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Plant species extinction debt in a temperate biodiversity hotspot: community, species and functional traits approaches.

机译:温带生物多样性热点地区的植物物种灭绝债务:社区,物种和功能性状方法。

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Destruction and fragmentation of (semi-) natural habitats are considered the main causes of biodiversity loss worldwide. Plant species may exhibit a slow response to fragmentation, resulting in the development of an extinction debt in fragmented plant communities. The detection of extinction debt is of primary importance in habitat conservation strategies. We applied two different approaches proposed in the literature to identify extinction debt in South-East Belgium calcareous grasslands. The first method compared species richness between stable and fragmented habitat patches. The second explored correlations between current species richness and current and past landscape configurations using multiple regression analyses. We subsequently examined results generated by both methods. In addition, we proposed techniques to identify species that are more likely to support extinction debt and associated functional traits. We estimated a respective extinction debt of approximately 28% and 35% of the total and specialist species richness. Similar results were obtained from both methods. We identified 15 threatened specialist species under the current landscape configuration. It is likely the landscape configuration no longer supports the species habitat requirements. We demonstrated that non-clonal species are most threatened, as well as taxa that cannot persist in degraded habitats and form only sparsely distributed populations. We discussed our results in light of other studies in similar habitats, and the overall implications for habitat conservation.
机译:(半)自然生境的破坏和破碎被认为是全世界生物多样性丧失的主要原因。植物物种对碎片的反应可能较慢,导致在碎片化的植物群落中灭绝债务的发展。灭绝债务的发现在栖息地保护策略中至关重要。我们应用了文献中提出的两种不同方法来确定比利时东南钙质草原的灭绝债务。第一种方法比较了稳定和零散的栖息地斑块之间的物种丰富度。第二部分使用多元回归分析探索了当前物种丰富度与当前和过去的景观配置之间的相关性。我们随后检查了两种方法产生的结果。此外,我们提出了一些技术来识别更可能支持灭绝债务和相关功能性状的物种。我们估计灭绝债务分别占总物种和专业物种丰富度的28%和35%。从两种方法都获得了相似的结果。在当前的景观配置下,我们确定了15种受威胁的专业物种。景观配置可能不再支持物种栖息地要求。我们证明了非克隆物种受到的威胁最大,而不能在退化的生境中持续存在且仅形成稀疏分布种群的生物分类。我们根据在类似栖息地的其他研究以及对栖息地保护的总体意义,讨论了我们的研究结果。

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