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Changes in composition ecology and structure of high-mountain vegetation: a re-visitation study over 42 years

机译:高山区植被的组成生态和结构变化:42年的重新考察研究

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摘要

High-mountain ecosystems are increasingly threatened by climate change, causing biodiversity loss, habitat degradation and landscape modifications. However, very few detailed studies have focussed on plant biodiversity in the high mountains of the Mediterranean. In this study, we investigated the long-term changes that have occurred in the composition, structure and ecology of high-mountain vegetation in the central Apennines (Majella) over the last 42 years. We performed a re-visitation study, using historical and newly collected vegetation data to explore which ecological and structural features have been the most successful in coping with climatic changes. Vegetation changes were analysed by comparing geo-referenced phytosociological relevés collected in high-mountain habitats (dolines, gentle slopes and ridges) on the Majella massif in 1972 and in 2014. Composition analysis was performed by detrended correspondence analysis, followed by an analysis of similarities for statistical significance assessment and by similarity percentage procedure (SIMPER) for identifying which species indicate temporal changes. Changes in ecological and structural indicators were analysed by a permutational multivariate analysis of variance, followed by a post hoc comparison. Over the last 42 years, clear floristic changes and significant ecological and structural variations occurred. We observed a significant increase in the thermophilic and mesonitrophilic plant species and an increment in the frequencies of hemicryptophytes. This re-visitation study in the Apennines agrees with observations in other alpine ecosystems, providing new insights for a better understanding of the effects of global change on Mediterranean high-mountain biodiversity. The observed changes in floristic composition, the thermophilization process and the shift towards a more nutrient-demanding vegetation are likely attributable to the combined effect of higher temperatures and the increase in soil nutrients triggered by global change. The re-visitation approach adopted herein represents a powerful tool for studying climate-related changes in sensitive high-mountain habitats.
机译:高山生态系统正日益受到气候变化的威胁,造成生物多样性丧失,生境退化和景观改造。但是,很少有详细的研究集中在地中海高山上的植物生物多样性上。在这项研究中,我们调查了过去42年中,亚平宁山脉中部(Majella)的高山植被的组成,结构和生态发生的长期变化。我们使用历史和新近收集的植被数据进行了一次重新考察研究,以探索哪些生态和结构特征在应对气候变化方面最成功。通过比较1972年和2014年在马耶拉山群高山区生境(菱形,缓坡和山脊)中收集的地理参考植物社会学相关因素,分析了植被变化。采用去趋势对应分析进行成分分析,然后进行相似性分析用于统计显着性评估,并通过相似度百分比程序(SIMPER)来识别哪些物种指示时间变化。生态和结构指标的变化通过方差的多元排列分析进行分析,然后进行事后比较。在过去的42年中,发生了明显的植物区系变化以及明显的生态和结构变化。我们观察到嗜热和中亚硝化植物种类显着增加,半隐生植物的频率增加。亚平宁山脉的这项重新考察研究与其他高山生态系统中的观测结果一致,为更好地了解全球变化对地中海高山生物多样性的影响提供了新的见解。所观察到的植物区系变化,嗜热化过程以及向更需要养分的植被转变,可能归因于更高的温度和全球变化引发的土壤养分增加的综合作用。本文采用的重新访问方法是研究敏感的高山栖息地中与气候相关的变化的有力工具。

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