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Quantifying multiple-site compositional turnover in an Afrotemperate forest, using zeta diversity

机译:使用zeta多样性量化温带森林中多点组成的转换

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Background:Species turnover is typically measured by partitioning diversity components into alpha and pairwise beta diversity. However, alpha and beta components cannot express the full spectrum of multiple-site compositional turnover. To this end, zeta diversity has been proposed as an extended framework to allow complete biodiversity partitioning and to measure multiple-site species turnover. We use a zeta-diversity framework to explore the turnover and potential community assembly processes of an African Montane Forest. Methods:Using a 20 m grid, we explore the species turnover in a 4.55 ha forest plot located in the Garden Route National Park of South Africa, with 47 and 27 canopy and sub-canopy tree species in the regional pool. We first calculate how zeta diversity declines and how the probability of retention of species with particular occupancies changes with increasing zeta orders (i.e. the number of sites [grid cel s] involved in the calculation). Using null models with row sums and column sums constrained respectively, we explore whether species turnover is driven by mechanisms of ecological differences (species-specific occupancies) or habitat heterogeneity (site-specific alpha diversity and thus environmental filters). Results:The decline of zeta diversity with zeta order fol owed a power law;that is, the probability of retention increased with species occupancies, suggesting common species being more likely to be discovered in extra sites. The nul model retaining row sums (species' occupancy) of the species-by-site matrix recreated perfectly the decline of zeta diversity, while the null model of habitat heterogeneity (retaining column sums) was rejected. This suggests that mechanisms driving species-specific occupancies (i.e. ecological differences between species) dictate the multi-site species turnover in the community. The spatial patterns of zeta diversity revealed little spatial structuring forces, supporting a fine-grain structure in these southern Cape forests. Conclusions:The framework of zeta diversity revealed mechanisms driving the large discrepancies in the occupancy among species that are behind the species turnover in the African Montane forest plot. Future studies could further link species turnover to spatial distance decay. Environmental filters and temporal turnover from landscape demography could bring a cohesive understanding of community assembly in these unique forest ecosystems.
机译:背景:物种周转率通常是通过将多样性成分划分为alpha和成对的beta多样性来衡量的。但是,α和β成分不能表达多部位成分转换的全部谱图。为此,已经提出了zeta多样性作为扩展框架,以允许完整的生物多样性划分并测量多地点物种的周转率。我们使用zeta多样性框架来探索非洲山地森林的营业额和潜在的社区集会过程。方法:使用20 m的网格,我们研究了位于南非花园路国家公园的4.55公顷森林地中的物种周转情况,该区域共有47种和27种冠层和亚冠层树种。我们首先计算zeta多样性如何下降以及具有特定占有率的物种的保留概率如何随着zeta顺序的增加而变化(即计算中涉及的位点数[grid cel s])。使用分别受行总和和列总限制的空模型,我们探讨了物种更新是由生态差异(特定物种的占用)机制还是栖息地异质性(特定地点的阿尔法多样性以及因此而产生的环境)驱动的。结果:zeta多样性随zeta顺序的下降遵循幂律;也就是说,保留率随物种占有率的增加而增加,这表明常见物种更可能在额外的地点发现。基于物种的矩阵的零模型保留行总和(物种占有率)完美地重建了zeta多样性的下降,而拒绝了栖息地异质性的零模型(保留列总和)。这表明驱动物种特定占有率(即物种之间的生态差异)的机制决定了社区中多站点物种的周转率。 Zeta多样性的空间格局显示出很少的空间结构力,支持了这些南部开普森林的细粒结构。结论:zeta多样性框架揭示了驱动非洲山地森林地块物种更新背后的物种之间的占用率差异巨大的机制。未来的研究可能会将物种更新与空间距离​​衰减进一步联系起来。景观人口学中的环境过滤器和时间转换可以使人们对这些独特的森林生态系统中的社区聚集产生凝聚力的理解。

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  • 来源
    《中国林学(英文版)》 |2018年第2期|189-197|共9页
  • 作者单位

    Centre for Invasion Biology, Department of Mathematical Sciences, Stel enbosch University, Matieland, Stel enbosch 7602, South Africa;

    Mathematical and Physical Biosciences, African Institute for Mathematical Sciences, Muizenberg 7645, South Africa;

    Garden Route Scientific Services, South African National Parks, Knysna 6570, South Africa.;

    Garden Route Scientific Services, South African National Parks, Knysna 6570, South Africa.;

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