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首页> 外文期刊>Hydrobiologia >Which factors shape macrozoobenthic communities in tufa springs? Results from Austrian meteogene travertine-depositing sites
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Which factors shape macrozoobenthic communities in tufa springs? Results from Austrian meteogene travertine-depositing sites

机译:哪些因素在塔布斯斯普林斯造成宏杂交社区? 奥地利二烯天际沉积地点的结果

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By studying 14 travertine-depositing springs all over Austria, we hypothesized the existence of (1) key elements of the physical and chemical template ultimately defining the structure of macroinvertebrate taxa composition and (2) a specific, travertine-associated macrozoobenthic taxa community in an environment shaped by ongoing deposition of calcium carbonate and the ever-changing limestone structures thereby created. For testing these hypotheses, we measured 29 geological and limnochemical parameters and collected benthic macroinvertebrates on travertine, coarse and fine particular organic matter microhabitats in a spring and autumn sampling run. The results identified four parameters significantly shaping taxa composition: sinter coverage, total phosphorous, oxygen concentration and the Langelier saturation index. The macroinvertebrate community was predominantly composed of stygobiontic taxa from groundwater refugia and of immigrated generalists that prefer the stable conditions offered in spring habitats. We found only few species and specialists separating study sites, the majority being well-known spring- and headwater-dwelling species without adaptation to high carbonate precipitation or association with travertine. Nonetheless, carbonate precipitation leads to higher structural heterogeneity and provides a range of new niches, which contribute to broader ranges of taxonomic diversity.
机译:通过研究奥地利的14个石灰华沉积的泉水,我们假设存在(1)物理和化学模板的关键要素,最终定义大型狂犬毒素组成的结构和(2)特定的,十字曲线相关的宏杂肠分类群体通过持续沉积碳酸钙和不断变化的石灰岩结构而形成的环境。为了测试这些假设,我们测量了29种地质和林类化学参数,并在春季采样运行中收集了在十字楸,粗细胞和细微的有机物质微藻中进行了底栖大型脊椎动物。结果确定了三种参数,显着成型征集分类群组成:烧结覆盖率,总磷,氧浓度和Langelier饱和指数。 Macroinvertebrete群落主要由地下水避难所和移民的全面传统,优先于春季栖息地提供的稳定条件组成。我们发现少数物种和专家分离研究站点,大多数是众所周知的弹簧和居住物种,而不适应高碳酸沉淀或与石灰周关联。尽管如此,碳酸盐沉淀导致较高的结构异质性,并提供一系列新的利基,这有助于更广泛的分类学分类。

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