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首页> 外文期刊>FEMS Microbiology Ecology >The green alga Zygogonium ericetorum(Zygnematophyceae, Charophyta) shows high iron and aluminium tolerance: protection mechanisms and photosynthetic performance
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The green alga Zygogonium ericetorum(Zygnematophyceae, Charophyta) shows high iron and aluminium tolerance: protection mechanisms and photosynthetic performance

机译:绿藻Zygogonium Ericetorum(ZygnemaTophyceae,Charophyta)显示出高铁和铝耐受性:保护机制和光合性能

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摘要

Streptophyte green algae, ancestors of Embryophytes, occur frequently in terrestrial habitats being exposed to high light intensities, water scarcity and potentially toxic metal cations under acidic conditions. The filamentous Zygogonium ericetorum synthesizes a purple vacuolar ferrous pigment, which is lost after aplanospore formation. However, it is unknown whether this cellular reorganization also removes excessive iron from the protoplast and how Z. ericetorum copes with high concentrations of aluminium. Here we show that aplanospore formation shifts iron into the extracellular space of the algal filament. Upon germination of aplanospores, aluminium is bound in the parental cell wall. Both processes reduce iron and aluminium in unpigmented filaments. Comparison of the photosynthetic oxygen production in response to light and temperature gradients in two different Z. ericetorum strains from an Austrian alpine and a Scottish highland habitat revealed lower values in the latter strain. In contrast, the Scottish strain showed a higher optimum quantum yield of PSII during desiccation stress followed by rehydration. Furthermore, pigmented filaments of both strains exhibited a higher light and temperature dependent oxygen production when compared to the unpigmented phenotype. Our results demonstrate a high metal tolerance of Z. ericetorum, which is crucial for surviving in acidic terrestrial habitats.The green alga Zygogonium ericetorum shows high iron and aluminium tolerance, and these metals are excluded from the cells by special protection mechanisms, allowing high photosynthetic performance in terrestrial habitats.The green alga Zygogonium ericetorum shows high iron and aluminium tolerance, and these metals are excluded from the cells by special protection mechanisms, allowing high photosynthetic performance in terrestrial habitats.
机译:骨干生物藻类,胚胎植物的祖先常常发生在酸性条件下暴露于高光强度,水资源短缺和潜在有毒的金属阳离子。丝状紫外线素食合成紫色真空黑色颜料,在AplanoSpore的形成后丧失。然而,尚不清楚这种细胞重组是否也从原生质体中除去过量的铁,以及如何具有高浓度的铝。在这里,我们表明AplanoSpore地层将铁移入藻类长丝的细胞外空间。在萌发AplanoSpores时,铝在祖细胞壁中结合。两种方法都将铁和铝减少了未珍明的长丝。奥地利阿尔卑斯山脉和苏格兰高地栖息地响应光合氧生产响应光和温度梯度的光电温度梯度的比较。后一种菌株的较低值揭示了较低的值。相反,苏格兰菌株在干燥应力下呈较高的PSII最佳量子产率,然后进行再水化。此外,与未珍明的表型相比,两种菌株的色素覆膜呈较高的光和温度依赖性氧气产生。我们的结果表明了Z. Ericetorum的高金属耐受性,这对于酸性陆地栖息地幸存至关重要。绿藻Zygogonium Ericetorum显示出高铁和铝耐受性,这些金属通过特殊保护机制排除在细胞中,允许高光合陆地栖息地的性能。绿藻Zygogonium Ericetorum显示出高铁和铝耐受性,这些金属通过特殊保护机制从细胞中排除,允许陆地栖息地的高光合性能。

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