马达加斯加东北部海拔梯度附生苔藓植物的多样性划分和群落结构

Lovanomenjanahary Marline, T. Hedderson, C. Ah‐Peng
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引用次数: 2

摘要

了解不同群落物种组成的空间变化是理解生物多样性产生和维持过程的关键。将生物多样性划分为与等级尺度相关的组分是一种从等级尺度研究中定量定义总体净生物多样性的有趣方法,是保护生物学和恢复研究的一种有用方法。本文研究了马达加斯加附生苔藓植物总体多样性和β多样性沿海拔梯度的加性分配。为了描述Marojejy国家公园(250-2050 m)不同群落间物种组成的变化,并阐明不同物种在不同群落中出现的原因。我们从4个层次尺度计算了α和β多样性对总多样性的贡献:微生境(50 cm2)、样方(4 m2)、样地(100 m2)和海拔(每200 m)。此外,我们记录了β -多样性的两个组成部分(周转和筑巢)如何受到海拔变化的影响。结果表明,物种丰富度在海拔尺度上的变化大于在小样地尺度上的变化,证实了最大采样尺度上的β多样性对总多样性的贡献最大。这表明,每一层样本内的苔藓植物物种是同一物种库的一个子样本。该研究表明,随着Marojejy样带上新物种的补充,附生苔藓植物组合的β -多样性以高空间更替为主,这是一个明显的山地模式。
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Diversity partitioning and community structure of epiphytic bryophytes along an elevational gradient in the north-eastern Madagascar
Understanding spatial variation in species composition of different communities is key to understanding the processes that generate and maintain biodiversity. The partitioning of diversity into hierarchical scale-related components is an interesting approach to quantitatively defining the overall net biodiversity from hierarchically scaled studies and is a useful method in studies of conservation biology and restoration. This paper deals with the additive partitioning of the overall diversity and the partitioning of beta-diversity of epiphytic bryophytes along an elevational gradient in Madagascar. The aim is to describe the variation in species composition between sites and to elucidate why different species occur in different communities in the Marojejy National Park (250–2050 m). We looked at the contribution of α and β diversity to total diversity were calculated from four hierarchical scales: microhabitat (50 cm2), quadrat (4 m2), plot (100 m2) and elevation (every 200 m). Furthermore, we documented how the two components of beta-diversity (turnover and nestedness) are influenced by variation in elevation. Our result suggests that more variation in species richness was found within the elevational scales, than within microplot scales, confirming that beta diversity at the largest sampling scale is the largest contributor to the total diversity. It indicates that bryophyte species among sample within each level are a subsample of the same species pool. This study shows evidence that the beta-diversity of epiphytic bryophyte assemblages is dominated by high spatial turnover due to recruitment of new species along the Marojejy transect, a clear pattern for mountains.
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