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Increasing copper alters cellular elemental composition (Mo and P) of marine diatom

机译:铜的增加改变了海洋硅藻的细胞元素组成(钼和磷)

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Abstract The elemental composition (surface adsorbed and internalized fraction of Cu, Mo and P) in marine phytoplankton was first examined in cultures of the diatom Phaeodactylum tricornutum which were exposed to various levels of Cu concentrations ranging from 0.25 to 16 ????mol/L with equivalent free [Cu 2+ ] concentrations of 0.4?¢????26 nmol/L. We observed an acceleration of algal growth rates (20?¢????40%) with increasing ambient Cu levels, as well as slightly increased levels of internalized Cu in cells (2?¢????13 ???? 10 ?¢????18 mol/cell) although cellular Cu mostly accumulated onto the cell surface (>50% of the total: intracellular + surface adsorbed). In particular, we documented for the first time that the elemental composition (Mo and P) in algal cells varies dynamically in response to increased Cu levels: (1) Cellular P, predominantly in the intracellular compartment (>95%), shows with a net consumption as indicated by a gradual decrease with increasing [Cu 2+ ] (120?¢????50 ???? 10 ?¢????15 mol P/cell) probably due to the fact that P, a backbone bioelement, is largely required in forming biological compartments such as cell membranes; and (2) cellular Mo, predominantly encountered in the intracellular compartment, showed up to tenfold increase in concentration in the cultures exposed to Cu, with a peak accumulation of 1.1 ???? 10 ?¢????18 mol Mo/cell occurring in the culture exposed to [Cu 2+ ] at 3.7 nmol/L. Such a net cellular Mo accumulation suggests that Mo might be specifically required in biological processes, probably playing a counteracting role against Cu.
机译:摘要首先在暴露于不同浓度的0.25至16μmol/ kg的硅藻硅藻中,检测了海洋浮游植物中的元素组成(铜,钼和磷的表面吸附和内在化分数)。 L的当量游离[Cu 2+]浓度为0.4?26?nmol / L。我们观察到,随着环境铜含量的增加,藻类的生长速度加快(20%→40%),而细胞中内在化的铜含量则略有增加(2%→13%→13%→10% (18mol /细胞),尽管细胞Cu大部分聚集在细胞表面上(>总量的50%:细胞内+表面被吸附)。特别是,我们首次记录了藻类细胞中的元素组成(Mo和P)随Cu水平的增加而动态变化:(1)细胞P主要在细胞内区室(> 95%)中显示出净消耗量由[Cu 2+]的增加而逐渐降低(120≤50≤10≤15 mol P / cell),这可能是由于P,a骨架生物元素是形成细胞膜等生物区隔的主要元素; (2)主要在细胞内区室中遇到的细胞钼,在暴露于铜的培养物中,其浓度最高增加了十倍,峰值积累为1.1%。在3.7 nmol / L的[Cu 2+]中暴露的培养物中出现10 ??????? 18 mol Mo /细胞。这种净的细胞Mo积累表明在生物过程中可能特别需要Mo,这可能对Cu起抵消作用。

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