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Temporal and inter habitat variations of substratum, vegetation and substratum macroinvertebrates attributes across coastal wetland systems, North East Aegean, Greece

机译:希腊东北爱琴海沿海湿地系统中底层,植被和底层无脊椎动物的时间和栖息地的变化

摘要

Using five coastal wetland systems across Kalloni bay, Lesvos Island, NE Aegean, we investigated: (I) the interaction between spatial units (land, wetland, sea) and seasons (spring, autumn) of substratum physicochemical attributes, vegetation composition and aerial cover, and substratum macroinvertebrates distribution and abundance and (II) the relative importance of substratum attributes in explaining temporal and inter habitat variations in vegetation and substratum macroinvertebrates distributions to elucidate the functional role of these coastal wetlands in the landscape. Electrical conductivity, percent organic matter and bulk density of substratum showed the most pronounced differences among spatial units, between seasons, and among spatial units x seasons interaction, respectively. Comparison of C:N and N:P ratios among spatial units and between seasons indicated that, in general, nitrogen and phosphorus appear to be limiting factors at the sea and the land unit, respectively. It is likely that these coastal wetlands function as transformers of chemical elements while P limits primary production. Significant substratum physicochemical attributes explained 23.4 and 14.7% of plants distribution in spring (percent organic matter, total phosphorus concentration, electrical conductivity) and autumn (electrical conductivity, pH), respectively, while significant substratum variables explained 46.1 and 73.3% of macroinvertebrates distribution in spring (percent organic matter) and autumn (total phosphorus concentration, electrical conductivity, percent organic matter), respectively.
机译:利用横跨爱琴海东北部莱斯沃斯岛卡洛尼湾的五个沿海湿地系统,我们调查:(I)地下层理化属性,植被组成和空中覆盖的空间单位(陆地,湿地,海洋)与季节(春季,秋季)之间的相互作用,以及底层大型无脊椎动物的分布和丰度;(II)底层属性在解释植被和底层大型无脊椎动物分布的时间和栖息地变化以阐明这些沿海湿地在景观中的功能性作用的相对重要性。电导率,有机质百分比和基质堆积密度分别显示出空间单位之间,季节之间以及空间单位之间x季节相互作用的最明显差异。比较空间单位之间和季节之间的C:N和N:P比率表明,总的来说,氮和磷似乎分别是海洋和陆地单位的限制因素。这些沿海湿地可能充当化学元素的变质,而P限制了初级生产。显着的基质理化特性分别解释了春季(有机质百分比,总磷浓度,电导率)和秋天(电导率,pH)的23.4%和14.7%的植物分布,而显着的基质变量解释了46.1%和73.3%的大型无脊椎动物分布。春季(有机质百分比)和秋季(总磷浓度,电导率,有机质百分比)。

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