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Interactions of cadmium, zinc, and phosphorus in marine Synechococcus : field uptake, physiological and proteomic studies

机译:海洋聚球藻中镉,锌和磷的相互作用:田间吸收,生理和蛋白质组学研究

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摘要

A combination of uptake field studies on natural phytoplankton assemblages and laboratory proteomic and physiological experiments on cyanobacterial isolates were conducted investigating the interactions of cadmium (Cd), zinc (Zn), and phosphorus (P) in marine Synechococcus. Enriched stable isotope field uptake studies of ¹¹⁰CD in the Costa Rica Upwelling dome, a Synechococcus feature, showed that uptake of Cd occurs in waters shallower than 40 m, correlates positively with chlorophyll a concentrations and is roughly equivalent to the calculated upwelling flux of cadmium inside the dome. In laboratory experiments, Synechococcus WH5701 cells exposed to low picomolar quantities of free Cd under Zn deficiency show similar growth rates to no added Cd treatments during exponential growth phase, but show differences in relative abundances of many proteins involved in carbon and sulfur metabolism suggesting a great metabolic impact. During stationary phase, chronic Cd exposure in this coastal isolate causes an increase in relative chlorophyll a fluorescence and faster mortality rates. The interactions of acute Cd exposure at low picomolar levels with Zn and phosphate (PO4³-) were investigated in Synechococcus WH8102, an open ocean isolate. The presence of Zn appears vital to the response of the organism to different PO4 ³- cocentrations. Comparisons with literature transcriptome analyses of PO4 ³- stress show similar increases in relative abundance of PO4 ³- stress response proteins including a PO4 ³- binding protein and a Zn-requiring alkaline phosphatase. A bacterial metallothionein, a Zn-associated protein, appears to be correlated with proteins present under low PO4 conditions. Together, these experiments suggest that the interactions of Cd and Zn can affect Synechococcus and play a role in the acquisition of PO4 ³-.
机译:结合对天然浮游植物的吸收研究和蓝藻分离物的蛋白质组学和生理学实验,研究了海洋浮游细菌中镉(Cd),锌(Zn)和磷(P)的相互作用。哥斯达黎加上升球顶上的顺式球菌特征的稳定同位素场富集研究表明,镉的吸收发生在浅于40 m的水中,与叶绿素a浓度呈正相关,并且大致等于计算出的镉在内部的上升通量圆顶。在实验室实验中,在锌缺乏下暴露于低皮摩尔量的游离Cd的Synechococcus WH5701细胞在指数生长期显示出与未添加Cd处理相似的生长速率,但显示出许多参与碳和硫代谢的蛋白质相对丰度存在差异,这表明代谢影响。在稳定期,该沿海隔离区的慢性Cd暴露导致相对叶绿素a荧光增加,死亡率更高。在Synechococcus WH8102(一种开阔海洋隔离株)中研究了低皮摩尔水平下急性镉暴露与锌和磷酸盐(PO4 3--)的相互作用。锌的存在似乎对生物体对不同PO4--浓度的反应至关重要。与文献转录组分析的PO4--应激比较表明,PO4--应激反应蛋白(包括PO4--结合蛋白和需要锌的碱性磷酸酶)的相对丰度有相似的增加。细菌金属硫蛋白(一种锌相关蛋白)似乎与低PO4条件下存在的蛋白相关。总之,这些实验表明Cd和Zn的相互作用可以影响Synechococcus,并在PO4 3-的获得中发挥作用。

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    Cox, Alysia Danielle;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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