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鞭毛藻类中铁的获取和分配。

Iron acquisition and allocation in stramenopile algae.

机构信息

Division of Plant Sciences, University of Dundee at the James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK.

出版信息

J Exp Bot. 2013 May;64(8):2119-27. doi: 10.1093/jxb/ert121. Epub 2013 May 8.

Abstract

The essential element iron has a low biological availability in the surface ocean where photosynthetic organisms live. Recent advances in our understanding of iron acquisition mechanisms in brown algae and diatoms (stramenopile algae) show the importance of the reduction of ferric to ferrous iron prior to, or during, transport in the uptake process. The uses of iron in photosynthetic stramenopiles resembles that in other oxygenic organisms, although (with the exception of the diatom Thalassiosira oceanica from an iron-deficient part of the ocean) they lack plastocyanin, instead using cytochrome c 6, This same diatom further economizes genotypically on the use of iron in photosynthesis by decreasing the expression of photosystem I, cytochrome c 6, and the cytochrome b 6 f complex per cell and per photosystem II relative to the coastal Thalassiosira pseudonana; similar changes occur phenotypically in response to iron deficiency in other diatoms such as Phaeodactylum tricornutum. In some diatoms grown under iron-limiting conditions, essentially all of the iron in the cells can be accounted for by the iron occurring in catalytic proteins. However, stramenopiles can store iron. Genomic studies show that pennate, but not centric, diatoms have the iron storage protein ferritin. While Mössbauer and X-ray analysis of (57)Fe-labelled Ectocarpus siliculosus shows iron in an amorphous mineral phase resembling the core of ferritin, the genome shows no protein with significant sequence similarity to ferritin.

摘要

在光合作用生物生存的表层海洋中,铁这种基本元素的生物利用率较低。我们对褐藻和硅藻(有鞭毛藻类)中铁获取机制的理解的最新进展表明,在吸收过程中铁从三价铁还原为二价铁对于铁的运输非常重要。光合作用有鞭毛藻类中对铁的利用类似于其他需氧生物,尽管(除了来自海洋缺铁部分的硅藻 Thalassiosira oceanica 之外)它们缺乏质体蓝素,而是使用细胞色素 c6。同一硅藻进一步通过减少每个细胞和每个光系统 II 相对于沿海的 Thalassiosira pseudonana 的光系统 I、细胞色素 c6 和细胞色素 b 6 f 复合物的表达,在光合作用中从基因型上节约铁的使用;类似的变化在其他硅藻如 Phaeodactylum tricornutum 中因缺铁而发生表型变化。在一些在缺铁条件下生长的硅藻中,细胞中几乎所有的铁都可以归因于存在于催化蛋白中的铁。然而,有鞭毛藻类可以储存铁。基因组研究表明,羽纹硅藻,而不是中心硅藻,具有铁储存蛋白铁蛋白。虽然穆斯堡尔和 X 射线分析(57)Fe 标记的 Ectocarpus siliculosus 显示铁处于类似于铁蛋白核心的无定形矿物相中,但基因组中没有与铁蛋白具有显著序列相似性的蛋白质。

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