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首页> 外文期刊>Aquatic Ecology >Combined influence of river discharge and wind on littoral nematode communities of a river mouth area of Lake Constance
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Combined influence of river discharge and wind on littoral nematode communities of a river mouth area of Lake Constance

机译:河水和风对康斯坦茨湖河口沿岸线虫群落的综合影响

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The littoral nematode community adjacent to a river mouth (River Schussen) on Lake Constance (Germany) was studied from February 1999 to January 2000 in order to determine the influence of stress resulting from fluctuations in river discharge on local nematode assemblages. Additionally, the influence of wind as a second important stress factor was considered. Six sample sites were chosen, reflecting a gradient of river influence within the broader river mouth area. Nematode communities, varying in a mean range from 121 to 165 ind/10 cm2, were found to differ significantly in terms of abundance, feeding type composition and species diversity. Deposit feeders were most abundant at all sites followed by chewers. Deposit feeders were affected mainly by wind events, while species diversity and the occurrence of chewers were influenced mainly by river discharge. The impact of both these stress factors was modified by a third variable, water level. Moderate and high levels of combined habitat stress led to significant changes in community structure. Under conditions of calm weather and low discharge, reduced species diversity and an increased predominance of deposit feeders were observed. In most cases, species diversity was found to be higher under moderate stress conditions, an observation that offers support for Connel’s Intermediate Disturbance Hypothesis.
机译:1999年2月至2000年1月,对博登湖(德国)河口(河舒森)附近的沿海线虫群落进行了研究,以确定河水流量波动对当地线虫组合的影响。另外,考虑了风的影响作为第二重要压力因素。选择了六个采样点,反映了更广泛的河口区域内河流影响的梯度。发现线虫群落的平均范围从121 ind / 10 cm2到165 ind / 10 cm2 ,在丰度,摄食类型组成和物种多样性方面存在显着差异。沉积物进料器在所有站点中数量最多,其次是咀嚼。沉积物给食者主要受风事件的影响,而物种多样性和咀嚼物的发生主要受河流流量的影响。这两个压力因素的影响都通过第三个变量水位进行了修改。中度和高水平的栖息地综合压力导致社区结构发生重大变化。在平静的天气和低排放的条件下,观察到物种多样性减少和沉积物给料器的优势增加。在大多数情况下,人们发现在中等压力条件下物种多样性更高,这一发现为康奈尔的中级干扰假说提供了支持。

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