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Ecological restoration increases conservation of taxonomic and functional beta diversity of woody plants in a tropical fragmented landscape

机译:生态恢复在热带碎片景观中增加了木质植物的分类和功能β多样性

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Ecological restoration can re-establish plant species populations, enhance forested habitats extension, improve landscape connectivity, and enable biodiversity persistence within a landscape. However, the potential benefits of ecological restoration on beta diversity have never been explored. Here we use field data to investigate, for the first time, if restoration plantings enhance the taxonomic and functional plant beta diversity in a fragmented landscape of the threatened Atlantic forest. Woody species were evaluated for 320 plots established in 18 forest fragments and 14 restoration plantings within a sugarcane production landscape with low forest cover, in southeastern Brazil. Diversity metrics were assessed using the multiple incidence-data version of Hill numbers and were compared among three sets of study sites: fragments, restoration plantings and the two combined. Fragments showed higher levels of alpha diversity and proportional abundance of non-pioneer and animal-dispersed species than restoration plantings. Exotic, pioneer and non-zoochoric species were more abundant in restoration plantings, an expected result considering sites still be in the early or mid-successional stages of development. Taxonomic and functional beta diversity of trees was greatest when both areas were combined. For regenerating plants, however, beta diversity results varied according to species incidence-based frequencies. Although restoration plantings do not result in full recovery of alpha diversity, they can all together complement diversity of forest fragments at the landscape level. The findings indicate two key ecological implications for biodiversity conservation: the critical importance of forest fragments as biodiversity repositories and the positive effect of restoration efforts on landscape-scale diversity in degraded regions. These novel results highlight the importance of species selection for restoration initiatives toward species and functional attributes recognized as significantly reduced or locally rare. Overall, forest fragments and restoration plantings can act synergistically to promote recovery of plant diversity in heavily deforested agricultural landscapes.
机译:生态恢复可以重新建立植物物种群体,增强森林栖息地延伸,改善景观连通性,使生物多样性持久性在景观中。然而,从未探讨过生态恢复的生态恢复的潜在好处。在这里,我们首次使用现场数据进行调查,如果恢复种植增强威胁大西洋森林的分散景观中的分类学和功能植物β多样性。在巴西东南部的甘蔗生产景观中,在18个森林碎片和14种恢复种植中评估了320个地块的木质物种。使用多个山数的山数数据版本评估了多样性指标,并在三组研究网站中进行了比较:碎片,恢复种植和两个组合。片段显示出更高水平的α多样性和比例丰富的非先锋和动物分散物种而不是恢复种植。在恢复种植中更丰富的异国情调,先驱和非Zoochoric物种,考虑网站的预期结果仍处于早期或中继发展的发展阶段。当两个地区合并时,分类和功能性β多样性最大。然而,对于再生植物,β多样性结果根据物种发生率的频率而变化。虽然恢复种植不会完全恢复阿尔法多样性,但它们可以在景观层面的森林碎片中的所有补充多样性。该研究结果表明了对生物多样性保护的两个主要生态影响:森林碎片作为生物多样性储存库的关键重要性以及恢复努力在退化地区横向规模多样性的积极作用。这些新颖的结果突出了物种选择对物种和功能属性的恢复措施的重要性,确认为显着减少或局部罕见。总体而言,森林碎片和恢复种植可以协同作用,以促进森林砍伐农业景观的植物多样性的恢复。

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