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爱尔兰西部海洋大型藻类和地衣中锌浓度与系统发育分组、栖息地及形态的关系

Zinc concentrations in marine macroalgae and a lichen from western Ireland in relation to phylogenetic grouping, habitat and morphology.

作者信息

Stengel Dagmar B, Macken Ailbhe, Morrison Liam, Morley Nicholas

机构信息

Department of Botany, Martin Ryan Institute, National University of Ireland, Galway, Ireland.

出版信息

Mar Pollut Bull. 2004 May;48(9-10):902-9. doi: 10.1016/j.marpolbul.2003.11.014.

Abstract

Zinc concentrations in 19 species of marine macroalgae and a lichen from western Ireland (Spiddal, Co. Galway) were analysed by atomic absorption spectrophotometry. Algae were collected from a single site but occupied different shore levels and belonged to distinct phylogenetic groupings and to different (previously recognised) morphological groups. Concentrations ranged from 15-115 microg g(-1) dry weight. The greatest variation in concentration occurred amongst the red algal species, containing both maximum and minimum concentrations. Zn concentrations in brown and green algae were generally lower than those in red algae. When grouped according to thallus morphology, thin, branched sheets (which consisted mainly of red algae) contained the highest Zn concentrations. In filamentous algae, Zn levels were higher than in thick-leathery or coarsely branched algae. However, all green algal species examined had similar Zn concentrations, despite their different morphologies. In brown algae, the highest Zn levels were detected in mid-shore fucoids (Fucus vesiculosus and Fucus serratus), while thicker, subtidal and low-shore brown algae (Laminaria digitata, Halydris siliquosa) exhibited lower Zn concentrations. The lowest Zn concentrations were detected in high-intertidal species (Fucus spiralis, Pelvetia canaliculata), the only marine lichen examined (Ramalina siliquosa) and a red crustose alga (Corallina officinalis). In all morphological groups, red algal representatives contained relatively higher levels of Zn, the exception being Corallina officinalis. Zn levels in 4 species from a second, estuarine site in Galway Bay exhibited the same relative differences amongst species, but were all consistently higher than in algae from Spiddal. It is concluded that Zn accumulation in macroalgae is closely related to ecological growth strategies, following a functional-form model. However, the phylogenetic origin of species which determines carbohydrate and phenol composition, and responses to ambient environmental conditions ultimately determine, the availability of binding sites for polyvalent cations.

摘要

采用原子吸收分光光度法分析了来自爱尔兰西部(戈尔韦郡斯皮达尔)的19种海洋大型藻类和1种地衣中的锌浓度。藻类采集于单一地点,但占据不同的海岸高度,分属于不同的系统发育类群和不同的(先前已确认的)形态类群。浓度范围为15 - 115微克/克干重。浓度变化最大的是红藻种类,既有最高浓度也有最低浓度。褐藻和绿藻中的锌浓度通常低于红藻。按藻体形态分组时,薄的、分支状的藻片(主要由红藻组成)含锌浓度最高。丝状藻类中的锌含量高于厚革质或粗分支藻类。然而,所有检测的绿藻种类,尽管形态不同,锌浓度相似。在褐藻中,中岸的墨角藻属(囊状墨角藻和锯齿墨角藻)锌含量最高,而较厚的潮下带和低潮岸褐藻(掌状海带、长囊水云)锌浓度较低。在高潮间带物种(旋形墨角藻、沟石莼)、唯一检测的海洋地衣(硅质松萝)和一种红皮壳藻(珊瑚藻)中检测到最低的锌浓度。在所有形态类群中,红藻代表含锌水平相对较高,珊瑚藻除外。来自戈尔韦湾第二个河口地点的4种藻类的锌含量在物种间呈现相同的相对差异,但都始终高于斯皮达尔的藻类。得出的结论是,大型藻类中的锌积累与生态生长策略密切相关,遵循功能形式模型。然而,决定碳水化合物和酚类成分以及对环境条件响应的物种系统发育起源最终决定了多价阳离子结合位点的可用性。

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