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Another piece of the puzzle: Abiotic habitat properties of salt-marsh creeks benefit small fishes and crustaceans

机译:另一个谜题:盐渍溪小溪的非生物栖息地属性有益于小鱼和甲壳类动物

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Inundated salt marshes are valued as nekton habitat due to their low predator and high prey abundance. But habitat quality depends also on abiotic properties. We measured hydrological (temperature, oxygen concentration) and hydrodynamic (flow velocity, turbidity, sediment grain size) parameters in four German salt-marsh creeks and compared these with the adjacent tidal flat and subtidal area. Water temperatures in the salt-marsh creeks varied with season, daytime and over the tides. In contrast to deeper subtidal areas, the small water body in the marsh creeks adapted rapidly to air temperatures, resulting in relatively cool water temperatures in winter and relatively warm temperatures in summer. Despite high summer temperatures, the oxygen concentration in the creeks remained year round within the tolerance range of most fishes and crustaceans (above 5 mg/L). probably due to tidal mixing and primary production. Furthermore, the water body in the salt-marsh creeks was sheltered by the vegetated marsh surface from wind and waves and thus characterized by low flow velocities (0.15 ms~(-1)), as well as lower turbidity and finer sediments than in the subtidal. As the specific set of habitat characteristics in the marsh creeks could explain utilization of this habitat by nekton, we performed a constrained redundancy analysis including temperature and turbidity as explanatory variables. Turbidity explained almost 21% of the variation in nekton species occurrence, while temperature accounted for only 2% of the variation. Compared to larger animals, small-sized nekton, which dominated the salt-marsh nekton community, is more capable to deal with extreme temperatures and will profit more from reduced currents than larger animals. Despite the limited accessibility for aquatic organism, intertidal salt-marsh creeks appear to provide favourable habitat for small nekton due to increased growth potential during seasonally higher temperatures, reduced swimming effort, and increased prey visibility and availability in the muddy sediments.
机译:由于他们的低掠夺者和高猎物丰富,淹没的盐沼成为Nekton Habitat。但栖息地质量也取决于非生物特性。我们测量了四种德国盐沼溪中的水文(温度,氧浓度)和流体动力学(流速,浊度,沉积物粒度)参数,并将这些与邻近的潮汐平和阴影区进行了比较。盐沼溪水中的水温随着季节,白天和潮流而变化。与更深的阴性区域相比,沼泽小溪中的小水体适应空气温度迅速,导致冬季冬季和夏季相对温暖的温度温度。尽管夏季气温高,小溪中的氧气浓度在大多数鱼类和甲壳类动物的耐受范围内留在宽度范围内(5 mg / L)。可能是由于潮汐混合和初级生产。此外,盐沼溪中的水体被植被的沼泽表面从风和波浪遮住,因此由低流速表征(0.15ms〜(-1)),以及比中的浊度和更细的沉积物对照。随着沼泽小溪的具体栖息地特征可以解释Nekton的这种栖息地的利用,我们进行了受限制的冗余分析,包括温度和浊度作为解释性变量。浊度解释了尼克顿物种发生变化的近21%,而温度仅占变化的2%。与较大的动物相比,小型尼克顿,占据了盐沼尼克顿社区,更有能力处理极端温度,并且将从比较大的动物盈利更多地利润。尽管水生有机体可达有限,但由于在季节性更高的温度下增加的增长潜力,减少了游泳努力以及增加了泥泞的沉积物中的猛禽可见性和可用性增加,京氏盐沼溪水似乎为小型奈基尔顿提供有利的栖息地。

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    《Oceanographic Literature Review》 |2021年第9期|1998-1998|共1页
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    Universitat Hamburg Institut fuer marine OEkosystem- und Fischereiwissenschaften Olbersweg 24 Hamburg 22767 Germany;

    Universitat Hamburg Institut fuer marine OEkosystem- und Fischereiwissenschaften Olbersweg 24 Hamburg 22767 Germany;

    Universitat Hamburg Institut fuer marine OEkosystem- und Fischereiwissenschaften Olbersweg 24 Hamburg 22767 Germany;

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