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Trace Metal Substitution in Marine Phytoplankton

机译:在海洋浮游植物中追踪金属替代品

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The sinking of organic matter to the deep ocean leaves extremely low concentrations of major and trace nutrients for photosynthetic organisms at the sunlit surface. As a result, marine phytoplankton make use of alternative sources of essential elements and have evolved to substitute some elements by others in various biochemical processes. A particularly intriguing example is that of Zn, which is used in many biochemical functions but is often depleted down to picomolar concentrations in surface seawater. Laboratory data show that many phytoplankton species are able to achieve high growth rates by replacing Zn with Cd or Co in cultures. One documented biochemical replacement occurs in some carbonic anhydrases that are used in the acquisition of inorganic carbon for photosynthesis. Field data show the existence of such enzymes in surface seawater and indicate a replacement of Zn by Cd and Co in the surface waters of the eastern tropical South Pacific. Those results point at interesting opportunities for future research. ??The dearth of essential elements in surface seawater has caused marine phytoplankton to substitute some trace metals by others in various biochemical processes.??Many species can substitute Cd and/or Co for Zn as a metal center in carbonic anhydrase enzymes that are used in the acquisition of inorganic carbon for photosynthesis. ??Field data show the presence of such enzymes in the sea and indicate a replacement of Zn by Cd and Co in the surface upwelling waters of the eastern tropical South Pacific.??New analytical and molecular tools provide opportunities to elucidate the unusual biochemistry of marine phytoplankton.
机译:对于深海的有机物沉没,为阳光照射表面的光合生物留下了极低的主要和痕量营养素。结果,海洋植物浮游植物利用必要元素的替代来源,并在各种生化过程中演化以替代其他人的元素。特别有趣的例子是Zn的Zn,其用于许多生物化学功能,但通常耗尽到表面海水中的皮摩尔浓度。实验室数据表明,许多浮游植物物种能够通过在培养物中替换Zn来实现高生长速率。在一些用于获取光合作用的无机碳中使用的一些碳酸酐酶发生一种文献的生物化学替代品。现场数据显示表面海水中这种酶的存在,并表明在热带南太平洋东部地表水域中的CD和CO替代Zn。那些结果在未来的研究中有趣的机会。 ??表面海水的基本要素的缺乏导致海洋植物浮游植物通过各种生化过程替代一些痕量金属.?? Many物种可以将Cd和/或Co用于碳酸酐酶中的金属中心替换为碳酸酐酶的金属中心在获取光合作用的无机碳中。 ??现场数据显示出海中存在此类酶,并表明在东部热带南太平洋的地表上升水域中替代Zn和CO中的CD和CO.?新的分析和分子工具,提供了阐明不寻常的生物化学的机会海洋浮游植物。

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