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首页> 外文期刊>Archiv fur Hydrobiologie >Macroinvertebrate and algal communities in an extremely acidic river and the Kawah Ijen crater lake (pH < 0.3), Indonesia
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Macroinvertebrate and algal communities in an extremely acidic river and the Kawah Ijen crater lake (pH < 0.3), Indonesia

机译:印度尼西亚极其酸性的河流和卡瓦伊真火山口湖(pH <0.3)中的大型无脊椎动物和藻类群落

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摘要

Acidic aquatic ecosystems are mainly characterized by low pH and high concentrations of metals and other elements with evident effects on local community structure. Acidity effects on benthic communities in one of the world's largest extremely acidic crater lakes, the Kawah Ijen (East Java, Indonesia) (pH <0.3), and the acidic Banyupahit-Banyuputih river (pH 0.7-3.3) originating from it, had not been investigated. Therefore, macroinvertebrate and algal community structure in the acidic river were studied and compared to the neutral rivers Kali Sat and Kali Sengon in the same catchment. The aquatic foodweb of the Banyupahit-Banyputih river was poorly developed and a complete lack of macroinvertebrate species was observed at pH values below 2. At two sampling stations with pH 2.69-3.47 and pH 2.26-2.89 only chironomids were found and other acid-tolerant macroinvertebrate taxa from acidic aquatic systems reported in the literature were absent. No statistically significant differences of metal body burden in chironomids could be detected between locations. In contrast, algal communities were more diversified and the number of taxa increased with increasing pH. Remarkably, high densities of an unknown green alga were found in samples from the acidic crater lake. Diatom communities were characterized by dominance of the acid tolerant Pinnularia acoricola at the most acidic sites, and a gradual replacement by other species with increasing pH. Particular features of the river, such as the lack of aquatic macrophytes and the presence of acid-tolerant algal species (e. g. Euglena mutabilis, Achnanthes minutissima), revealed not only the strength of the acid selection on these communities, but also the role of indirect physical and chemical factors (e. g. high Al, low P concentrations). It is concluded, therefore, that the ability of the studied macroinvertebrates and algal species to withstand the acid circumstances is not only due to their resistance to low pH, but also to the consequences of it.
机译:酸性水生生态系统的主要特征是低pH值和高浓度的金属及其他元素,对当地社区结构产生明显影响。在世界上最大的极端酸性火山口湖之一的卡瓦伊真(印度尼西亚的东爪哇省)(pH <0.3)和由此产生的酸性Banyupahit-Banyuputih河(pH 0.7-3.3)中,酸性对底栖生物的影响没有被调查了。因此,研究了酸性河流中的大型无脊椎动物和藻类群落结构,并将其与同一流域的中性河流卡利萨特河和卡利森贡河进行了比较。 Banyupahit-Banyputih河的水生食物网发育不佳,在pH值低于2时观察到完全没有大型无脊椎动物物种。在两个pH值2.69-3.47和pH 2.26-2.89的采样站中,仅发现了鳞翅目动物和其他耐酸的动物。缺乏文献报道的来自酸性水生系统的大型无脊椎动物类群。在两个位置之间未检测到手足类动物体内金属负荷的统计学显着差异。相反,藻类群落更加多样化,并且随着pH值的增加,分类单元的数量增加。值得注意的是,在酸性火山口湖的样品中发现了高密度的未知绿藻。硅藻群落的特征是在大多数酸性位点上耐酸的Pinnularia acoricola占优势,随着pH的增加逐渐被其他物种取代。河流的特殊特征,例如缺乏水生植物和耐酸藻类物种(例如Euglena mutabilis,Achnanthes minutissima),不仅揭示了这些社区对酸的选择强度,而且还揭示了间接作用物理和化学因素(例如高铝,低磷浓度)。因此,可以得出结论,所研究的大型无脊椎动物和藻类物种耐受酸环境的能力不仅归因于它们对低pH的抵抗力,还归因于其后果。

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