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Tree species richness promotes an early increase of stand structural complexity in young subtropical plantations

机译:树种丰富促进早期增加站结构复杂性的年轻亚热带种植园

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摘要

1. Forest structural complexity has been identified as an important driver for promoting simultaneously biodiversity across trophic levels and multiple ecosystem services. However, we still have a limited understanding of the processes that lead to structural complex stands and how they evolve over time. 2. Using terrestrial laser scanning (TLS), we quantified a three-dimensional (3D) stand structural complexity index (SSCI) in an experimental plantation with a long gradient of tree species richness (1-24 species). The plantation was established in 2009, and we made use of a multi-temporal TLS dataset recorded during 2012-2019. 3. We found a positive relationship between tree species richness and structural complexity. This relationship became stronger over time. Ten years after planting, SSCI was on average two-fold higher in 16-and 24-species mixtures than in monocultures. Furthermore, we demonstrate that tree species richness promotes 3D stand structural complexity indirectly by fostering a high vertical heterogeneity and thus greater spatial complementarity in canopy space. 4. Synthesis and applications. Our findings indicate that tree species richness plays a crucial role in promoting stand structural complexity in young plantations, and this role becomes more important already during early stand development. Thus, afforestation measures would benefit from planting multiple native tree species to initiate structurally complex stands.
机译:1. 为促进确定为一个重要的驱动程序同时在营养级生物多样性和多个生态系统服务。仍然有一个有限的理解过程,导致结构复杂以及他们如何随时间而变化。地面激光扫描(TLS),我们量化三维(3 d)站结构在一个实验复杂度指数(人文)种植园长梯度的树种丰富(上皮物种)。成立于2009年,我们使用时段遥测TLS数据集记录中2012 - 2019。树物种丰富度和结构之间的关系的复杂性。随着时间的推移。平均两个高16和24种比单一栽培混合物。证明树物种丰富度提升间接地通过3 d站结构的复杂性培养高垂直的异质性,因此更大的空间互补性树冠的空间。4. 表明,物种丰富度起着树至关重要的作用在促进站结构在年轻的种植园,复杂性和这个角色在早期的站已经变得更加重要发展。受益于多个原生树种植物种开始结构复杂。

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