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Patterns of species diversity in different spatial scales and spatial heterogeneity on beta diversity

机译:不同空间尺度的物种多样性模式和β多样性的空间异质性

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Patterns of species diversity are essential to understand community structure. We aimed to determine species diversity and patterns of beta diversity in different spatial scales. We sampled three thousand individuals between the coordinates 22°10'S to 22°16'S and 47°47'W to 48°00'W to assess species diversity in three spatial scales (maximum distances of 80 m, 1,400 m, and 12,000 m), using the point-centered-quarter method. We partitioned gamma diversity into alpha and beta components. Beta diversity was partitioned into dissimilarities produced by spatial species turnover and nestedness. The contribution of beta diversity to gamma diversity was greater than that of alpha diversity in all scales, although the patterns of species diversity were similar for the evaluated scales, and was similar to that described for larger spatial scales. The sampled fragments presented means of 15 exclusive species and 47.5 species per fragment, and dissimilarities [β(S?R)=0.7] almost completely explained (94 %) by spatial species turnover. The results indicate that the remnant fragments are residual patches of an originally heterogeneous vegetation. The fragmentation processes could have progressed differently in each portion of the original vegetation, producing the current heterogeneous vegetation. Thus, there is a potential of high local species extinctions if the remnant fragments are deforested.
机译:物种多样性的模式对于了解社区结构至关重要。我们旨在确定不同空间尺度的物种多样性和β多样性模式。我们在坐标22°10到22°16的坐标之间采样了三千个体,47°47'w至48°00'w,以评估三个空间尺度的物种多样性(最大距离为80米,1,400米,12,000米),使用点心季度方法。我们将伽马分集分为alpha和beta组件。 β多样性被划分为空间物种营业额和嵌套产生的异化。 β多样性对γ多样性的贡献大于所有尺度的α多样性,尽管物种多样性的模式对于评估的尺度类似,并且类似于针对较大的空间尺度描述的模式。所采样的片段呈现15种独有物种的方法,每种片段的47.5种,并且异常逐渐解释(94%),通过空间物种营业额几乎完全解释(94%)。结果表明残余片段是最初的异质植被的残留斑块。碎片过程可以在原始植被的每一部分中进行不同的进展,从而产生当前的异质植被。因此,如果残余片段被砍伐,则存在高局部物种灭绝。

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