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From taxonomic to functional dark diversity: Exploring the causes of potential biodiversity and its implications for conservation

机译:黑暗从分类功能多样性:探索潜在的生物多样性的原因及其对保护的影响

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Abstract The conservation of natural habitats requires an accurate assessment of both their degradation and their potential for restoration. Among the tools available, dark diversity is promising, since it estimates all the species that could be present in a community due to favourable environmental conditions but are currently lacking. However, current experimental approaches measure dark diversity mainly from species co‐occurrences, which rely partly on neutral processes, and also suffer from several problems concerning the inclusion of rare species. Here, we propose a novel method to estimate dark diversity, which is based on more deterministic co‐occurrence and also strongly limits the problems of rarity: the co‐occurrence of species' functional features. We adapted the Beals' co‐occurrence index using functional groups, and we estimated functional dark diversity based on co‐occurrence of functional groups. To illustrate the interests of our approach, we then addressed as an example a major issue of restoration ecology: how does passive rewilding (i.e. spontaneous restoration of woodlands) impact the ecological integrity of recovered communities? We compared post‐agricultural woodlands with ancient forests, in terms of taxonomic and functional dark diversity of vascular plants and spiders. For both taxa, the patterns of dark diversity in recent woodlands and ancient forests changed depending on whether we used the taxonomic or functional approach. This was due to the detection of functional features even if they were hosted by rare species, and to the consideration of ecological redundancy between species in functional groups. Notably, recent woodlands harboured plant communities with a similar amount of taxonomic dark diversity compared to ancient forests, but with less functional dark diversity. Also, the composition of functional dark diversity clearly differed between forest types. Synthesis and applications. Functional dark diversity brings novel perspectives for ecological diagnostic and restoration. In particular, it provides a more mechanistic understanding of the constraints which limit the re‐assembly of natural communities during restoration practices (e.g. dispersal limitation). The functional approach usefully complements the taxonomical one to identify habitat conservation and restoration interests, especially for highly degraded sites where the detection of missing groups via species is biased because of their rarity.
机译:抽象的自然栖息地的保护他们需要一个准确的评估退化及其恢复潜力。在工具中,黑暗的多样性有前途的,因为它估计所有的物种由于可以出现在一个社区但有利的环境条件目前缺乏。方法测量主要来自黑暗的多样性物种有限公司应承担的出现,这在一定程度上的依赖中性的过程,也受到一些问题的罕见物种。估计黑暗多样性,基于更多确定公司的发生和还强烈限制了罕见的问题:公司的出现物种的功能特性。这部剧的公司发生指数使用功能组,我们估计功能黑暗基于公司发生应承担的功能多样性组。方法,然后我们解决作为一个主要的例子恢复生态学的问题:如何被动野化(即自发的恢复林地)的生态完整性的影响社区康复了吗?发布农业林地与古老的森林,黑暗的分类和功能维管植物的多样性和蜘蛛。这两个类群,黑暗的模式的多样性最近的林地和原始森林发生了变化这取决于我们是否使用分类功能的方法。即使他们检测的功能特性是由稀有物种,和考虑生态之间的冗余官能团的物种。林地怀有的植物群落类似的黑暗分类学多样性相对于原始森林,但更少黑暗功能多样性。黑暗的功能多样性明显不同森林类型之间。黑暗功能多样性带来的小说为生态诊断和视角恢复。机械的理解约束这限制了重新组装等自然吗(如社区在修复实践。传播限制)。分类一个有用的补充确定栖息地的保护和修复利益,特别是高度退化的网站通过物种缺失的检测组吗是有偏见的,因为他们的罕见。

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