的结果类似于在样条上观察到的模式。 DMSPp:Chl a的比例随铁含量的增加而降低,硅藻优先超过其他类群。 DMSPp和DMSOp作为自由基清除剂的可能作用(受铁限制刺激)在低铁条件下测得的这些化合物浓度的增加以及正相关关系(r(2)= 0.69和0.82,分别在这些化合物和已知的抗氧化剂β-胡萝卜素之间观察到。

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