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锌融入微藻赫氏颗石藻的颗石中。

Incorporation of zinc into the coccoliths of the microalga Emiliania huxleyi.

作者信息

Santomauro Giulia, Sun Wei-Lin, Brümmer Franz, Bill Joachim

机构信息

Institute for Materials Science, University of Stuttgart, Heisenbergstrasse 3, 70569, Stuttgart, Germany.

Department of Zoology, Institute of Biomaterials and Biomolecular Systems, University of Stuttgart, Pfaffenwaldring 57, 70569, Stuttgart, Germany.

出版信息

Biometals. 2016 Apr;29(2):225-34. doi: 10.1007/s10534-015-9908-y. Epub 2016 Jan 19.

Abstract

The coccolithophore Emiliania huxleyi is covered with elaborated calcite plates, the so-called coccoliths, which are produced inside the cells. We investigated the incorporation of zinc into the coccoliths of E. huxleyi by applying different zinc and calcium amounts via the culture media and subsequently analyzing the zinc content in the cells and the Zn/Ca ratio of the coccoliths. To investigate the Zn/Ca ratio of coccoliths built in the manipulated media, the algae have first to be decalcified, i.e. coccolith free. We used a newly developed decalcification method to obtain 'naked' cells for cultivation. E. huxleyi proliferated and produced new coccoliths in all media with manipulated Zn/Ca ratios. The cells and the newly built coccoliths were investigated regarding their zinc content and their Zn/Ca ratio, respectively. High zinc amounts were taken up by the algae. The Zn/Ca ratio of the coccoliths was positively correlated to the Zn/Ca ratio of the applied media. The unique feature of the coccoliths was maintained also at high Zn/Ca ratios. We suggest the following pathway of the zinc ions into the coccoliths: first, the zinc ions are bound to the cell surface, followed by their transportation into the cytoplasm. Obviously, the zinc ions are removed afterwards into the coccolith vesicle, where the zinc is incorporated into the calcite coccoliths which are then extruded. The incorporation of toxic zinc ions into the coccoliths possibly due to a new function of the coccoliths as detoxification sites is discussed.

摘要

颗石藻赫氏艾氏藻覆盖着精致的方解石板,即所谓的颗石,这些颗石在细胞内产生。我们通过在培养基中施加不同量的锌和钙,随后分析细胞中的锌含量和颗石的锌钙比,来研究锌在赫氏艾氏藻颗石中的掺入情况。为了研究在经处理的培养基中形成的颗石的锌钙比,首先必须对藻类进行脱钙处理,即去除颗石。我们使用一种新开发的脱钙方法来获得用于培养的“裸”细胞。赫氏艾氏藻在所有锌钙比经处理的培养基中都能增殖并产生新的颗石。分别对细胞和新形成的颗石的锌含量及其锌钙比进行了研究。藻类吸收了大量的锌。颗石的锌钙比与所施加培养基的锌钙比呈正相关。即使在高锌钙比的情况下,颗石的独特特征也得以保持。我们提出锌离子进入颗石的以下途径:首先,锌离子与细胞表面结合,随后被转运到细胞质中。显然,锌离子随后被转移到颗石囊泡中,在那里锌被掺入方解石颗石中,然后被挤出。文中讨论了有毒锌离子可能由于颗石作为解毒位点的新功能而掺入颗石的情况。

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