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Biodiversity assessment following a naturality gradient of riverbank protection structures in French prealps rivers

机译:在法国阿尔卑斯山前河流的河岸保护结构的自然梯度之后进行生物多样性评估

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摘要

Erosion control of riverbank is frequently necessary to protect human investments situated along rivers. The technique chosen for such erosion control construction may have major impacts on biodiversity and on the functioning of river corridors. Even if there is agreement, that biodiversity should be one criterion for choosing embankments techniques little is known about whether such techniques can accommodate biodiversity. We aimed to determine coleopteran and plant taxonomic diversities along a naturality gradient of riverbank protection systems, ranking from entirely civil engineering structures, through combined constructions (mixing civil engineering and bioengineering), to purely bioengineering structures. Fifteen sites (five sites of each technique) were sampled in the Rhône-Alpes region (S.E. France). On each site, vegetation was sampled along three transects from the bottom to the top of the riverbank and flying beetles by trapping. In total, we recorded 148 plant species and 78 beetle genera. We found significantly lower animal and plant diversities within civil engineering constructions than in the other two techniques. Diversities of both techniques tended to be higher, although not significantly, in combined techniques than in purely bioengineering ones. Furthermore, civil engineering structures were more subject to invasion by exotic plant species than the two other techniques. These results quantify and highlight the interest of bioengineering techniques compared to civil engineering in enhancing biodiversity and limiting invasive species techniques.
机译:为了保护沿河的人力投资,经常需要对河岸进行侵蚀控制。选择用于这种侵蚀控制建设的技术可能会对生物多样性和河流走廊的功能产生重大影响。即使达成共识,生物多样性应该成为选择堤防技术的标准,但对于这种技术是否能够适应生物多样性知之甚少。我们的目标是沿着河岸保护系统的自然梯度确定鞘翅目和植物分类学的多样性,范围从完全土木工程结构到组合结构(土木工程和生物工程混合)再到纯生物工程结构。在罗纳-阿尔卑斯地区(法国南部)采样了15个站点(每种技术的5个站点)。在每个站点上,从河岸的底部到顶部沿三个样带采样植被,并通过诱捕飞行甲虫。我们总共记录了148种植物和78个甲虫属。我们发现土木工程建筑中的动植物多样性比其他两种技术要低得多。与纯生物工程技术相比,联合技术中两种技术的多样性趋于更高,尽管并不明显。此外,土木工程结构比其他两种技术更容易受到外来植物物种的入侵。与土木工程相比,这些结果量化并突出了生物工程技术对增强生物多样性和限制入侵物种技术的兴趣。

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