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Intensity-dependent impact of sport climbing on vascular plants and land snails on limestone cliffs

机译:在石灰石悬崖上爬上血管植物和陆地蜗牛的体育依赖影响

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Limestone cliffs in the Jura Mountains harbour species-rich plant and animal communities including rare species. Sport climbing has recently increased in popularity in this habitat and several studies have reported damage to cliff biodiversity. However, so far how damage levels vary with climbing intensity has not been investigated. We evaluated the effects of climbing intensity on the diversity of vascular plants and land snails in 35 limestone cliff sectors in the Northern Swiss Jura Mountains. Mixed-effects models were used to examine whether species richness of plants and land snails differ between cliff sectors with low and high climbing intensity and unclimbed cliff sectors (controls) taking into account potential influences of cliff characteristics (aspect, cliff height, rock microtopography). At the cliff base, the best fit model revealed that plant species richness was affected by climbing intensity and cliff aspect. Plant species richness was reduced by 12.2% and 13.1%, respectively, in cliff sectors with low and high climbing intensity compared to unclimbed cliff sectors. On the cliff face, plant species richness was only influenced by climbing intensity (species richness reduction by 24.3% and 28.1%). Combining data from cliff base, face and plateau, the best fit model revealed that land snail species richness was only affected by climbing intensity (species richness reduction by 2.0% and 13.7%). In both organism groups, species composition was increasingly altered by increasing climbing intensity. Our study provides evidence that even low climbing intensity reduces cliff biodiversity and that damage becomes more pronounced with increasing climbing intensity.
机译:在汝拉山脉港口物种富含植物和动物群体的石灰石悬崖,包括稀有物种。在这种栖息地的普遍存在中,体育攀登最近在普及,几项研究报告悬崖生物多样性损害。但是,到目前为止尚未调查攀爬强度的损伤水平如何变化。我们评估了攀岩强度对瑞士汝拉山北部35位石灰岩悬崖部门的血管植物和土地蜗牛多样性的影响。混合效果模型用于检查植物和陆地蜗牛的物种是否有不同的悬崖部门与攀登强度和未凝视的悬崖部门(控制)的悬崖部门之间的差异不同,考虑到悬崖特性(方面,悬崖高度,岩石显微镜)的潜在影响。在悬崖基地,最佳拟合模式显示,植物物种丰富性受到攀爬强度和悬崖方面的影响。与未凝视的悬崖部门相比,植物物种丰富度分别降低12.2%和13.1%,分别在悬崖部门的悬崖扇区中减少了12.2%和13.1%。在悬崖面上,植物物种的丰富性仅受攀爬强度的影响(物种丰富减少24.3%和28.1%)。将数据与悬崖基地,脸部和高原相结合,最佳拟合模式显示,土地蜗牛物种的丰富性仅受攀爬强度的影响(物种丰富度减少2.0%和13.7%)。在两种生物组中,通过增加攀爬强度越来越多地改变物种组合物。我们的研究提供了证据表明,即使是低攀爬强度也降低了悬崖生物多样性,并且随着攀爬强度的增加变得更加明显。

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