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分析中国东北地区温带森林的分类结构和当地生态过程。

Analysing taxonomic structures and local ecological processes in temperate forests in North Eastern China.

作者信息

Fan Chunyu, Tan Lingzhao, Zhang Chunyu, Zhao Xiuhai, von Gadow Klaus

机构信息

Key Laboratory for Forest Resources & Ecosystem Processes of Beijing, Beijing Forestry University, Beijing, 100083, China.

Research Center of Forest Management Engineering of State Forestry Administration, Beijing Forestry University, 100083, Beijing, China.

出版信息

BMC Ecol. 2017 Oct 30;17(1):33. doi: 10.1186/s12898-017-0143-y.

Abstract

BACKGROUND

One of the core issues of forest community ecology is the exploration of how ecological processes affect community structure. The relative importance of different processes is still under debate. This study addresses four questions: (1) how is the taxonomic structure of a forest community affected by spatial scale? (2) does the taxonomic structure reveal effects of local processes such as environmental filtering, dispersal limitation or interspecific competition at a local scale? (3) does the effect of local processes on the taxonomic structure vary with the spatial scale? (4) does the analysis based on taxonomic structures provide similar insights when compared with the use of phylogenetic information? Based on the data collected in two large forest observational field studies, the taxonomic structures of the plant communities were analyzed at different sampling scales using taxonomic ratios (number of genera/number of species, number of families/number of species), and the relationship between the number of higher taxa and the number of species. Two random null models were used and the "standardized effect size" (SES) of taxonomic ratios was calculated, to assess possible differences between the observed and simulated taxonomic structures, which may be caused by specific ecological processes. We further applied a phylogeny-based method to compare results with those of the taxonomic approach.

RESULTS

As expected, the taxonomic ratios decline with increasing grain size. The quantitative relationship between genera/families and species, described by a linearized power function, showed a good fit. With the exception of the family-species relationship in the Jiaohe study area, the exponents of the genus/family-species relationships did not show any scale dependent effects. The taxonomic ratios of the observed communities had significantly lower values than those of the simulated random community under the test of two null models at almost all scales. Null Model 2 which considered the spatial dispersion of species generated a taxonomic structure which proved to be more consistent with that in the observed community. As sampling sizes increased from 20 m × 20 m to 50 m × 50 m, the magnitudes of SESs of taxonomic ratios increased. Based on the phylogenetic analysis, we found that the Jiaohe plot was phylogenetically clustered at almost all scales. We detected significant phylogenetically overdispersion at the 20 m × 20 m and 30 m × 30 m scales in the Liangshui plot.

CONCLUSIONS

The results suggest that the effect of abiotic filtering is greater than the effects of interspecific competition in shaping the local community at almost all scales. Local processes influence the taxonomic structures, but their combined effects vary with the spatial scale. The taxonomic approach provides similar insights as the phylogenetic approach, especially when we applied a more conservative null model. Analysing taxonomic structure may be a useful tool for communities where well-resolved phylogenetic data are not available.

摘要

背景

森林群落生态学的核心问题之一是探究生态过程如何影响群落结构。不同过程的相对重要性仍存在争议。本研究提出四个问题:(1)森林群落的分类结构如何受空间尺度影响?(2)分类结构是否揭示了诸如环境过滤、扩散限制或种间竞争等局部过程在局部尺度上的影响?(3)局部过程对分类结构的影响是否随空间尺度而变化?(4)与使用系统发育信息相比,基于分类结构的分析是否能提供相似的见解?基于在两项大型森林观测实地研究中收集的数据,使用分类比率(属数/种数、科数/种数)以及高级分类单元数与物种数之间的关系,在不同采样尺度下分析了植物群落的分类结构。使用了两个随机零模型,并计算了分类比率的“标准化效应大小”(SES),以评估观察到的和模拟的分类结构之间可能存在的差异,这些差异可能由特定的生态过程引起。我们进一步应用基于系统发育的方法将结果与分类方法的结果进行比较。

结果

正如预期的那样,分类比率随粒度增加而下降。用线性化幂函数描述的属/科与物种之间的定量关系拟合良好。除了蛟河研究区域的科 - 物种关系外,属/科 - 物种关系的指数未显示出任何尺度依赖性效应。在两个零模型的检验下,几乎在所有尺度上,观察到的群落的分类比率值均显著低于模拟随机群落的分类比率值。考虑物种空间分布的零模型2产生的分类结构被证明与观察到的群落中的分类结构更一致。随着采样大小从20 m×20 m增加到50 m×50 m,分类比率的SES大小增加。基于系统发育分析,我们发现蛟河样地在几乎所有尺度上都是系统发育聚类的。我们在凉水样地的20 m×20 m和30 m×30 m尺度上检测到显著的系统发育过度分散。

结论

结果表明,在几乎所有尺度上,非生物过滤对塑造局部群落的影响大于种间竞争的影响。局部过程影响分类结构,但其综合影响随空间尺度而变化。分类方法与系统发育方法提供了相似的见解,尤其是当我们应用更保守的零模型时。对于没有良好解析的系统发育数据的群落,分析分类结构可能是一种有用的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/427e/5663035/59670ff9d9d2/12898_2017_143_Fig1_HTML.jpg

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