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首页> 外文期刊>Biological Conservation >Deadwood enrichment in European forests - Which tree species should be used to promote saproxylic beetle diversity?
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Deadwood enrichment in European forests - Which tree species should be used to promote saproxylic beetle diversity?

机译:欧洲森林中的沉木富集-应该使用哪种树种来促进Saproxylic甲虫的多样性?

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Modification of natural ecosystems has threatened biodiversity worldwide, with forests suffering especially. Strategies aimed at mitigating such loss in forests often include enrichment of deadwood, a critical resource for many decomposer species. However, it remains unclear how deadwood can best be enriched to most effectively promote the diversity of saproxylic species. In this study, we investigated saproxylic beetle diversity in experimentally exposed deadwood logs of 13 different tree species across 30 forests in three regions of Germany. We tested whether gamma-diversity differs between tree species and whether the alpha-diversity within an individual log depended on whether logs were placed in unmanaged beech forests, managed beech forests, or managed conifer forests. We found significant differences in gamma- and alpha-diversity of saproxylic beetles among tree species, but the ranking of tree species differed between regions, suggesting differences in regional beetle species pools. Randomization tests aiming to identify how many and which deadwood logs would need to be exposed to best conserve saproxylic beetle diversity, showed that the overall diversity of beetles increased with the number of tree species exposed, due to turnover of beetle species between tree species. However, some species (e.g. Carpinus) and species combinations (e.g. Carpinus-Picea) reached exceptionally high beetle diversity. Alpha-diversity was higher in conifer than in beech forests, but did not differ between managed and unmanaged beech forests. Canopy cover above logs and average stand temperature strongly influenced alpha-diversity, suggesting that environmental conditions that may be affected by management act as habitat filters for species assemblages. We conclude that deadwood enrichment strategies would be most effective when combining particular tree species that support highest diversity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自然生态系统的改变已经威胁到全世界的生物多样性,尤其是森林遭受的苦难。旨在减轻森林中此类损失的战略通常包括丰富枯木,这是许多分解物种的重要资源。但是,目前尚不清楚如何才能最好地丰富枯木,以最有效地促进圣人物种的多样性。在这项研究中,我们调查了德国三个地区30片森林中13种不同树种的实验暴露的枯木原木中的四叶甲虫多样性。我们测试了树木物种之间的伽马多样性是否不同,以及单个日志中的阿尔法多样性是否取决于将日志放置在未管理的山毛榉森林,可管理的山毛榉森林或可管理的针叶林中。我们发现树种之间的saproxylic甲虫的γ和α多样性存在显着差异,但不同地区之间树种的排名存在差异,这表明区域甲虫物种库有所不同。旨在确定最需要保护多少个阔叶树甲虫多样性的阔叶树原木的随机试验表明,由于树种之间甲虫种类的转换,甲虫的总体多样性随暴露的树种数量的增加而增加。但是,某些物种(例如Carpinus)和物种组合(例如Carpinus-Picea)达到了极高的甲虫多样性。针叶树的阿尔法多样性高于山毛榉森林,但在有管理和无管理的山毛榉森林之间没有差异。林冠上方的林冠覆盖率和平均林分温度强烈影响阿尔法多样性,表明可能受管理影响的环境条件充当物种集合的栖息地过滤器。我们得出结论,当结合支持最高多样性的特定树种时,沉木富集策略将是最有效的。 (C)2016 Elsevier Ltd.保留所有权利。

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